• Non ci sono risultati.

CAPITOLO 7 BIBLIOGRAFIA

N/A
N/A
Protected

Academic year: 2021

Condividi "CAPITOLO 7 BIBLIOGRAFIA"

Copied!
12
0
0

Testo completo

(1)

CAPITOLO 7

(2)

7. Bibliografia

Agarraberes, F. A., Dice, J. F. A molecular chaperone complex at the lysosomal

membrane is required for protein translocation. J. Cell Sci. 114, 2491-2499 (2001).

Agashe, V. R., Hartl, F. U. Roles of molecular chaperones in cytoplasmic protein

folding. Seminars in CELL & DEVELOPMENTAL BIOLOGY Vol 11 15-25 (2000).

Audibert, F., Adjuvants for vaccines, a quest, Int. Immunopharmacol. 3, 1187–1193.

(2003)

Beckmann, R. P., Mizzen, L. A., Welch, W. J. Interaction of HSP 70 with newly

synthesized proteins: Implications for protein folding and assembly. Science 248, 850-854 (1990).

Berthold, J., Bauer, M. F. Schneider, H. C., Klaus, C., Dietmeier, K., Neupert, W.,

Brunner, M. The MIM complex mediates preprotein translocation across the mitochondrial inner membrane and couples it to the mt-HSP70/ATP driving system.

Cell 81, 1085-1093 (1995).

Bevan, M., Binary Agrobacterium vectors for plant transformation. Nucleic Acids

Res 12, 8711-8721 (1984)

Blachere, N. E., Li, Z., Chandawarker, R. Y., Suto, R., Jaikaria, N. S., Basu, S.,

Udono, H., Srivastava, P. K. Heat shock protein – peptide complexes, reconstituted in vitro, elicit peptide-specific cytotoxic T lymphocyte response and tumor immunity, J.

(3)

Borisjuk, N.V., Borisjuk, L.G., Sithes Logendra, Petersen, F., Gleba, Y., Raskin, I.,

Production of recombinant proteins in plant root exudates, Nature Biotechnology, 17, 466 - 469 (1999)

Braakman, L., Helenius, J., Helenius, A., Role of ATP and disulphide bonds during

protein folding in the endoplasmatic reticulum. Nature, 356, 260-262 (1992).

Caplan, A. J., Cyr DM, Douglas, M. G., Eukaryotic homologues of Escherichia coli

dnaj: a diverse protein family that functions with HSP70 stress protein. Mol Biol Cell,

4, 555-563 (1993).

Castelli, C., Ciupitu, A. M., Rini, F., Rivoltini, L., Mazzocchi, A., Kiessling, R.,

Parmiani, G., Human heat shock protein 70 peptide complexes specifically activate antimelanoma T cells. Cancer Res. 61, 222-227, (2001)

Chandawarkar, R. Y., Wagh,. M. S., Srivastava, P. K., The dual nature of specific

immunological activity of tumor-derived gp96 preparations. J. Exp. Med., 198, 797-802 (1999).

Chilton, M-D., Tepfer, D. A., Petit, A., David, C., Casse-Delbart, F., Tempé, J.,

Agrobacterium rhizogenes inserts T-DNA into the genomes of the host plant root

cells, Nature, 295, 432-434 (1982).

Chirico, W. J., Waters, M. G. and Blobel, G. 70K heat shock related proteins

stimulate protein translocation into microsomes. Nature, 332, 805-810 (1988).

Craig, E. A., Gambill, B. D., Nelson, R.J., Heat shock proteins : molecular

(4)

Daniell, H., Streatfield, S. J., Wycoff, K., Medical molecular farming: production of

antibodies, biopharmaceuticals and edible vaccines in plants. Trends Plant Sci. 6, 219-226 (2001).

Deneck, J., Botterman, J., Deblaere, R., Protein Secretion in Plant Cells Can Occur

via a Default Pathway. Plant Cell, 2, 51-59 (1990).

Deshaies, R. J., Koch, B.D., Werner-Washnurne, M., Craig, E. A., and Schekman, R.

A. Subfamily of stress proteins facilates translocation of secretory and mitocondrial precursor polipeptides. Nature, 332, 800-805 (1988).

