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Balch, W. E (1990). Small GTP-binding proteins in vesicular transport. Trends Biochem. Sci 15, 473-477.[Medline]

Baumert, M., Fischer von Mollard, G., Jahn, R. and Sudhof, T. C (1993). Structure of the murine rab3A gene: correlation of genomic organization with antibody epitopes. Biochem. J 293, 157-163.

Bourne, H. R., Sanders, D. A. and McCormick, F (1990). The GTPase superfamily: a conserved switch for diverse cell functions. Nature 348, 125-132.[Medline]

Bucci, C., Parton, R. G., Mather, I. H., Stunnenberg, H., Simons, K., Hoflack, B. and Zerial, M (1992). The small GTPase rab5 functions as a regulatory factor in the early endocytic pathway. Cell 70, 715-728.[Medline]

Burstein, E. S., Brondyk, W. H. and Macara, I. G (1992). Amino acid residues in the Ras-like GTPase Rab3A that specify sensitivity to factors that regulate the GTP/GDP cycling of Rab3A. J. Biol. Chem 267, 22715-22718.[Abstract/Free Full Text]

Burton, J. L., Slepnev, V. and De Camilli, P. V (1997). An evolutionarily conserved domain in a subfamily of Rabs is crucial for the interaction with the guanyl nucleotide exchange factor Mss4. J. Biol. Chem 272, 3663-3668.[Abstract/Free Full Text]

Chen, Y.-T., Holcomb, C. and Moore, H.-P (1993). Expression and localization of two low molecular weight GTP-binding proteins, Rab8 and Rab10, by epitope tag. Proc. Nat. Acad. Sci. USA 90, 6508-6512.[Abstract/Free Full Text]

Chomczynski, P. and Sacchi, N (1987). Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal. Biochem 162, 156-159.[Medline]

Drugan, J. K., Khosravi-Far, R., White, M. A., Der, C. J., Sung, Y.-J., Hwang, Y.-W. and Campbell, S. L (1996). Ras interaction with two distinct binding domains in Raf-1 may be required for Ras transformation. J. Biol. Chem 271, 233-237.[Abstract/Free Full Text]

Fischer von Mollard, G., Stahl, B., Li, C., Sudhof, T. C. and Jahn, R (1994). Rab proteins in regulated exocytosis. Trends Biochem. Sci 19, 164-168.[Medline]

Fujiwara, T., Oda, K., Yokota, S., Takatsuki, A. and Ikehara, Y (1988). Brefeldin A causes disassembly of the Golgi complex and accumulation of secretory proteins in the endoplasmic reticulum. J. Biol. Chem 263, 18545-18552.[Abstract/Free Full Text]

Gorvel, J.-P., Chavrier, P., Zerial, M. and Gruenberg, J (1991). rab5 controls early endosome fusion in vitro. Cell 64, 915-925.[Medline]

Goud, B., Zahraoui, A., Tavitian, A. and Saraste, J (1990). Small GTP-binding protein associated with Golgi cisternae. Nature 345, 553-556.[Medline]

Huber, L. A., Pimplikar, S., Parton, R. G., Virta, H., Zerial, M. and Simons, K (1993). Rab8, a small GTPase involved in vesicular traffic between the TGN and the basolateral plasma membrane. J. Cell Biol 123, 35-45.[Abstract/Free Full Text]

Iwabe, N., Kuma, K. and Miyata, T (1996). Evolution of gene families and relationship with organismal evolution: rapid divergence of tissue-specific genes in the early evolution of chordates. Mol. Biol. Evol 13, 483-493.[Abstract]

Jones, S. M., Crosby, J. R., Salamero, J. and Howell, K. E (1993). A cytosolic complex of p62 and rab6 associates with TGN38/41 and is involved in budding of exocytic vesicles from the trans -Golgi network. J. Cell Biol 122, 775-788.[Abstract/Free Full Text]

Koda, T. and Kakinuma, M (1993). Molecular cloning of a cDNA encoding a novel small GTP-binding protein. FEBS Lett 328, 21-24.[Medline]

Koda, T., Hasan, S., Sasaki, A., Arimura, Y. and Kakinuma, M (1994). Regulatory sequences required for hst-1 expression in embryonal carcinoma cells. FEBS Lett 342, 71-75.[Medline]

Lai, F., Stubbs, L. and Artzt, K (1994). Molecular analysis of mouse rab11b : a new type of mammalian YPT/Rab protein. Genomics 22, 610-616.[Medline]

Lombardi, D., Soldati, T., Riederer, M. A., Goda, Y., Zerial, M. and Pfeffer, S. R (1993). Rab9 functions in transport between late endosomes and the trans Golgi network. EMBO J 12, 677-682.[Medline]

