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芽孢萌发蛋白 GerD 的结构与功能分析。

Structural and functional analysis of the GerD spore germination protein of Bacillus species.

机构信息

Department of Molecular Biology and Biophysics, University of Connecticut Health Center, Farmington, CT 06030-3305, USA.

Public Health Research Institute Center, Department of Microbiology and Molecular Genetics, New Jersey Medical School, Rutgers University, Newark, NJ 07103, USA.

出版信息

J Mol Biol. 2014 May 1;426(9):1995-2008. doi: 10.1016/j.jmb.2014.02.004. Epub 2014 Feb 12.

Abstract

Spore germination in Bacillus species represents an excellent model system with which to study the molecular mechanisms underlying the nutritional control of growth and development. Binding of specific chemical nutrients to their cognate receptors located in the spore inner membrane triggers the germination process that leads to a resumption of metabolism in spore outgrowth. Recent studies suggest that the inner membrane GerD lipoprotein plays a critical role in the receptor-mediated activation of downstream germination events. The 121-residue core polypeptide of GerD (GerD⁶⁰⁻¹⁸⁰) from Geobacillus stearothermophilus forms a stable α-helical trimer in aqueous solution. The 2.3-Å-resolution crystal structure of the trimer reveals a neatly twisted superhelical rope, with unusual supercoiling induced by parallel triple-helix interactions. The overall geometry comprises three interleaved hydrophobic screws of interacting helices linked by short turns that have not been seen before. Using complementation analysis in a series of Bacillus subtilis gerD mutants, we demonstrated that alterations in the GerD trimer structure have profound effects on nutrient germination. This important structure-function relationship of trimeric GerD is supported by our identification of a dominant negative gerD mutation in B. subtilis. These results and those of others lead us to propose that GerD mediates clustering of germination proteins in the inner membrane of dormant spores and thus promotes the rapid and cooperative germination response to nutrients.

摘要

芽孢杆菌属中的孢子萌发是研究营养控制生长和发育的分子机制的极好模型系统。特定化学营养素与位于孢子内膜中的同源受体结合,触发萌发过程,导致孢子生长中的代谢恢复。最近的研究表明,内膜 GerD 脂蛋白在受体介导的下游萌发事件的激活中起着关键作用。来自嗜热脂肪芽孢杆菌的 GerD(GerD⁶⁰⁻¹⁸⁰)的 121 个残基核心多肽在水溶液中形成稳定的α-螺旋三聚体。三聚体的 2.3Å 分辨率晶体结构揭示了一个整洁扭曲的超螺旋绳索,由平行三螺旋相互作用引起的异常超螺旋。整体几何形状包括三个相互作用的螺旋交织的疏水性螺钉,由以前未见的短转连接。通过一系列枯草芽孢杆菌 gerD 突变体中的互补分析,我们证明了 GerD 三聚体结构的改变对营养物质萌发有深远的影响。这种三聚体 GerD 的重要结构-功能关系得到了我们在枯草芽孢杆菌中鉴定出的显性负 gerD 突变的支持。这些结果和其他结果使我们提出 GerD 介导休眠孢子内膜中萌发蛋白的聚类,从而促进对营养物质的快速和协同萌发反应。

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