Kozak Natalia A, Mattoo Seema, Foreman-Wykert Amy K, Whitelegge Julian P, Miller Jeff F
Department of Microbiology, Immunology and Molecular Genetics, David Geffen School of Medicine at UCLA, 10833 Le Conte Ave., Los Angeles, CA 90095-1747, USA.
J Bacteriol. 2005 Aug;187(16):5665-76. doi: 10.1128/JB.187.16.5665-5676.2005.
We have recently described a multicomponent cascade that regulates type III secretion in Bordetella. This cascade includes a group of proteins, BtrU, BtrW, and BtrV, that contain an array of domains that define partner-switching complexes previously characterized in gram-positive bacteria. BtrU contains a PP2C-like serine phosphatase domain, BtrW contains a serine kinase/anti-sigma factor motif, and BtrV includes an anti-sigma factor antagonist domain. On the basis of genetic studies and sequence similarity with the RsbU-RsbW-RsbV and SpoIIE-SpoIIAB-SpoIIAA partner switchers of Bacillus subtilis, a series of interactions between Bordetella orthologs have been proposed. Bacterial two-hybrid analysis, tagged protein pull-downs, and in vitro phosphorylation assays were used to characterize interactions between BtrW and BtrV. In addition, BtrV mutants predicted to mimic a constitutively phosphorylated form of BtrV or to be nonphosphorylatable and BtrW mutants defective in serine kinase activity or the ability to bind BtrV were constructed and analyzed. Our results demonstrate that (i) BtrW and BtrV interact with each other, (ii) BtrW phosphorylates BtrV at serine S55, (iii) the conserved serine residue S55 of BtrV plays a key role in BtrV-BtrW interactions, and (iv) the ability of BtrW to phosphorylate BtrV and disrupt BtrV-BtrW binding is essential for the type III secretion process.
我们最近描述了一种调节博德特氏菌III型分泌的多组分级联反应。该级联反应包括一组蛋白质,即BtrU、BtrW和BtrV,它们包含一系列结构域,这些结构域定义了先前在革兰氏阳性菌中表征的伙伴切换复合物。BtrU包含一个PP2C样丝氨酸磷酸酶结构域,BtrW包含一个丝氨酸激酶/抗σ因子基序,BtrV包含一个抗σ因子拮抗剂结构域。基于遗传研究以及与枯草芽孢杆菌的RsbU-RsbW-RsbV和SpoIIE-SpoIIAB-SpoIIAA伙伴切换蛋白的序列相似性,有人提出了博德特氏菌直系同源物之间的一系列相互作用。利用细菌双杂交分析、标记蛋白下拉实验和体外磷酸化实验来表征BtrW和BtrV之间的相互作用。此外,构建并分析了预测模拟组成型磷酸化形式的BtrV或不可磷酸化的BtrV突变体,以及丝氨酸激酶活性或结合BtrV能力有缺陷的BtrW突变体。我们的结果表明:(i)BtrW和BtrV相互作用;(ii)BtrW在丝氨酸S55处使BtrV磷酸化;(iii)BtrV保守的丝氨酸残基S55在BtrV-BtrW相互作用中起关键作用;(iv)BtrW使BtrV磷酸化并破坏BtrV-BtrW结合的能力对于III型分泌过程至关重要。