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Abramovich, C., et al. "Hox genes: from leukemia to hematopoietic stem cell expansion." Ann.N.Y.Acad.Sci. 1044 (2005): 109-16.

Acampora, D., et al. "Genetic control of brain morphogenesis through Otx gene dosage requirement." Development 124.18 (1997): 3639-50.

Acampora, D., et al. "The human HOX gene family." Nucleic Acids Res. 17.24 (1989): 10385-402.

Akam, M. "Hox and HOM: homologous gene clusters in insects and vertebrates." Cell 57.3 (1989): 347-49.

Al-Awqati, Q. and J. A. Oliver. "Stem cells in the kidney." Kidney Int. 61.2 (2002): 387-95.

Al-Hajj, M., et al. "Prospective identification of tumorigenic breast cancer cells." Proc.Natl.Acad.Sci.U.S.A 100.7 (2003): 3983-88.

Alison, M. and C. Sarraf. "Hepatic stem cells." J.Hepatol. 29.4 (1998): 676-82.

Ang, S. L., et al. "Positive and negative signals from mesoderm regulate the expression of mouse Otx2 in ectoderm explants." Development 120.10 (1994): 2979-89. Arai, F. "[Regulation of hematopoiesis by the osteoblastic niche]." Clin.Calcium 15.7

(2005): 73-79.

Asakura, A., M. Komaki, and M. Rudnicki. "Muscle satellite cells are multipotential stem cells that exhibit myogenic, osteogenic, and adipogenic differentiation." Differentiation 68.4-5 (2001): 245-53.

Austin, T. W. and E. Lagasse. "Hepatic regeneration from hematopoietic stem cells." Mech.Dev. 120.1 (2003): 131-35.

Bain, G., et al. "Activated beta-catenin induces osteoblast differentiation of C3H10T1/2 cells and participates in BMP2 mediated signal transduction."

(3)

Begley, C. G., et al. "The gene SCL is expressed during early hematopoiesis and encodes a differentiation-related DNA-binding motif."

Proc.Natl.Acad.Sci.U.S.A 86.24 (1989): 10128-32.

Begley, C. G., et al. "Molecular cloning and chromosomal localization of the murine homolog of the human helix-loop-helix gene SCL." Proc.Natl.Acad.Sci.U.S.A 88.3 (1991): 869-73.

Beltrami, A. P., et al. "Adult cardiac stem cells are multipotent and support myocardial regeneration." Cell 114.6 (2003): 763-76.

Bernard, O., et al. "Two distinct mechanisms for the SCL gene activation in the t(1;14) translocation of T-cell leukemias." Genes Chromosomes.Cancer 1.3 (1990): 194-208.

Bernex, F., et al. "Spatial and temporal patterns of c-kit-expressing cells in WlacZ/+ and WlacZ/WlacZ mouse embryos." Development 122.10 (1996): 3023-33.

Bhatia, M., et al. "Bone morphogenetic proteins regulate the developmental program of human hematopoietic stem cells." J.Exp.Med. 189.7 (1999): 1139-48.

Bodmer, R. and T. V. Venkatesh. "Heart development in Drosophila and vertebrates: conservation of molecular mechanisms." Dev.Genet. 22.3 (1998): 181-86. Bonnet, D. and J. E. Dick. "Human acute myeloid leukemia is organized as a hierarchy

that originates from a primitive hematopoietic cell." Nat.Med. 3.7 (1997): 730-37.

Boskey, A. L., et al. "Fourier transform infrared microspectroscopic analysis of bones of osteocalcin-deficient mice provides insight into the function of osteocalcin." Bone 23.3 (1998): 187-96.

Brittan, M. and N. A. Wright. "Gastrointestinal stem cells." J.Pathol. 197.4 (2002): 492-509.

(4)

Busslinger, M., et al. "Deregulation of PAX-5 by translocation of the Emu enhancer of the IgH locus adjacent to two alternative PAX-5 promoters in a diffuse large-cell lymphoma." Proc.Natl.Acad.Sci.U.S.A 93.12 (1996): 6129-34.

Bussolati, B., et al. "Isolation of renal progenitor cells from adult human kidney." Am.J.Pathol. 166.2 (2005): 545-55.

Calvi, L. M., et al. "Osteoblastic cells regulate the haematopoietic stem cell niche." Nature 425.6960 (2003): 841-46.

