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G-M-N 基序决定酵母镁通道 Mrs2p 的离子选择性。

The G-M-N motif determines ion selectivity in the yeast magnesium channel Mrs2p.

机构信息

Department of Microbiology, Immunobiology, Genetics, Max F. Perutz Laboratories, University of Vienna, Vienna, Austria.

出版信息

Metallomics. 2013 Jun;5(6):745-52. doi: 10.1039/c3mt20201a.

Abstract

The highly conserved G-M-N motif of the CorA-Mrs2-Alr1 family of Mg(2+) channels has been shown to be essential for Mg(2+) transport. We performed random mutagenesis of the G-M-N sequence of Saccharomyces cerevisiae Mrs2p in an unbiased genetic screen. A large number of mutants still capable of Mg(2+) influx, albeit below the wild-type level, were generated. Growth complementation assays, performed in media supplemented with Ca(2+) or Co(2+) or Mn(2+) or Zn(2+) at varying concentrations, lead to identification of mutants with reduced growth in the presence of Mn(2+) and Zn(2+). We hereby conclude that (1) at least two, but predominantly all three amino acids of the G-M-N motif must be replaced by certain combinations of other amino acids to remain functional, (2) replacement of any single amino acid within the G-M-N motif always impairs the function of Mrs2p, and (3) we show that the G-M-N motif determines ion selectivity, likely in concurrence with the negatively charged loop at the entrance of the channel thereby forming the Mrs2p selectivity filter.

摘要

高度保守的 CorA-Mrs2-Alr1 家族的 Mg(2+)通道的 G-M-N 基序对于 Mg(2+)运输至关重要。我们在非偏见性遗传筛选中对酿酒酵母 Mrs2p 的 G-M-N 序列进行了随机诱变。尽管低于野生型水平,但仍产生了大量仍能够摄取 Mg(2+)的突变体。在含有不同浓度 Ca(2+)、Co(2+)、Mn(2+)或 Zn(2+)的培养基中进行生长互补测定,导致鉴定出在 Mn(2+)和 Zn(2+)存在下生长能力降低的突变体。我们由此得出结论:(1)至少两个,但主要是 G-M-N 基序的所有三个氨基酸必须被其他氨基酸的特定组合取代才能保持功能,(2)G-M-N 基序内的任何单个氨基酸的替换都会损害 Mrs2p 的功能,(3)我们表明 G-M-N 基序决定了离子选择性,可能与通道入口处带负电荷的环共同作用,从而形成 Mrs2p 选择性过滤器。

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