Doran, P. M., Foreign protein production in plant tissue cultures. Curr. Opin.

Biotechnol. 11, 199-204 (2000).

Ecke, W., Schmitz, U. and Michaelis, G. 1990. The mitochondrial nad5 gene of sugar

beet (Beta vulgaris) encoding a subunit of the respiratory NADH dehydrogenase. Curr Genet 18(2): 133-9.

Ellis, R. J., Van der Vies, S. M. Molecular chaperones. Ann. Rev. Biochem. 60, 321–

347 (1991).

Evstigneeva, Z. G., Solov’eva, N. A., Sidel’nikova, L. I. Structures and Functions of

Chaperones and Chaperonins. (A Review). Appl. Biochem. Microbiol. 37, 1-13 (2001).

Firek, S., Draper, J., Owen, M. R. L., Gandecha, A., Cockburn, B., Whitelam, G. C.,

Secretion of a functional single-chain Fv protein in transgenic tobacco plants and cell suspension culture. Plant Mol. Biol. 23, 861-870 (1993).

(5)

Frydman, J. Folding of newly translated proteins in vivo: the role of molecular

chaperones. Annu. Rev. Biochem. 70, 603-347 (2001).

Forreiter, C., Nover, L., Heat stress induced protein and concept of molecular

chaperones, J. Biosci. 23, 287-302. (1998)

Gagnon, H., Ibrahim, R. K., Effects of various elicitors on the accumulation and

secretion of isoflavonoids in white lupin (Lupinus albus L.) Phytochemistry. 44 1463-1467 (1997).

Gaume, A., Komarnytsky, S., Borisjuk, N., Raskin, I., Rhizosecretion of

recombinant proteins from plant hairy roots. Plant Cell Rep. 21, 1188-1193 (2003).

Gething, M.-J., and Sambrook, J. Protein folding in the cell. Nature 355, 33–45

(1992).

Guy, C., Haskell, D., & Li, Q-B., Association of Proteins with the stress 70

Molecular Chaperones at Low Temperature: Evidence for the Existence of Cold Labile Proteins in Spinach. Cryobiology 36, 301-314 (1998).

Giddings, G., Allison, G., Brooks, D., Carter, A., Transgenic plants as factories for

biopharmaceuticals. Nat. Biotechnol. 18, 1151-1155 (2000).

Gilstring, C. F., Melin-Larsson, M., Ljungdahl, P. O., Shr3p mediates specific COPII

coatomer-cargo interactions required for the packaging of amino acid permease into ER-derived transport vesicles, Mol. Biol. Cell, 10, 3549-3565 (1999).

Gleba, D., Borisjuk, N. V., Borisjuk, L. G., Kneer, R., Poulev, A., Skarzhinskaya,

(6)

phytoremediation and molecular farming. Colloquium Paper Proc. Natl. Acad. Sc.i

USA. 96, 5973-5977 (1999).

Glick, B. S., ER export: More than one way out. Current Biology, 11, R361-R366

(2001)

Golds, T. J., Lee, J., Y., Husnain, T., Ghose, T., K., Davey, M., R., Agrobacterium

rhizogenes mediated transformation of the forage legumes Medicago sativa and Onobrychis viciifolia. J Exp. Bot. 42, 1147-1157 (2001).

Habich, C., Baumgart, K., Kolb, H., Burkart¸V., The Receptor for Heat Shock

Protein 60 on Macrophages Is Saturable, Specific, and Distinct from Receptors for Other Heat Shock Proteins, J. of Immunol, 168, 569-576 (2002).

Habich, C., Kempe, K., Van der Zee, R., Burkart, V., Kolb, H., Different heat shock

protein 60 species share pro-inflammatory activity but not binding sites on macrophages. FEBS Lett. 533, 105-109 (2003)

Hartl, F. U., Molecular chaperones in cellular protein folding, Nature, 381, 571-580

(1996).

Herrman, J. M., Malkus, P., Schekman, R., Out of the ER – outfitters, escorts and

guides, Trends Cell Biol., 9, 5-7 (1999).

