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  • Author: Munn AL
  • References

Author: Munn AL


References 31 references


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  • Landsberg MJ, et al. (2009) Three-dimensional structure of AAA ATPase Vps4: advancing structural insights into the mechanisms of endosomal sorting and enveloped virus budding. Structure 17(3):427-37 PMID:19278657
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  • Munn AL and Thanabalu T (2009) Verprolin: a cool set of actin-binding sites and some very HOT prolines. IUBMB Life 61(7):707-12 PMID:19507265
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  • Thanabalu T, et al. (2007) Verprolin function in endocytosis and actin organization. Roles of the Las17p (yeast WASP)-binding domain and a novel C-terminal actin-binding domain. FEBS J 274(16):4103-25 PMID:17635585
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  • Vajjhala PR, et al. (2007) Vps4 regulates a subset of protein interactions at the multivesicular endosome. FEBS J 274(8):1894-907 PMID:17408385
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  • Wiradjaja F, et al. (2007) Inactivation of the phosphoinositide phosphatases Sac1p and Inp54p leads to accumulation of phosphatidylinositol 4,5-bisphosphate on vacuole membranes and vacuolar fusion defects. J Biol Chem 282(22):16295-307 PMID:17392273
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  • Brinkworth RI, et al. (2006) Protein kinases associated with the yeast phosphoproteome. BMC Bioinformatics 7:47 PMID:16445868
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  • Vajjhala PR, et al. (2006) The beta domain is required for Vps4p oligomerization into a functionally active ATPase. FEBS J 273(11):2357-73 PMID:16704411
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  • Ren G, et al. (2005) Verprolin cytokinesis function mediated by the Hof one trap domain. Traffic 6(7):575-93 PMID:15941409
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  • Wang P, et al. (2005) Molecular characterization of Osh6p, an oxysterol binding protein homolog in the yeast Saccharomyces cerevisiae. FEBS J 272(18):4703-15 PMID:16156791
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  • Wang P, et al. (2005) AAA ATPases regulate membrane association of yeast oxysterol binding proteins and sterol metabolism. EMBO J 24(17):2989-99 PMID:16096648
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  • Zhang S, et al. (2004) Ncr1p, the yeast ortholog of mammalian Niemann Pick C1 protein, is dispensable for endocytic transport. Traffic 5(12):1017-30 PMID:15522102
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  • Yeo SC, et al. (2003) Vps20p and Vta1p interact with Vps4p and function in multivesicular body sorting and endosomal transport in Saccharomyces cerevisiae. J Cell Sci 116(Pt 19):3957-70 PMID:12953057
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  • Munn AL (2001) Molecular requirements for the internalisation step of endocytosis: insights from yeast. Biochim Biophys Acta 1535(3):236-57 PMID:11278164
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  • Thanabalu T and Munn AL (2001) Functions of Vrp1p in cytokinesis and actin patches are distinct and neither requires a WH2/V domain. EMBO J 20(24):6979-89 PMID:11742975
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  • Munn AL (2000) The yeast endocytic membrane transport system. Microsc Res Tech 51(6):547-62 PMID:11169857
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  • Munn AL, et al. (1999) Specific sterols required for the internalization step of endocytosis in yeast. Mol Biol Cell 10(11):3943-57 PMID:10564282
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  • Naqvi SN, et al. (1998) The WASp homologue Las17p functions with the WIP homologue End5p/verprolin and is essential for endocytosis in yeast. Curr Biol 8(17):959-62 PMID:9742397
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  • Wesp A, et al. (1997) End4p/Sla2p interacts with actin-associated proteins for endocytosis in Saccharomyces cerevisiae. Mol Biol Cell 8(11):2291-306 PMID:9362070
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  • Wang YX, et al. (1996) Multiple classes of yeast mutants are defective in vacuole partitioning yet target vacuole proteins correctly. Mol Biol Cell 7(9):1375-89 PMID:8885233
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  • Munn AL, et al. (1995) end5, end6, and end7: mutations that cause actin delocalization and block the internalization step of endocytosis in Saccharomyces cerevisiae. Mol Biol Cell 6(12):1721-42 PMID:8590801
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  • Munn AL and Riezman H (1994) Endocytosis is required for the growth of vacuolar H(+)-ATPase-defective yeast: identification of six new END genes. J Cell Biol 127(2):373-86 PMID:7929582
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  • Munn AL, et al. (1991) Viability of clathrin heavy-chain-deficient Saccharomyces cerevisiae is compromised by mutations at numerous loci: implications for the suppression hypothesis. Mol Cell Biol 11(8):3868-78 PMID:2072897
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