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裂殖酵母中M因子受体C末端细胞质区域的功能分析。

Functional analysis of the C-terminal cytoplasmic region of the M-factor receptor in fission yeast.

作者信息

Hirota K, Tanaka K, Watanabe Y, Yamamoto M

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, Hongo, Tokyo 113-0033, Japan.

出版信息

Genes Cells. 2001 Mar;6(3):201-14. doi: 10.1046/j.1365-2443.2001.00415.x.

Abstract

BACKGROUND

Yeast mating-pheromone receptors facilitate the study of G protein-coupled signal transduction. To date, molecular dissection of the budding yeast alpha-factor receptor has been done extensively, but little analysis has been performed with pheromone receptors of fission yeast, another genetically tractable yeast species.

RESULTS

We analysed the fission yeast M-factor receptor Map3p. Truncation of the C-terminal 54 amino acids made Map3p dominant-negative over the wild-type. This form, called Map3-dn9p, was competent in the induction of pheromone-dependent gene expression, although it could not direct proper conjugation. Map3-dn9p failed both to provoke the orientated projection of conjugation tubes and to induce adaptation to the pheromone signal associated with endocytosis of the receptor. Deletion and substitution analyses suggested that the integrity of the C-terminal region, rather than a specific subgroup of amino acid residues therein, was vital for the respective Map3p activities. Ubiquitination of the C-terminus was not absolutely essential for Map3p function.

CONCLUSIONS

The C-terminal region of Map3p is dispensable for the pheromone signalling per se, but is pivotal for adaptation and pheromone-induced conjugation tube formation, as is true with the budding yeast alpha-factor receptor. However, the mechanisms which induce adaptation appear to differ between fission and budding yeast concerning the necessity of ubiquitination.

摘要

背景

酵母交配信息素受体有助于研究G蛋白偶联信号转导。迄今为止,对芽殖酵母α-因子受体已进行了广泛的分子剖析,但对另一种遗传上易于处理的酵母——裂殖酵母的信息素受体却很少进行分析。

结果

我们分析了裂殖酵母M-因子受体Map3p。截短C端的54个氨基酸使Map3p对野生型呈显性负性。这种形式称为Map3-dn9p,尽管它不能指导正常的接合,但能够诱导信息素依赖性基因表达。Map3-dn9p既不能引发接合管的定向投射,也不能诱导与受体内吞作用相关的对信息素信号的适应。缺失和取代分析表明,C端区域的完整性,而非其中特定的氨基酸残基亚组,对Map3p的各自活性至关重要。C端的泛素化对Map3p功能并非绝对必要。

结论

Map3p的C端区域对于信息素信号传导本身是可有可无的,但对于适应和信息素诱导的接合管形成至关重要,芽殖酵母α-因子受体也是如此。然而,关于泛素化的必要性,裂殖酵母和芽殖酵母之间诱导适应的机制似乎有所不同。

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