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ENV7 和 YCK3 编码液泡膜蛋白激酶,它们在遗传上相互作用,影响细胞活力和液泡形态。

ENV7 and YCK3, which encode vacuolar membrane protein kinases, genetically interact to impact cell fitness and vacuole morphology.

机构信息

California State University Long Beach (CSULB), Long Beach, CA, USA.

出版信息

FEMS Yeast Res. 2014 May;14(3):472-80. doi: 10.1111/1567-1364.12128. Epub 2013 Dec 18.

Abstract

Saccharomyces cerevisiae vacuoles serve as a model for membrane fusion and fission. Yck3, a vacuolar membrane kinase, has been implicated in regulation of vacuole fusion. Recently, we established Env7 as another vacuolar membrane protein kinase with similar but nonredundant function to Yck3. Here, we report that native Env7 localizes to the vacuole independent of Yck3, where as its phosphorylation is YCK3 dependent. We also show that env7Δyck3Δ double mutant exhibits severely compromised fitness, altered cell size and bud vacuoles, and F-class vacuolar morphology. Our results establish negative genetic interactions between ENV7 and YCK3 and suggest cooperative roles for the two conserved genes in regulation of membrane dynamics. Such genetic buffering supports a critical role for membrane flux in global cell fitness.

摘要

酿酒酵母液泡可作为膜融合和裂变的模型。液泡膜激酶 Yck3 已被牵涉到液泡融合的调节中。最近,我们确定了另一种液泡膜蛋白激酶 Env7,它与 Yck3 具有相似但非冗余的功能。在这里,我们报告说,天然的 Env7 可独立于 Yck3 定位在液泡中,而其磷酸化则依赖于 Yck3。我们还表明,env7Δyck3Δ 双突变体表现出严重的适应性降低、细胞大小和芽液泡改变以及 F 类液泡形态。我们的结果确立了 ENV7 和 YCK3 之间的负遗传相互作用,并表明这两个保守基因在调节膜动力学方面具有协同作用。这种遗传缓冲作用支持了膜通量在全局细胞适应性中的关键作用。

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