Caplan, A. I. "Adult mesenchymal stem cells for tissue engineering versus regenerative medicine." J.Cell Physiol 213.2 (2007): 341-47.

Caplice, N. M., et al. "Smooth muscle cells in human coronary atherosclerosis can originate from cells administered at marrow transplantation."

Proc.Natl.Acad.Sci.U.S.A 100.8 (2003): 4754-59.

Carrasco, A. E., et al. "Cloning of an X. laevis gene expressed during early

embryogenesis coding for a peptide region homologous to Drosophila homeotic genes." Cell 37.2 (1984): 409-14.

Chamberlain, G., et al. "Mesenchymal Stem Cells: their Phenotype, Differentiation Capacity, Immunological Features and Potential for Homing." Stem Cells (2007).

Chen, Q., et al. "Coding sequences of the tal-1 gene are disrupted by chromosome translocation in human T cell leukemia." J.Exp.Med. 172.5 (1990): 1403-08. Cheng, H., et al. "Osteogenic activity of the fourteen types of human bone

morphogenetic proteins (BMPs)." J.Bone Joint Surg.Am. 85-A.8 (2003): 1544-52.

Choi, J. Y., et al. "Expression patterns of bone-related proteins during osteoblastic differentiation in MC3T3-E1 cells." J.Cell Biochem. 61.4 (1996): 609-18. Chung, U. I., et al. "Indian hedgehog couples chondrogenesis to osteogenesis in

(5)

Cobas, M., et al. "Beta-catenin is dispensable for hematopoiesis and lymphopoiesis." J.Exp.Med. 199.2 (2004): 221-29.

Coffman, J. A. "Runx transcription factors and the developmental balance between cell proliferation and differentiation." Cell Biol.Int. 27.4 (2003): 315-24.

Condorelli, G. L., et al. "Ectopic TAL-1/SCL expression in phenotypically normal or leukemic myeloid precursors: proliferative and antiapoptotic effects coupled with a differentiation blockade." Mol.Cell Biol. 17.5 (1997): 2954-69.

Dani, C., et al. "Paracrine induction of stem cell renewal by LIF-deficient cells: a new ES cell regulatory pathway." Dev.Biol. 203.1 (1998): 149-62.

Dani, C., et al. "Differentiation of embryonic stem cells into adipocytes in vitro." J.Cell Sci. 110 ( Pt 11) (1997): 1279-85.

Day, T. F., et al. "Wnt/beta-catenin signaling in mesenchymal progenitors controls osteoblast and chondrocyte differentiation during vertebrate skeletogenesis." Dev.Cell 8.5 (2005): 739-50.

Deregowski, V., et al. "Notch 1 overexpression inhibits osteoblastogenesis by

suppressing Wnt/beta-catenin but not bone morphogenetic protein signaling." J.Biol.Chem. 281.10 (2006): 6203-10.

Drab, M., et al. "From totipotent embryonic stem cells to spontaneously contracting smooth muscle cells: a retinoic acid and db-cAMP in vitro differentiation model." FASEB J. 11.11 (1997): 905-15.

Eames, B. F., Fuente L. de la, and J. A. Helms. "Molecular ontogeny of the skeleton." Birth Defects Res.C.Embryo.Today 69.2 (2003): 93-101.

Ecarot-Charrier, B., et al. "Mineralization in osteoblast cultures: a light and electron microscopic study." Bone 9.3 (1988): 147-54.

Elwood, N. J., et al. "Enhanced megakaryocyte and erythroid development from normal human CD34(+) cells: consequence of enforced expression of SCL." Blood 91.10 (1998): 3756-65.

(6)

Evans, M. J. and M. H. Kaufman. "Establishment in culture of pluripotential cells from mouse embryos." Nature 292.5819 (1981): 154-56.

Ferrari, G., et al. "Muscle regeneration by bone marrow-derived myogenic progenitors." Science 279.5356 (1998): 1528-30.

Fox, J. M., et al. "Recent advances into the understanding of mesenchymal stem cell trafficking." Br.J.Haematol. 137.6 (2007): 491-502.

Frantz, G. D., et al. "Otx1 and Otx2 define layers and regions in developing cerebral cortex and cerebellum." J.Neurosci. 14.10 (1994): 5725-40.

