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膜脂组成在酿酒酵母中调控可溶性N-乙基马来酰亚胺敏感因子受体功能的作用的遗传学证据。

Genetic evidence of a role for membrane lipid composition in the regulation of soluble NEM-sensitive factor receptor function in Saccharomyces cerevisiae.

作者信息

Coluccio Alison, Malzone Maria, Neiman Aaron M

机构信息

Department of Biochemistry and Cell Biology and Institute for Cell and Developmental Biology, State University of New York, Stony Brook, New York 11794-5215, USA.

出版信息

Genetics. 2004 Jan;166(1):89-97. doi: 10.1534/genetics.166.1.89.

Abstract

SEC9 and SPO20 encode SNARE proteins related to the mammalian SNAP-25 family. Sec9p associates with the SNAREs Sso1/2p and Snc1/2p to promote the fusion of vesicles with the plasma membrane. Spo20p functions with the same two partner SNAREs to mediate the fusion of vesicles with the prospore membrane during sporogenesis. A chimeric molecule, in which the helices of Sec9p that bind to Sso1/2p and Snc1/2p are replaced with the homologous regions of Spo20p, will not support vesicle fusion in vegetative cells. The phosphatidylinositol-4-phosphate-5-kinase MSS4 was isolated as a high-copy suppressor that permits this chimera to rescue the temperature-sensitive growth of a sec9-4 mutant. Suppression by MSS4 is specific to molecules that contain the Spo20p helical domains. This suppression requires an intact copy of SPO14, encoding phospholipase D. Overexpression of MSS4 leads to a recruitment of the Spo14 protein to the plasma membrane and this may be the basis for MSS4 action. Consistent with this, deletion of KES1, a gene that behaves as a negative regulator of SPO14, also promotes the function of SPO20 in vegetative cells. These results indicate that elevated levels of phosphatidic acid in the membrane may be required specifically for the function of SNARE complexes containing Spo20p.

摘要

SEC9和SPO20编码与哺乳动物SNAP - 25家族相关的SNARE蛋白。Sec9p与SNARE蛋白Sso1/2p和Snc1/2p结合,以促进囊泡与质膜的融合。Spo20p在孢子形成过程中与相同的两个伙伴SNARE蛋白一起发挥作用,介导囊泡与前孢子膜的融合。一种嵌合分子,其中与Sso1/2p和Snc1/2p结合的Sec9p螺旋被Spo20p的同源区域取代,将无法支持营养细胞中的囊泡融合。磷脂酰肌醇 - 4 - 磷酸 - 5 - 激酶MSS4作为一种高拷贝抑制因子被分离出来,它能使这种嵌合体挽救sec9 - 4突变体的温度敏感生长。MSS4的抑制作用对含有Spo20p螺旋结构域的分子具有特异性。这种抑制作用需要编码磷脂酶D的SPO14的完整拷贝。MSS4的过表达导致Spo14蛋白募集到质膜,这可能是MSS4作用的基础。与此一致的是,KES1基因(作为SPO14的负调节因子)的缺失也促进了Spo20在营养细胞中的功能。这些结果表明,膜中磷脂酸水平的升高可能是含有Spo20p的SNARE复合体功能所特需的。

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本文引用的文献

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