Kang Choong-Min, Nyayapathy Seeta, Lee Jung-Yeon, Suh Joo-Won, Husson Robert N
Department of Biological Science, Wayne State University, 5047 Gullen Mall, Detroit, MI 48202, USA.
Department of Biological Science, Myongji University, San 38-2, Namdong, Yongin, Republic of Korea.
Microbiology (Reading). 2008 Mar;154(Pt 3):725-735. doi: 10.1099/mic.0.2007/014076-0.
The Mycobacterium tuberculosis genome contains 11 serine/threonine kinase genes, and the products of two of these, PknA and PknB, are key components of a signal transduction pathway that regulates cell division and/or morphology. Previously, we have shown that one substrate of these kinases is Wag31, a homologue of the cell division protein DivIVA that is present, but not known to be phosphorylated, in other Gram-positive bacteria. Here, we investigate the localization and function of Wag31 and its phosphorylation. We demonstrate that Wag31 is localized to the cell poles. We further show that wag31 is an essential gene and that depletion of its product causes a dramatic morphological change in which one end of the cell becomes round rather than rod-shaped. This abnormal morphology appears to be caused by a defect in polar peptidoglycan synthesis. Finally, expression of M. tuberculosis wag31 in the wag31 conditional mutant of Mycobacterium smegmatis altered the growth rate in a manner that depended on the phospho-acceptor residue encoded by the allele being expressed. Taken together, these results indicate that Wag31 regulates cell shape and cell wall synthesis in M. tuberculosis through a molecular mechanism by which the activity of Wag31 can be modulated in response to environmental signals.
结核分枝杆菌基因组包含11个丝氨酸/苏氨酸激酶基因,其中两个基因PknA和PknB的产物是调节细胞分裂和/或形态的信号转导途径的关键组成部分。此前,我们已经表明这些激酶的一个底物是Wag31,它是细胞分裂蛋白DivIVA的同源物,在其他革兰氏阳性细菌中存在,但未知是否被磷酸化。在这里,我们研究了Wag31的定位、功能及其磷酸化情况。我们证明Wag31定位于细胞两极。我们进一步表明wag31是一个必需基因,其产物的缺失会导致显著的形态变化,其中细胞的一端变成圆形而非杆状。这种异常形态似乎是由极性肽聚糖合成缺陷引起的。最后,在耻垢分枝杆菌的wag31条件突变体中表达结核分枝杆菌wag31,其生长速率的改变方式取决于所表达等位基因编码的磷酸受体残基。综上所述,这些结果表明Wag31通过一种分子机制调节结核分枝杆菌的细胞形状和细胞壁合成,通过这种机制,Wag31的活性可以响应环境信号而被调节。