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一种植物胁迫诱导基因HVA22的功能。与其酵母同源物的合成增强筛选揭示了其在囊泡运输中的作用。

Function of a plant stress-induced gene, HVA22. Synthetic enhancement screen with its yeast homolog reveals its role in vesicular traffic.

作者信息

Brands Alex, Ho Tuan-hua David

机构信息

Department of Biology, Washington University, St. Louis, Missouri 63130, USA.

出版信息

Plant Physiol. 2002 Nov;130(3):1121-31. doi: 10.1104/pp.007716.

Abstract

Expression of the barley (Hordeum vulgare) HVA22 gene is induced by environmental stresses, such as dehydration, salinity, and extreme temperatures, and by a plant stress hormone, abscisic acid. Genes sharing high level of sequence similarities with HVA22 exist in diverse eukaryotic organisms, including animals, plants, and fungi, but not in any prokaryotic organisms. The yeast (Saccharomyces cerevisiae) HVA22 homolog, Yop1p, has been shown to interact with the GTPase-interacting protein, Yip1p. Deletion of YOP1 led to only a modest reduction of the stationary phase titer at 37C. A synthetic enhancement mutant screen was performed in the yop1 deletion background to identify genes interacting with YOP1. The open reading frame YOR165W (renamed SEY1 for synthetic enhancement of YOP1) was identified as a YOP1-dependent complementation gene. The yeast SEY1 is a homolog of the Arabidopsis RHD3 gene whose mutations cause the accumulation of transport vesicles near the tips of defective root hairs. The yeast double mutant of yop1 and sey1 is defective in vesicular traffic as evidenced by the accumulation of transport vesicles and the decrease in invertase secretion. Based on these observations, we suggest that Yop1p/HVA22 regulates vesicular traffic in stressed cells either to facilitate membrane turnover, or to decrease unnecessary secretion.

摘要

大麦(Hordeum vulgare)HVA22基因的表达受脱水、盐度和极端温度等环境胁迫以及植物胁迫激素脱落酸的诱导。与HVA22具有高度序列相似性的基因存在于包括动物、植物和真菌在内的多种真核生物中,但不存在于任何原核生物中。酵母(Saccharomyces cerevisiae)的HVA22同源物Yop1p已被证明与GTPase相互作用蛋白Yip1p相互作用。YOP1的缺失仅导致37℃时稳定期滴度适度降低。在yop1缺失背景下进行了合成增强突变体筛选,以鉴定与YOP1相互作用的基因。开放阅读框YOR165W(重命名为SEY1以实现YOP1的合成增强)被鉴定为YOP1依赖性互补基因。酵母SEY1是拟南芥RHD3基因的同源物,其突变导致运输小泡在有缺陷的根毛尖端附近积累。yop1和sey1的酵母双突变体在囊泡运输方面存在缺陷,这可通过运输小泡的积累和转化酶分泌的减少得到证明。基于这些观察结果,我们认为Yop1p/HVA22调节应激细胞中的囊泡运输,要么促进膜周转,要么减少不必要的分泌。

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