Frisen, J. "Stem cell plasticity?" Neuron 35.3 (2002): 415-18.

Fuchs, E. and J. A. Segre. "Stem cells: a new lease on life." Cell 100.1 (2000): 143-55. Fuchs, E., T. Tumbar, and G. Guasch. "Socializing with the neighbors: stem cells and

their niche." Cell 116.6 (2004): 769-78.

Fujiwara, Y., et al. "Arrested development of embryonic red cell precursors in mouse embryos lacking transcription factor GATA-1." Proc.Natl.Acad.Sci.U.S.A 93.22 (1996): 12355-58.

Fuller, J. F., et al. "Characterization of HOX gene expression during myelopoiesis: role of HOX A5 in lineage commitment and maturation." Blood 93.10 (1999): 3391-400.

Furukawa, T., E. M. Morrow, and C. L. Cepko. "Crx, a novel otx-like homeobox gene, shows photoreceptor-specific expression and regulates photoreceptor

differentiation." Cell 91.4 (1997): 531-41.

Gage, F. H., et al. "Survival and differentiation of adult neuronal progenitor cells transplanted to the adult brain." Proc.Natl.Acad.Sci.U.S.A 92.25 (1995): 11879-83.

Galli, R., et al. "Isolation and characterization of tumorigenic, stem-like neural precursors from human glioblastoma." Cancer Res. 64.19 (2004): 7011-21.

(7)

Gehring, W. J. and Y. Hiromi. "Homeotic genes and the homeobox." Annu.Rev.Genet. 20 (1986): 147-73.

Gehring, W. J. and K. Ikeo. "Pax 6: mastering eye morphogenesis and eye evolution." Trends Genet. 15.9 (1999): 371-77.

Gehring, W. J., et al. "Homeodomain-DNA recognition." Cell 78.2 (1994): 211-23. Graham, A., N. Papalopulu, and R. Krumlauf. "The murine and Drosophila homeobox

gene complexes have common features of organization and expression." Cell 57.3 (1989): 367-78.

Green, A. R., et al. "SCL is coexpressed with GATA-1 in hemopoietic cells but is also expressed in developing brain." Oncogene 7.4 (1992): 653-60.

Gregory, C. A., D. J. Prockop, and J. L. Spees. "Non-hematopoietic bone marrow stem cells: molecular control of expansion and differentiation." Exp.Cell Res. 306.2 (2005): 330-35.

Gruss, P. and C. Walther. "Pax in development." Cell 69.5 (1992): 719-22.

Gupta, S., et al. "A role for extrarenal cells in the regeneration following acute renal failure." Kidney Int. 62.4 (2002): 1285-90.

Hall, B. K. "Intracellular and extracellular control of the differentiation of cartilage and bone." Histochem.J. 13.4 (1981): 599-614.

Hall, M. A., et al. "The critical regulator of embryonic hematopoiesis, SCL, is vital in the adult for megakaryopoiesis, erythropoiesis, and lineage choice in CFU-S12." Proc.Natl.Acad.Sci.U.S.A 100.3 (2003): 992-97.

Halvorsen, Y. D., et al. "Extracellular matrix mineralization and osteoblast gene expression by human adipose tissue-derived stromal cells." Tissue Eng 7.6 (2001): 729-41.

Harada, S. and G. A. Rodan. "Control of osteoblast function and regulation of bone mass." Nature 423.6937 (2003): 349-55.

(8)

Hartmann, C. "A Wnt canon orchestrating osteoblastogenesis." Trends Cell Biol. 16.3 (2006): 151-58.

Hassan, M. Q., et al. "HOXA10 controls osteoblastogenesis by directly activating bone regulatory and phenotypic genes." Mol.Cell Biol. 27.9 (2007): 3337-52.

Herzog, E. L., L. Chai, and D. S. Krause. "Plasticity of marrow-derived stem cells." Blood 102.10 (2003): 3483-93.

Hesketh, P. J., et al. "The oral neurokinin-1 antagonist aprepitant for the prevention of chemotherapy-induced nausea and vomiting: a multinational, randomized, double-blind, placebo-controlled trial in patients receiving high-dose cisplatin--the Aprepitant Protocol 052 Study Group." J.Clin.Oncol. 21.22 (2003): 4112-19. Hill, T. P., et al. "Canonical Wnt/beta-catenin signaling prevents osteoblasts from

differentiating into chondrocytes." Dev.Cell 8.5 (2005): 727-38.