High, S., Lecompt, F. J., Russel, S. J., Abell, B. M., Oliver J. D.Glycoprotein folding

in the endoplasmic reticulum: A tale of three chaperones? FEBS Lett 476: 38-41 (2000).

(7)

Hisaeda, H., Himeno, K., The role of host-derived heat-shock protein in

resistance against Toxoplasma gondii infection. Parasitol. Today 13, 465-468 (1997)

Holt, B.F., Hubert, D.A., Dangl, J.L., Resistance gene signalling in plants – complex

similarities to animal innate immunity, Current Opinion in Immunol. 15, 20-25 (2003)

Hwang, C., Sinskey, A. J., and Lodish, H. F., Oxidized redox state of glutatione in

the endoplasmatic reticulum. Science, 257, 1496-1502 (1992).

Jindal, S., Heat shock proteins: applications in health and disease. Trends

Biotechnol. 14, 17-20 (1996)

Johansson, G., Release of organic C from growing roots of meadow fescue (Festuca

pratensis L.) Soil Biol. Biochem. 24, 427-433 (1992).

Kammerer, R., Stober, D., Riedl, P., Oehninger, C., Schirmbeck, R., Reimann, J.,

Noncovalent association with stress protein facilitates cross-priming of CD8+ T cells to tumor cell antigens by dendritic cells, J. Immunol., 168, 108-117 (2002)

Kim, J. H., Johannes, L., Goud, B., Antony, C., Lingwood, C. A., Daneman, R.,

Grinstein, S., Noninvasive measurement of the pH of the endoplasmic reticulum at rest and during calcium release. Proc. Natl. Acad. Sci. USA 95, 2997-3002 (1998).

Kleizen, B, Braakman, I., Protein folding and quality control in the endoplasmic

(8)

Komarnytsky, S., Borisjuk, N. V., Borisjuk, L. G., Alam, M. Z. and Raskin, I.

Production of recombinant proteins in tobacco guttation fluid. Plant Physiol 124, 927-34.( 2000)

Li, M., Tadano, T., Comparison of characteristics of acid phosphatases secreted from

roots of lupin and tomato, Soil Sci Plant Nutr. 42, 753-763 (1996).

Li, Z., Menoret, A., Srivastava, P., Roles of heat-shock proteins in antigen

presentation and cross-presentation. Curr. Opin. Immunol. 14, 45-51 (2002).

Li, Z., In vitro reconstitution of heat shock protein-peptide complexes for generating

peptide-specific vaccines against cancers and infectious diseases., Methods, 32, 25-8 (2004)

Martinez-Menárguez, J. A., Geuze, H. J., Slot, J. W., Klumperman, J., Vesicular

tubular clusters between the ER and Golgi mediate concentration of soluble secretory proteins by exclusion from COPI-coated vesicules, Cell, 98, 81-90 (1999).

Maxwell, C. A. , Phillips D. A., Concurrent Synthesis and Release of

nod-Gene-Inducing Flavonoids from Alfalfa Roots. Plant Physiol. 93, 1552-1558 (1990).

www.pubmedcentral.gov

Mersereau, M., Pazour, G.J., Das, A., Efficient transformation of Agrobacterium

tumefaciens by electroporation, Gene, 90, 149-51 (1990)

Michalak, M., Lynch, J., Groememdyk, J., Guo, L., Robert Parker, J: M., Opas, M.,

Calreticulin in cardiac development and pathology. Biochim. Biophys. Acta 1600, 32-37 (2002).

(9)

Millar, D.G., Garza, K.M., Odermatt, B., Elford, A.R., Ono, N., Li, Z. Ohashi, P.S.,

Hsp70 promotes antigen-presenting cell function and converts T-cell tolerance to autoimmunity in vivo. Nature Medicine, 9, 1469-1476 (2003).

Mozo, T., e Hooykaas, P.J.J, Design of a novel system for the construction of vectors for Agrobacterium-mediated plant transformation, Molecular and General Genetics

MGG 236, 1-7 (1992)

Muñiz, M., Morsomme, P., Riezman, H., Protein sorting upon exit from the

endoplasmic reticulum, Cell, 104, 313-320 (2001).

