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天蓝色链霉菌发育蛋白BldB过表达的关键残基和新效应:关键相互作用伴侣的证据

Critical residues and novel effects of overexpression of the Streptomyces coelicolor developmental protein BldB: evidence for a critical interacting partner.

作者信息

Eccleston Marcus, Willems Andrew, Beveridge Adam, Nodwell Justin R

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Health Sciences Centre, 1200 Main Street W., Hamilton, Ontario L8N 3Z5, Canada.

出版信息

J Bacteriol. 2006 Dec;188(23):8189-95. doi: 10.1128/JB.01119-06. Epub 2006 Sep 8.

Abstract

The bldB gene of Streptomyces coelicolor encodes the best-characterized member of a family of small proteins that have low isoelectric points but that lack any previously characterized sequence motifs. BldB is dimeric and is required for the efficient production of antibiotics and spore-forming cells, called aerial hyphae, by growing colonies. The mechanism of action of BldB and its relatives is unknown. Here, we have explored amino acids in BldB that either are highly conserved or have been implicated in function genetically. We show that five amino acids are important for its function at physiological expression levels. Mutations in three of these amino acids gave rise to proteins that were either monomeric or unstable in vivo, while two others are not. We find that overexpression of bldB in S. coelicolor blocks sporulation prior to sporulation-specific septation but permits the formation of aerial hyphae. Vegetative septation was apparently normal in both the bldB null mutant and the bldB overexpression strain. To our surprise, overexpression of the dimerization-competent but functionally defective alleles caused a dramatic acceleration of sporulation. Our results suggest that BldB makes at least one important contact with another subcellular constituent and that a loss or alteration of this interaction impairs the phenotypic properties of the organism.

摘要

天蓝色链霉菌的bldB基因编码一类小蛋白家族中特征最明确的成员,这类小蛋白具有低等电点,但缺乏任何先前已鉴定的序列基序。BldB是二聚体,对于生长中的菌落高效产生抗生素和形成称为气生菌丝的孢子形成细胞是必需的。BldB及其相关蛋白的作用机制尚不清楚。在这里,我们研究了BldB中高度保守或在遗传功能上有牵连的氨基酸。我们表明,五个氨基酸在其生理表达水平上对其功能很重要。其中三个氨基酸的突变产生了在体内要么是单体要么不稳定的蛋白质,而另外两个则不是。我们发现,在天蓝色链霉菌中过表达bldB会在孢子形成特异性隔膜形成之前阻止孢子形成,但允许气生菌丝的形成。在bldB基因缺失突变体和bldB过表达菌株中,营养隔膜显然都是正常的。令我们惊讶的是,具有二聚化能力但功能缺陷的等位基因的过表达导致孢子形成显著加速。我们的结果表明,BldB与另一种亚细胞成分至少有一个重要的接触,并且这种相互作用的丧失或改变会损害生物体的表型特性。

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