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脂肪酸合成限速酶乙酰辅酶A羧化酶的一种新型冷敏感等位基因,通过Vac8p的酰化作用影响酵母液泡的形态。

A novel cold-sensitive allele of the rate-limiting enzyme of fatty acid synthesis, acetyl coenzyme A carboxylase, affects the morphology of the yeast vacuole through acylation of Vac8p.

作者信息

Schneiter R, Guerra C E, Lampl M, Tatzer V, Zellnig G, Klein H L, Kohlwein S D

机构信息

SFB Biomembrane Research Center, Institut für Biochemie und Lebensmittelchemie, Technische Universität Graz, A-8010 Graz, Austria.

出版信息

Mol Cell Biol. 2000 May;20(9):2984-95. doi: 10.1128/MCB.20.9.2984-2995.2000.

Abstract

The yeast vacuole functions both as a degradative organelle and as a storage depot for small molecules and ions. Vacuoles are dynamic reticular structures that appear to alternately fuse and fragment as a function of growth stage and environment. Vac8p, an armadillo repeat-containing protein, has previously been shown to function both in vacuolar inheritance and in protein targeting from the cytoplasm to the vacuole. Both myristoylation and palmitoylation of Vac8p are required for its efficient localization to the vacuolar membrane (Y.-X. Wang, N. L. Catlett, and L. S. Weisman, J. Cell Biol. 140:1063-1074, 1998). We report that mutants with conditional defects in the rate-limiting enzyme of fatty acid synthesis, acetyl coenzyme A carboxylase (ACC1), display unusually multilobed vacuoles, similar to those observed in vac8 mutant cells. This vacuolar phenotype of acc1 mutant cells was shown biochemically to be accompanied by a reduced acylation of Vac8p which was alleviated by fatty acid supplementation. Consistent with the proposed defect of acc1 mutant cells in acylation of Vac8p, vacuolar membrane localization of Vac8p was impaired upon shifting acc1 mutant cells to nonpermissive condition. The function of Vac8p in protein targeting, on the other hand, was not affected under these conditions. These observations link fatty acid synthesis and availability to direct morphological alterations of an organellar membrane.

摘要

酵母液泡既作为一种降解细胞器,又作为小分子和离子的储存库。液泡是动态的网状结构,似乎会根据生长阶段和环境交替融合和分裂。Vac8p是一种含有犰狳重复序列的蛋白质,先前已被证明在液泡遗传以及蛋白质从细胞质靶向液泡的过程中发挥作用。Vac8p的肉豆蔻酰化和棕榈酰化对于其有效定位到液泡膜都是必需的(Y.-X. Wang、N. L. Catlett和L. S. Weisman,《细胞生物学杂志》140:1063 - 1074,1998)。我们报告称,脂肪酸合成的限速酶乙酰辅酶A羧化酶(ACC1)存在条件性缺陷的突变体,其液泡呈现异常的多叶形态,类似于在vac8突变体细胞中观察到的情况。生化分析表明,acc1突变体细胞的这种液泡表型伴随着Vac8p酰化作用的减弱,而补充脂肪酸可缓解这种情况。与acc1突变体细胞中Vac8p酰化作用存在缺陷的推测一致,将acc1突变体细胞转移到非允许条件下时,Vac8p在液泡膜上的定位受到损害。另一方面,在这些条件下,Vac8p在蛋白质靶向中的功能不受影响。这些观察结果将脂肪酸合成及可用性与细胞器膜的直接形态改变联系了起来。

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