Hunt, P., et al. "Homeobox genes and models for patterning the hindbrain and branchial arches." Dev.Suppl 1 (1991): 187-96.

Jiang, Y., et al. "Multipotent progenitor cells can be isolated from postnatal murine bone marrow, muscle, and brain." Exp.Hematol. 30.8 (2002): 896-904.

Joyner, A. L. "Engrailed, Wnt and Pax genes regulate midbrain--hindbrain development." Trends Genet. 12.1 (1996): 15-20.

Kappen, C., K. Schughart, and F. H. Ruddle. "Organization and expression of

homeobox genes in mouse and man." Ann.N.Y.Acad.Sci. 567 (1989): 243-52. Katoh, M. and M. Katoh. "WNT signaling pathway and stem cell signaling network."

Clin.Cancer Res. 13.14 (2007): 4042-45.

Kodama H, Amagai Y, Sudo H, Kasai S, Yamamoto S. "Establishment of a clonal osteogenic cell line from newborn mouse calvaria." Jpn J Oral Biol. 23 (1981) :899-901

Komori, T. "Regulation of skeletal development by the Runx family of transcription factors." J.Cell Biochem. 95.3 (2005): 445-53.

(9)

Komori T. "Regulation of osteoblast differentiation by transcription factors." J.Cell Biochem. 99.5 (2006): 1233-39.

Komori, T., et al. "Targeted disruption of Cbfa1 results in a complete lack of bone formation owing to maturational arrest of osteoblasts." Cell 89.5 (1997): 755-64. Komori, T., et al. "Clinical application of the erbium:YAG laser for apicoectomy."

J.Endod. 23.12 (1997): 748-50.

Krause, D. S., et al. "Multi-organ, multi-lineage engraftment by a single bone marrow-derived stem cell." Cell 105.3 (2001): 369-77.

LaBarge, M. A. and H. M. Blau. "Biological progression from adult bone marrow to mononucleate muscle stem cell to multinucleate muscle fiber in response to injury." Cell 111.4 (2002): 589-601.

Lane, D. B., T. J. Rutherford, and H. S. Taylor. "HOXA10 expression in endometrial adenocarcinoma." Tumour.Biol. 25.5-6 (2004): 264-69.

Lappin, T. R., et al. "HOX genes: seductive science, mysterious mechanisms." Ulster Med.J. 75.1 (2006): 23-31.

Lee, J. Y., et al. "Clonal isolation of muscle-derived cells capable of enhancing muscle regeneration and bone healing." J.Cell Biol. 150.5 (2000): 1085-100.

Lemaire, P. and L. Kodjabachian. "The vertebrate organizer: structure and molecules." Trends Genet. 12.12 (1996): 525-31.

Levantini, E., et al. "Unsuspected role of the brain morphogenetic gene Otx1 in hematopoiesis." Proc.Natl.Acad.Sci.U.S.A 100.18 (2003): 10299-303. Levine, M., G. M. Rubin, and R. Tjian. "Human DNA sequences homologous to a

protein coding region conserved between homeotic genes of Drosophila." Cell 38.3 (1984): 667-73.

Lewis, E. B. "A gene complex controlling segmentation in Drosophila." Nature 276.5688 (1978): 565-70.

(10)

Lugus, J. J., et al. "GATA2 functions at multiple steps in hemangioblast development and differentiation." Development 134.2 (2007): 393-405.

Lyman, S. D. and S. E. Jacobsen. "c-kit ligand and Flt3 ligand: stem/progenitor cell factors with overlapping yet distinct activities." Blood 91.4 (1998): 1101-34. Magli, M. C. "The role of homeobox genes in hematopoiesis." Biotherapy 10.4 (1998):

279-94.

Magli, M. C., et al. "Coordinate regulation of HOX genes in human hematopoietic cells." Proc.Natl.Acad.Sci.U.S.A 88.14 (1991): 6348-52.

Magli, M. C., C. Largman, and H. J. Lawrence. "Effects of HOX homeobox genes in blood cell differentiation." J.Cell Physiol 173.2 (1997): 168-77.

Mark, M., F. M. Rijli, and P. Chambon. "Homeobox genes in embryogenesis and pathogenesis." Pediatr.Res. 42.4 (1997): 421-29.

