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枯草芽孢杆菌LrpC的DNA结合特性及lrpC基因表达调控的表征

Characterization of LrpC DNA-binding properties and regulation of Bacillus subtilis lrpC gene expression.

作者信息

Beloin C, Exley R, Mahé A L, Zouine M, Cubasch S, Le Hégarat F

机构信息

Institut de Génétique et Microbiologie, Université Paris XI, 91405 Orsay Cedex, France.

出版信息

J Bacteriol. 2000 Aug;182(16):4414-24. doi: 10.1128/JB.182.16.4414-4424.2000.

Abstract

The lrpC gene was identified during the Bacillus subtilis genome sequencing project. Previous experiments suggested that LrpC has a role in sporulation and in the regulation of amino acid metabolism and that it shares features with Escherichia coli Lrp, a transcription regulator (C. Beloin, S. Ayora, R. Exley, L. Hirschbein, N. Ogasawara, Y. Kasahara, J. C. Alonso, and F. Le Hégarat, Mol. Gen. Genet. 256:63-71, 1997). To characterize the interactions of LrpC with DNA, the protein was overproduced and purified. We show that LrpC binds to multiple sites in the upstream region of its own gene with a stronger affinity for a region encompassing P1, one of the putative promoters identified (P1 and P2). By analyzing lrpC-lacZ transcriptional fusions, we demonstrated that P1 is the major in vivo promoter and that, unlike many members of the lrp/asnC family, lrpC is not negatively autoregulated but rather slightly positively autoregulated. Production of LrpC in vivo is low in both rich and minimal media (50 to 300 LrpC molecules per cell). In rich medium, the cellular LrpC content is six- to sevenfold lower during the exponentional phase than during the stationary growth phase. Possible determinants and the biological significance of the regulation of lrpC expression are discussed.

摘要

lrpC基因是在枯草芽孢杆菌基因组测序项目中被鉴定出来的。先前的实验表明,LrpC在芽孢形成以及氨基酸代谢调控中发挥作用,并且它与转录调节因子大肠杆菌Lrp具有一些共同特征(C. 贝洛因、S. 阿约拉、R. 埃克斯利、L. 赫希贝恩、N. 小笠原、Y. 笠原、J. C. 阿隆索和F. 勒埃加拉特,《分子与普通遗传学》256:63 - 71, 1997)。为了表征LrpC与DNA的相互作用,该蛋白被过量表达并纯化。我们发现LrpC与其自身基因上游区域的多个位点结合,对包含P1(已鉴定的假定启动子之一,还有P2)的区域具有更强的亲和力。通过分析lrpC - lacZ转录融合体,我们证明P1是体内主要的启动子,并且与lrp/asnC家族的许多成员不同,lrpC不是负向自调控,而是略有正向自调控。在丰富培养基和基本培养基中,LrpC在体内的产量都很低(每个细胞有50到300个LrpC分子)。本文讨论了lrpC表达调控的可能决定因素及其生物学意义。

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