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神经元钙传感器-1(Ncs1p)的裂殖酵母同源物调节孢子形成并赋予钙耐受性。

Fission yeast homolog of neuronal calcium sensor-1 (Ncs1p) regulates sporulation and confers calcium tolerance.

作者信息

Hamasaki-Katagiri Nobuko, Molchanova Tatiana, Takeda Kazuyo, Ames James B

机构信息

Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, 9600 Gudelsky Drive, Rockville, MD 20850, USA.

出版信息

J Biol Chem. 2004 Mar 26;279(13):12744-54. doi: 10.1074/jbc.M311895200. Epub 2004 Jan 13.

Abstract

The neuronal calcium sensor (NCS) proteins (e.g. recoverin, neurocalcins, and frequenin) are expressed at highest levels in excitable cells, and some of them regulate desensitization of G protein-coupled receptors. Here we present NMR analysis and genetic functional studies of an NCS homolog in fission yeast (Ncs1p). Ncs1p binds three Ca2+ ions at saturation with an apparent affinity of 2 microm and Hill coefficient of 1.9. Analysis of NMR and fluorescence spectra of Ncs1p revealed significant Ca2+-induced protein conformational changes indicative of a Ca2+-myristoyl switch. The amino-terminal myristoyl group is sequestered inside a hydrophobic cavity of the Ca2+-free protein and becomes solvent-exposed in the Ca2+-bound protein. Subcellular fractionation experiments showed that myristoylation and Ca2+ binding by Ncs1p are essential for its translocation from cytoplasm to membranes. The ncs1 deletion mutant (ncs1Delta) showed two distinct phenotypes: nutrition-insensitive sexual development and a growth defect at high levels of extracellular Ca2+ (0.1 m CaCl(2)). Analysis of Ncs1p mutants lacking myristoylation (Ncs1p(G2A)) or deficient in Ca2+ binding (Ncs1p(E84Q/E120Q/E168Q)) revealed that Ca2+ binding was essential for both phenotypes, while myristoylation was less critical. Exogenous cAMP, a key regulator for sexual development, suppressed conjugation and sporulation of ncs1Delta, suggesting involvement of Ncs1p in the adenylate cyclase pathway turned on by the glucose-sensing G protein-coupled receptor Git3p. Starvation-independent sexual development of ncs1Delta was also complemented by retinal recoverin, which controls Ca2+-regulated desensitization of rhodopsin. In contrast, the Ca2+-intolerance of ncs1Delta was not affected by cAMP or recoverin, suggesting that the two ncs1Delta phenotypes are mechanistically independent. We propose that Schizosaccharomyces pombe Ncs1p negatively regulates sporulation perhaps by controlling Ca2+-dependent desensitization of Git3p.

摘要

神经元钙传感器(NCS)蛋白(如恢复蛋白、神经钙蛋白和频率蛋白)在可兴奋细胞中表达水平最高,其中一些蛋白调节G蛋白偶联受体的脱敏作用。在此,我们展示了裂殖酵母中一种NCS同源物(Ncs1p)的核磁共振分析和基因功能研究。Ncs1p在饱和状态下结合三个Ca2+离子,表观亲和力为2微摩尔,希尔系数为1.9。对Ncs1p的核磁共振和荧光光谱分析揭示了显著的Ca2+诱导的蛋白质构象变化,表明存在Ca2+ - 肉豆蔻酰开关。氨基末端的肉豆蔻酰基团在无Ca2+的蛋白质中被隔离在一个疏水腔内,在结合Ca2+的蛋白质中则暴露于溶剂中。亚细胞分级分离实验表明,Ncs1p的肉豆蔻酰化和Ca2+结合对于其从细胞质转运到膜至关重要。ncs1缺失突变体(ncs1Delta)表现出两种不同的表型:营养不敏感的有性发育和在高细胞外Ca2+(0.1 m CaCl(2))水平下的生长缺陷。对缺乏肉豆蔻酰化的Ncs1p突变体(Ncs1p(G2A))或Ca2+结合缺陷的突变体(Ncs1p(E84Q/E120Q/E168Q))的分析表明,Ca2+结合对于两种表型都至关重要,而肉豆蔻酰化的重要性较低。外源性cAMP是有性发育的关键调节因子,可抑制ncs1Delta的接合和孢子形成,这表明Ncs1p参与了由葡萄糖感应G蛋白偶联受体Git3p开启的腺苷酸环化酶途径。视网膜恢复蛋白也能补充ncs1Delta不依赖饥饿的有性发育,恢复蛋白可控制视紫红质的Ca2+调节脱敏作用。相比之下,ncs1Delta对Ca2+的不耐受性不受cAMP或恢复蛋白的影响,这表明ncs1Delta的两种表型在机制上是独立的。我们提出,粟酒裂殖酵母Ncs1p可能通过控制Git3p的Ca2+依赖性脱敏作用来负向调节孢子形成。

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