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一个靶向枯草芽孢杆菌芽孢形成转录因子Spo0A的天冬氨酰磷酸磷酸酶新家族。

A new family of aspartyl phosphate phosphatases targeting the sporulation transcription factor Spo0A of Bacillus subtilis.

作者信息

Perego M

机构信息

Division of Cellular Biology, Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Mol Microbiol. 2001 Oct;42(1):133-43. doi: 10.1046/j.1365-2958.2001.02611.x.

Abstract

The initiation of the sporulation developmental pathway in Bacillus subtilis is controlled by the phospho-relay, a multicomponent signal transduction system. Multiple positive and negative signals are integrated by the phosphorelay through the opposing activities of histidine protein kinases and aspartyl phosphate phosphatases. Three members of the Rap family of phosphatases (RapA, RapB and RapE) specifically dephosphorylate the Spo0F approximately P response regulator intermediate, while the Spo0A approximately P transcription factor is specifically dephosphorylated by the Spo0E phosphatase and, as shown here, the newly identified YnzD and YisI proteins. The products of the YnzD and YisI genes are highly homologous to Spo0E and define a new family of phosphatases with a distinct signature motif in their amino acid sequence. As negative regulators of the developmental pathway, YnzD and YisI inhibit spore formation if over-expressed, while a chromosomal deletion of their coding sequences results in increased sporulation frequency. Transcription of the ynzD, yisI and spo0E genes is differentially regulated and generally induced by growth conditions antithetical to sporulation. Negative signals interpreted by aspartyl phosphate phosphatases appear to be a common mechanism in Gram-positive spore-forming microorganisms.

摘要

枯草芽孢杆菌中孢子形成发育途径的起始由磷酸中继控制,这是一种多组分信号转导系统。磷酸中继通过组氨酸蛋白激酶和天冬氨酰磷酸磷酸酶的相反活性整合多种正信号和负信号。磷酸酶Rap家族的三个成员(RapA、RapB和RapE)特异性地使Spo0FP反应调节因子中间体去磷酸化,而Spo0AP转录因子则由Spo0E磷酸酶以及本文所示的新鉴定的YnzD和YisI蛋白特异性地去磷酸化。YnzD和YisI基因的产物与Spo0E高度同源,并在其氨基酸序列中定义了一个具有独特特征基序的新磷酸酶家族。作为发育途径的负调节因子,YnzD和YisI如果过度表达会抑制孢子形成,而其编码序列的染色体缺失会导致孢子形成频率增加。ynzD、yisI和spo0E基因的转录受到差异调节,通常由与孢子形成相反的生长条件诱导。天冬氨酰磷酸磷酸酶解读的负信号似乎是革兰氏阳性产孢微生物中的一种常见机制。

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