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The DHHC protein Pfa3 affects vacuole-associated palmitoylation of the fusion factor Vac8

Authors :
Hou, Haitong
Subramanian, Kanagaraj
LaGrassa, Tracy J.
Markgraf, Daniel
Dietrich, Lars E.P.
Urban, Jorg
Decker, Nadine
Ungermann, Christian
Source :
Proceedings of the National Academy of Sciences of the United States. Nov 29, 2005, Vol. 102 Issue 48, p17366, 6 p.
Publication Year :
2005

Abstract

Vacuole biogenesis depends on specific targeting and retention of peripheral membrane proteins. At least three palmitoylated proteins are found exclusively on yeast vacuoles: the fusion factor Vac8, the kinase Yck3, and a novel adaptor protein implicated in microautophagy, Meh1. Here, we analyze the role that putative acyltransferases of the DHHC family play in their localization and function. We find that Pfa3/Ynl326c is required for efficient localization of Vac8 to vacuoles in vivo, while Yck3 or Meh1 localization is not impaired in any of the seven DHHC deletions. Vacuole-associated Vac8 appears to be palmitoylated in a pfa3 mutant, but this population is refractive to further palmitoylation on isolated vacuoles. Vacuole morphology and inheritance, which both depend on Vac8 palmitoylation, appear normal, although there is a reduction in vacuole fusion. Interestingly, Pfa3 is required for the vacuolar localization of not only an SH4 domain that is targeted by myristate/palmitate (as in Vac8) but also one that is targeted by a myristate/basic stretch (as in Src). Our data indicate that Pfa3 has an important but not exclusive function for Vac8 localization to the vacuole. Yck3 | SH4 domain | acylation | membrane targeting

Details

Language :
English
ISSN :
00278424
Volume :
102
Issue :
48
Database :
Gale General OneFile
Journal :
Proceedings of the National Academy of Sciences of the United States
Publication Type :
Academic Journal
Accession number :
edsgcl.140142955