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1.
Role of three Rab5-like GTPases, Ypt51p, Ypt52p, and Ypt53p, in the endocytic and vacuolar protein sorting pathways of yeast // J. Cell Biol., 1994. Vol. 125, N 2.-С.283-298

2.
Transport from late endosomes to lysosomes, but not sorting of integral membrane proteins in endosomes, depends on the vacuolar proton pump // J. Cell Biol., 1995. Vol. 130, N 4.-С.821-834

3.
Neither type of mannose 6-phosphate receptor is sufficient for targeting of lysosomal enzymes along intracellular routes // J. Cell Biol., 1996. Vol. 134, N 3.-С.615-623

4.
The Ypt1 GTPase is essential for the first two steps of the yeast secretory pathway // J. Cell Biol., 1995. Vol. 131, N 3.-С.583-590

5.
Polarized trafficking of plasma membrane proteins: Emerging roles for coats, SNAREs, GTPases and their link to the cytoskeleton // Biochim. et biophys. acta. Rev. Biomembranes, 1998. Vol. 1376, N 1.-С.57-90

6.
Bensen Eric S. Synthetic genetic interactions with temperature-sensitive clathrin in Saccharomyces cerevisiae: Roles for synaptojanin-like Inp53p and dynamin-related Vps1p in clathrin-dependent protein sorting at the trans-Golgi network // Genetics. -USA, 2000. Vol. 154, N 1.-С.83-97

7.
Black Michael W. A selective transport route from Golgi to late endosomes that requires the yeast GGA proteins // J. Cell Biol., 2000. Vol. 151, N 3.-С.587-600

8.
Black Michael W. A selective transport route from Golgi to late endosomes that requires the yeast GGA proteins // J. Cell Biol., 2000. Vol. 151, N 3.-С.587-600

9.
Tal, a Tsg101-specific E3 ubiquitin ligase, regulates receptor endocytosis and retrovirus budding // Genes and Dev., 2004. Vol. 18, N 14.-С.1737-1752

10.
Hsp42 is required for sequestration of protein aggregates into deposition sites in Saccharomyces cerevisiae // J. Cell Biol., 2011. Vol. 195, N 4.-С.617-629

11.
Hsp42 is required for sequestration of protein aggregates into deposition sites in Saccharomyces cerevisiae // J. Cell Biol., 2011. Vol. 195, N 4.-С.617-629

12.
Sasser Terry L. The yeast vacuolar ABC transporter Ybt1p regulates membrane fusion through Ca{2+} transport modulation // Biochem. J., 2012. Vol. 448, N 3.-С.365-372

13.
Protein sorting to the yeast vacuole // J. Cell. Biochem., 1989, Suppl N13Е.-С.12

14.
Protein targeting to the yeast vacuole // Trends Biochem. Sci., 1989. Vol. 14, N 8.-С.347-350

15.
Role of vacuolar acidification in protein sorting and zymogen activation: A genetic analysis of the yeast vacuolar proton-translocating ATPase // Mol. and Cell. Biol., 1990. Vol. 10, N 7.-С.3737-3749

 




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