Nicoll, W. S., Boshoff, A. Ludewig, M. H., Hennessy, F., Jung, M., Blatch, G. L.,

Approaches to the isolation and characterization of molecular chaperones. A Review.

Prot. Express. Putific. 46 (2006).

Owens-Grillo, J.K. Czar, M.J., Hutchison, K.A., Hoffmann, K., Perdew, G.H., Pratt,

W.B., A model of protein targeting mediated by immunophilins and other ptoteins that bind to hsp90 via tetratricopeptide repeat domains. J Biol. Chem. 271, 13468-75 (1996)

Peters, N. K., Long, S. R., Alfalfa Roots Exudates and Compounds which Promote

of Inhibit Induction of Rhizobium meliloti Nodulation Genes. Plant Physiol. 88, 396-400 (1988).

www.pubmedcentral.gov

Pockley, A.G., Heat shock proteins as regulators of the immune response, Review,

The Lancet, 362, 469-476 (2003).

(10)

Powers, J., Barlowe, C., Transport of Axl2p depends on Evr14p, an ER-vesicle

protein related to the Drosophila cornichon gene product. J. Cell. Biol., 142, 1209-1222 (1998).

Reynaud, E. G., Simpson, J. C., Navigating the secretory pathway. EMBO Reports 3,

9, 828-833 (2002).

Roth, J., Ziak, M., Zuber, C., The role of glucosidase II and endomannosidase in

glucose trimming of asparagines-linked oligosaccharides. Biochimie, 85, 287-294 (2003).

Scales, S. J., Gomez, M., Kreis, T. E., Coat Proteins regulating membrane traffic.

Int. Rev. Cytol. 195, 67-144 (2000).

Schmulling, T., Schell, J., Spena, A., Single genes from Agrobacterium rhizogenes

influence plant development. EMBO J, 7, 2621-2629 (1988).

Shepherd, T., Davies, H. V., Carbon Loss from the Roots of Forage Rape (Brassica

napus L.) Seedlings Following Pulse-labelling with 14CO2. Ann. bot. 72, 155-163 (1993). www.ingentaconnect.com

Simons, K., Ikonen, E., Functional rafts in cell membranes. Nature, 387, 569-572

(1997).

Singer, M. A., and Lindquist, S., Multiple effects of trehalose on protein folding in

vitro and in vivo. Mol. Cell, 1, 639-648 (1998).

(11)

receptor into a functional heterocomplex with hsp90, Biochemistry 35, 554-561 (1996)

Tatsuta, T., Joo, D. M., Calendar, R., Akiyama, Y., Ogura, T., Evidence for an active

role of the Dna K chaperone system in the degradation of 32, FEBS Lett., 478 271-275 (2000).

Vierling, E. The roles of heat shock proteins in plants. Annu. Rev. Plant Physiol.

Plant Mol. Biol. 42, 579-620 (1991).

Trombetta, E: S., Parodi, A. J., Quality control and protein folding in the secretory

pathway. Annu. Rev. Cell. Dev. Biol. 19, 649-676 (2003).

Tu, B. P., Weissman, J. S., Oxidative protein folding in eukaryotes : Mechanisms and

consequences. J. Cell Biol. 164, 341-346 (2004).

Vitale, A., Denecke, J., The Endoplasmatic Reticulum – Gateway of the Secretory

Pathway. The Plant cell. 11, 615-628 (1999). http://www.plantcell.org

Waters, E. R., et al. Evolution, structure and function of the small heat shock

proteins in plants. J. Exp. Bot. 47, 325-338 (1996).

Walter, P., Lingappa, V., Mechanism of protein translocation across the

endoplasmatic reticulum. Annu. Rev. Cell. Biol., 2, 499-516 (1986).

Wang, W., Vinocur, B., Shoseyov, O., Altman, A., Role of plant heat-shock proteins

and molecular chaperones in the abiotic stress response. Review Trends Plant Sci., 9, No.5 (2004).

(12)

Wu, J. C., Liang, Z. Q., Qin, Z. H., Quality Control System of the Endoplasmic

Riferimenti

Documenti correlati