Lowy, D. R. and Willumsen, B. M (1993). Function and regulation of Ras. Annu. Rev. Biochem 62, 851-891.[Medline]

Martinez, O., Schmidt, A., Salamero, J., Hoflack, B., Roa, M. and Goud, B (1994). The small GTP-binding protein rab6 functions in intra-Golgi transport. J. Cell Biol 127, 1575-1588.[Abstract/Free Full Text]

Milburn, M. V., Tong, L., deVos, A. M., Brunger, A., Yamaizumi, Z., Nishimura, S. and Kim, S.-H (1990). Molecular switch for signal transduction: structural differences between active and inactive forms of protooncogenic ras proteins. Science 247, 939-945.[Abstract/Free Full Text]

Moore, I., Schell, J. and Palme, K (1995). Subclass-specific sequence motifs identified in Rab GTPases. Trends Biochem. Sci 20, 10-12.[Medline]

Novick, P. and Brennwald, P (1993). Friends and family: the role of the Rab GTPases in vesicular traffic. Cell 75, 597-601.[Medline]

Novikoff, P. M., Tulsiani, D. R. P., Touster, O., Yam, A. and Novikoff, A. B (1983). Immunocytochemical localization of-D-mannosidase II in the Golgi apparatus of rat liver. Proc. Nat. Acad. Sci. USA 80, 4364-4368.[Abstract/Free Full Text]

Nuoffer, C. and Balch, W. E (1994). GTPases: multifunctional molecular switches regulating vesicular traffic. Annu. Rev. Biochem 63, 949-990.[Medline]

Olkkonen, V. M., Dupree, P., Killisch, I., Lutcke, A., Zerial, M. and Simons, K (1993). Molecular cloning and subcellular localization of three GTP-binding proteins of the rab subfamily. J. Cell Sci 106, 1249-1261.[Abstract]

Pfeffer, S. R (1994). Rab GTPases: master regulators of membrane trafficking. Curr. Opin. Cell Biol 6, 522-526.[Medline]

Plutner, H., Cox, A. D., Pind, S., Khosravi-Far, R., Bourne, J. R., Schwaninger, R., Der, C. J. and Balch, W. E (1991). Rab1b regulates vesicular transport between the endoplasmic reticulum and successive Golgi compartments. J. Cell Biol 115, 31-43.[Abstract/Free Full Text]

Rabouille, C., Hui, N., Hunte, F., Kieckbusch, R., Berger, E. G., Warren, G. and Nilsson, T (1995). Mapping the distribution of Golgi enzymes involved in the construction of complex oligosaccharides. J. Cell Sci 108, 1617-1627.[Abstract]

Sanders, D. A (1990). A guide to low molecular weight GTPases. Cell Growth Differ 1, 251-258.[Medline]

Schlichting, I., Almo, S. C., Rapp, G., Wilson, K., Petratos, K., Lentfer, A., Wittinghofer, A., Kabsch, W., Pai, E. F., Petsko, G. A. and Goody, R. S (1990). Time-resolved X-ray crystallographic study of the conformational change in Ha-Ras p21 protein on GTP hydrolysis. Nature 345, 309-315.[Medline]

Simons, K. and Zerial, M (1993). Rab proteins and the road maps for intracellular transport. Neuron 11, 789-799.[Medline]

Stefanini, M., De Martino, C. and Zamboni, I (1967). Fixation of ejaculated spermatozoa for electron microscopy. Nature 216, 173-174.[Medline]

Tisdale, E. J., Bourne, J. R., Khosravi-Far, R., Der, C. J. and Balch, W. E (1992). GTP-binding mutants of rab1 and rab2 are potent inhibitors of vesicular transport from the endoplasmic reticulum to the Golgi complex. J. Cell Biol 119, 749-761.[Abstract/Free Full Text]

Valencia, A., Chardin, P., Wittinghofer, A. and Sander, C (1991). The ras protein family: evolutionary tree and role of conserved amino acids. Biochemistry 30, 4637-4648.[Medline]

Velasco, A., Hendricks, L., Moremen, K. W., Tulsiani, D. R. P., Touster, O. and Farquhar, M. G (1993). Cell type-dependent variations in the subcellular distribution of-mannosidase I and II. J. Cell Biol 122, 39-51.[Abstract/Free Full Text]

Wichmann, H., Disela, C., Haubruck, H. and Gallwitz, D (1989). Nucleotide sequence of the mouse ypt1 gene encoding a ras -related GTP-binding protein. Nucl. Acids Res 17, 6737-6738.[Free Full Text]

Zheng, J. Y., Koda, T., Arimura, Y., Kishi, M. and Kakinuma, M (1997). Structure and expression of the mouse S10 gene. Biochim. Biophys. Acta 1351, 47-50.[Medline]




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