Martin, G. R. "Isolation of a pluripotent cell line from early mouse embryos cultured in medium conditioned by teratocarcinoma stem cells." Proc.Natl.Acad.Sci.U.S.A 78.12 (1981): 7634-38.

Matsuura, K., et al. "Adult cardiac Sca-1-positive cells differentiate into beating cardiomyocytes." J.Biol.Chem. 279.12 (2004): 11384-91.

McGinnis, W., et al. "Molecular cloning and chromosome mapping of a mouse DNA sequence homologous to homeotic genes of Drosophila." Cell 38.3 (1984): 675-80.

McGinnis, W. and R. Krumlauf. "Homeobox genes and axial patterning." Cell 68.2 (1992): 283-302.

McGinnis, W., et al. "A conserved DNA sequence in homoeotic genes of the Drosophila Antennapedia and bithorax complexes." Nature 308.5958 (1984): 428-33.

Messina, E., et al. "Isolation and expansion of adult cardiac stem cells from human and murine heart." Circ.Res. 95.9 (2004): 911-21.

(11)

Mikkola, H. K., et al. "Haematopoietic stem cells retain long-term repopulating activity and multipotency in the absence of stem-cell leukaemia SCL/tal-1 gene." Nature 421.6922 (2003): 547-51.

Molkentin, J. D. "The zinc finger-containing transcription factors GATA-4, -5, and -6. Ubiquitously expressed regulators of tissue-specific gene expression."

J.Biol.Chem. 275.50 (2000): 38949-52.

Mundlos, S. and B. R. Olsen. "Heritable diseases of the skeleton. Part I: Molecular insights into skeletal development-transcription factors and signaling pathways." FASEB J. 11.2 (1997): 125-32.

Nakashima, K. and Crombrugghe B. de. "Transcriptional mechanisms in osteoblast differentiation and bone formation." Trends Genet. 19.8 (2003): 458-66. Nakashima, K., et al. "The novel zinc finger-containing transcription factor osterix is

required for osteoblast differentiation and bone formation." Cell 108.1 (2002): 17-29.

Nilsson, S. K., et al. "Osteopontin, a key component of the hematopoietic stem cell niche and regulator of primitive hematopoietic progenitor cells." Blood 106.4 (2005): 1232-39.

Niwa, H., et al. "Self-renewal of pluripotent embryonic stem cells is mediated via activation of STAT3." Genes Dev. 12.13 (1998): 2048-60.

Nutt, S. L., et al. "Pax5 determines the identity of B cells from the beginning to the end of B-lymphopoiesis." Int.Rev.Immunol. 20.1 (2001): 65-82.

Okada, S., et al. "In vivo and in vitro stem cell function of c-kit- and Sca-1-positive murine hematopoietic cells." Blood 80.12 (1992): 3044-50.

Okamoto, R., et al. "Damaged epithelia regenerated by bone marrow-derived cells in the human gastrointestinal tract." Nat.Med. 8.9 (2002): 1011-17.

Orlic, D., et al. "Mobilized bone marrow cells repair the infarcted heart, improving function and survival." Proc.Natl.Acad.Sci.U.S.A 98.18 (2001): 10344-49.

(12)

Otto, F., et al. "Cbfa1, a candidate gene for cleidocranial dysplasia syndrome, is

essential for osteoblast differentiation and bone development." Cell 89.5 (1997): 765-71.

Owens, B. M. and R. G. Hawley. "HOX and non-HOX homeobox genes in leukemic hematopoiesis." Stem Cells 20.5 (2002): 364-79.

Pandolfi, P. P., et al. "Targeted disruption of the GATA3 gene causes severe abnormalities in the nervous system and in fetal liver haematopoiesis." Nat.Genet. 11.1 (1995): 40-44.

Pimanda, J. E., et al. "Transcriptional link between blood and bone: the stem cell leukemia gene and its +19 stem cell enhancer are active in bone cells." Mol.Cell Biol. 26.7 (2006): 2615-25.

Pittenger, M. F., et al. "Multilineage potential of adult human mesenchymal stem cells." Science 284.5411 (1999): 143-47.

Prockop, D. J. "Marrow stromal cells as stem cells for nonhematopoietic tissues." Science 276.5309 (1997): 71-74.

