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Vam7p a SNAP-25-Like Molecule and Vam3p a Syntaxin Homolog Function Together in Yeast Vacuolar Protein Trafficking

机译:Vam7p一种类似于SNAP-25的分子和Vam3p一种同源蛋白同系物在酵母液泡蛋白运输中共同起作用

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摘要

A genetic screen to isolate gene products required for vacuolar morphogenesis in the yeast Saccharomyces cerevisiae identified VAM7, a gene which encodes a protein containing a predicted coiled-coil domain homologous to the coiled-coil domain of the neuronal t-SNARE, SNAP-25 (Y. Wada and Y. Anraku, J. Biol. Chem. 267:18671–18675, 1992; T. Weimbs, S. H. Low, S. J. Chapin, K. E. Mostov, P. Bucher, and K. Hofmann, Proc. Natl. Acad. Sci. USA 94:3046–3051, 1997). Analysis of a temperature-sensitive-for-function (tsf) allele of VAM7 (vam7tsf) demonstrated that the VAM7 gene product directly functions in vacuolar protein transport. vam7tsf mutant cells incubated at the nonpermissive temperature displayed rapid defects in the delivery of multiple proteins that traffic to the vacuole via distinct biosynthetic pathways. Examination of vam7tsf cells at the nonpermissive temperature by electron microscopy revealed the accumulation of aberrant membranous compartments that may represent unfused transport intermediates. A fraction of Vam7p was localized to vacuolar membranes. Furthermore, VAM7 displayed genetic interactions with the vacuolar syntaxin homolog, VAM3. Consistent with the genetic results, Vam7p physically associated in a complex containing Vam3p, and this interaction was enhanced by inactivation of the yeast NSF (N-ethyl maleimide-sensitive factor) homolog, Sec18p. In addition to the coiled-coil domain, Vam7p also contains a putative NADPH oxidase p40phox (PX) domain. Changes in two conserved amino acids within this domain resulted in synthetic phenotypes when combined with the vam3tsf mutation, suggesting that the PX domain is required for Vam7p function. This study provides evidence for the functional and physical interaction between Vam7p and Vam3p at the vacuolar membrane, where they function as part of a t-SNARE complex required for the docking and/or fusion of multiple transport intermediates destined for the vacuole.
机译:遗传筛选可分离出酿酒酵母中液泡形态发生所需的基因产物,从而鉴定出VAM7,该基因编码一种蛋白质,该蛋白质包含与神经元t-SNARE的卷曲螺旋结构域SNAP-25( Y. Wada和Y. Anraku,生物化学杂志267:18671-18675,1992; T。Weimbs,SH Low,SJ Chapin,KE Mostov,P。Bucher和K. Hofmann,美国国家科学院院刊。美国科学94:3046–3051,1997)。对VAM7的功能性温度敏感(tsf)等位基因(vam7 tsf )的分析表明,VAM7基因产物直接在液泡蛋白转运中起作用。在非容许温度下孵育的vam7 tsf 突变细胞在通过独特的生物合成途径转运至液泡的多种蛋白质的传递中显示出快速缺陷。通过电子显微镜在非许可温度下检查vam7 tsf 细胞,发现可能代表未融合的运输中间体的异常膜室的积累。一部分Vam7p定位在液泡膜上。此外,VAM7显示出与液泡语法同系物VAM3的遗传相互作用。与遗传结果一致,Vam7p在包含Vam3p的复合物中物理结合,并且通过使酵母NSF(N-乙基马来酰亚胺敏感因子)同系物Sec18p失活而增强了这种相互作用。除了卷曲螺旋结构域外,Vam7p还包含一个推定的NADPH氧化酶p40 phox (PX)域。当与vam3 tsf 突变结合时,该结构域中两个保守氨基酸的变化导致合成表型,这表明Pam结构域是Vam7p功能所必需的。这项研究提供了Vam7p和Vam3p在液泡膜上的功能和物理相互作用的证据,其中它们作为t-SNARE复合物的一部分,对接和/或融合了液泡的多种运输中间体所需。

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