Quarles, L. D., et al. "Distinct proliferative and differentiated stages of murine MC3T3-E1 cells in culture: an in vitro model of osteoblast development." J.Bone

Miner.Res. 7.6 (1992): 683-92.

Raouf, A. and A. Seth. "Ets transcription factors and targets in osteogenesis." Oncogene 19.55 (2000): 6455-63.

Rattis, F. M., C. Voermans, and T. Reya. "Wnt signaling in the stem cell niche." Curr.Opin.Hematol. 11.2 (2004): 88-94.

Reiter, J. F., et al. "Gata5 is required for the development of the heart and endoderm in zebrafish." Genes Dev. 13.22 (1999): 2983-95.

Reya, T., et al. "Stem cells, cancer, and cancer stem cells." Nature 414.6859 (2001): 105-11.

Ricci-Vitiani, L., et al. "Identification and expansion of human colon-cancer-initiating cells." Nature 445.7123 (2007): 111-15.

(13)

Rodan, G. A. and M. Noda. "Gene expression in osteoblastic cells." Crit Rev.Eukaryot.Gene Expr. 1.2 (1991): 85-98.

Rubenstein, J. L. and P. A. Beachy. "Patterning of the embryonic forebrain." Curr.Opin.Neurobiol. 8.1 (1998): 18-26.

Satokata, I., et al. "Msx2 deficiency in mice causes pleiotropic defects in bone growth and ectodermal organ formation." Nat.Genet. 24.4 (2000): 391-95.

Schmidt-Ott, U., et al. "Number, identity, and sequence of the Drosophila head

segments as revealed by neural elements and their deletion patterns in mutants." Proc.Natl.Acad.Sci.U.S.A 91.18 (1994): 8363-67.

Schultz, E. and K. M. McCormick. "Skeletal muscle satellite cells." Rev.Physiol Biochem.Pharmacol. 123 (1994): 213-57.

Scott, M. P. and A. J. Weiner. "Structural relationships among genes that control

development: sequence homology between the Antennapedia, Ultrabithorax, and fushi tarazu loci of Drosophila." Proc.Natl.Acad.Sci.U.S.A 81.13 (1984): 4115-19.

Shivdasani, R. A., et al. "A lineage-selective knockout establishes the critical role of transcription factor GATA-1 in megakaryocyte growth and platelet

development." EMBO J. 16.13 (1997): 3965-73.

Shivdasani, R. A., E. L. Mayer, and S. H. Orkin. "Absence of blood formation in mice lacking the T-cell leukaemia oncoprotein tal-1/SCL." Nature 373.6513 (1995): 432-34.

Shivdasani, R. A. and S. H. Orkin. "The transcriptional control of hematopoiesis." Blood 87.10 (1996): 4025-39.

Simeone, A. "Otx1 and Otx2 in the development and evolution of the mammalian brain." EMBO J. 17.23 (1998): 6790-98.

Simeone, A. and D. Acampora. "The role of Otx2 in organizing the anterior patterning in mouse." Int.J.Dev.Biol. 45.1 (2001): 337-45.

(14)

Simeone, A., et al. "Nested expression domains of four homeobox genes in developing rostral brain." Nature 358.6388 (1992): 687-90.

Simeone, A., et al. "A vertebrate gene related to orthodenticle contains a homeodomain of the bicoid class and demarcates anterior neuroectoderm in the gastrulating mouse embryo." EMBO J. 12.7 (1993): 2735-47.

Simeone, A., et al. "Cloning and characterization of two members of the vertebrate Dlx gene family." Proc.Natl.Acad.Sci.U.S.A 91.6 (1994): 2250-54.

Simeone, A., E. Puelles, and D. Acampora. "The Otx family." Curr.Opin.Genet.Dev. 12.4 (2002): 409-15.

Singh, S. K., et al. "Identification of a cancer stem cell in human brain tumors." Cancer Res. 63.18 (2003): 5821-28.

Sodek, J., et al. "Regulation of osteopontin expression in osteoblasts." Ann.N.Y.Acad.Sci. 760 (1995): 223-41.

Song, L. and R. S. Tuan. "Transdifferentiation potential of human mesenchymal stem cells derived from bone marrow." FASEB J. 18.9 (2004): 980-82.

Spangrude, G. J., et al. "The stem cell antigens Sca-1 and Sca-2 subdivide thymic and peripheral T lymphocytes into unique subsets." J.Immunol. 141.11 (1988): 3697-707.

Suda, Y., I. Matsuo, and S. Aizawa. "Cooperation between Otx1 and Otx2 genes in developmental patterning of rostral brain." Mech.Dev. 69.1-2 (1997): 125-41. Sudo, H., et al. "In vitro differentiation and calcification in a new clonal osteogenic cell

line derived from newborn mouse calvaria." J.Cell Biol. 96.1 (1983): 191-98. Sun, L., J. Lee, and H. A. Fine. "Neuronally expressed stem cell factor induces neural

stem cell migration to areas of brain injury." J.Clin.Invest 113.9 (2004): 1364-74.

Taichman, R. S. "Blood and bone: two tissues whose fates are intertwined to create the hematopoietic stem-cell niche." Blood 105.7 (2005): 2631-39.

(15)

Tajima, F., et al. "Reciprocal expression of CD38 and CD34 by adult murine hematopoietic stem cells." Blood 97.9 (2001): 2618-24.

Tenen, D. G., et al. "Transcription factors, normal myeloid development, and leukemia." Blood 90.2 (1997): 489-519.

Theise, N. D., et al. "Liver from bone marrow in humans." Hepatology 32.1 (2000): 11-16.

Thomson, J. A., et al. "Embryonic stem cell lines derived from human blastocysts." Science 282.5391 (1998): 1145-47.

TILL, J. E. and E. A. McCULLOCH. "A direct measurement of the radiation sensitivity of normal mouse bone marrow cells." Radiat.Res. 14 (1961): 213-22.

Tong, Q., et al. "Function of GATA transcription factors in preadipocyte-adipocyte transition." Science 290.5489 (2000): 134-38.

Tong, Q., J. Tsai, and G. S. Hotamisligil. "GATA transcription factors and fat cell formation." Drug News Perspect. 16.9 (2003): 585-88.

Tsai, F. Y., et al. "An early haematopoietic defect in mice lacking the transcription factor GATA-2." Nature 371.6494 (1994): 221-26.

van, Oostveen J., et al. "The role of homeobox genes in normal hematopoiesis and hematological malignancies." Leukemia 13.11 (1999): 1675-90.

Vary, C. P., et al. "Involvement of Ets transcription factors and targets in osteoblast differentiation and matrix mineralization." Exp.Cell Res. 257.1 (2000): 213-22. Walther, C., et al. "Pax: a murine multigene family of paired box-containing genes."

Genomics 11.2 (1991): 424-34.

Watt, F. M. "Epidermal stem cells: markers, patterning and the control of stem cell fate." Philos.Trans.R.Soc.Lond B Biol.Sci. 353.1370 (1998): 831-37. Watt, F. M. and B. L. Hogan. "Out of Eden: stem cells and their niches." Science

(16)

Weimann, J. M., et al. "Contribution of transplanted bone marrow cells to Purkinje neurons in human adult brains." Proc.Natl.Acad.Sci.U.S.A 100.4 (2003): 2088-93.

Wellik, D. M. and M. R. Capecchi. "Hox10 and Hox11 genes are required to globally pattern the mammalian skeleton." Science 301.5631 (2003): 363-67.

Wezeman, F. H. "Morphological foundations of precartilage development in mesenchyme." Microsc.Res.Tech. 43.2 (1998): 91-101.

Whiteside T.L. "Assays for human cytokines and their interpretation." Clin. Immunol. Newsletter 18 (1998): 69, 72-77.

Wilson, A. and A. Trumpp. "Bone-marrow haematopoietic-stem-cell niches." Nat.Rev.Immunol. 6.2 (2006): 93-106.

Wu, S. M., et al. "Developmental origin of a bipotential myocardial and smooth muscle cell precursor in the mammalian heart." Cell 127.6 (2006): 1137-50.

Younossi-Hartenstein, A., et al. "Control of early neurogenesis of the Drosophila brain by the head gap genes tll, otd, ems, and btd." Dev.Biol. 182.2 (1997): 270-83. Zhang, J., et al. "Identification of the haematopoietic stem cell niche and control of the

niche size." Nature 425.6960 (2003): 836-41.

Zipori, D. "Mesenchymal stem cells: harnessing cell plasticity to tissue and organ repair." Blood Cells Mol.Dis. 33.3 (2004): 211-15.

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