Jakimowicz Dagmara, Mouz Sebastien, Zakrzewska-Czerwinska Jolanta, Chater Keith F
Ludwik Hirszfeld Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, ul. Weigla 12, 53-114 Wrocław, Poland.
J Bacteriol. 2006 Mar;188(5):1710-20. doi: 10.1128/JB.188.5.1710-1720.2006.
The Streptomyces coelicolor partitioning protein ParB binds to numerous parS sites in the oriC-proximal part of the linear chromosome. ParB binding results in the formation of large complexes, which behave differentially during the complex life cycle (D. Jakimowicz, B. Gust, J. Zakrzewska-Czerwinska, and K. F. Chater, J. Bacteriol. 187:3572-3580, 2005). Here we have analyzed the transcriptional regulation that underpins this developmentally specific behavior. Analysis of promoter mutations showed that the irregularly spaced complexes present in vegetative hyphae are dependent on the constitutive parABp(1) promoter, while sporulation-specific induction of the promoter parABp(2) is required for the assembly of arrays of ParB complexes in aerial hyphae and thus is necessary for efficient chromosome segregation. Expression from parABp(2) depended absolutely on two sporulation regulatory genes, whiA and whiB, and partially on two others, whiH and whiI, all four of which are needed for sporulation septation. Because of this pattern of dependence, we investigated the transcription of these four whi genes in whiA and whiB mutants, revealing significant regulatory interplay between whiA and whiB. A strain in which sporulation septation (but not vegetative septation) was blocked by mutation of a sporulation-specific promoter of ftsZ showed close to wild-type induction of parABp(2) and formed fairly regular ParB-enhanced green fluorescent protein foci in aerial hyphae, ruling out strong morphological coupling or checkpoint regulation between septation and DNA partitioning during sporulation. A model for developmental regulation of parABp(2) expression is presented.
天蓝色链霉菌分区蛋白ParB与线性染色体oriC近端部分的众多parS位点结合。ParB结合导致形成大复合物,这些复合物在复合物生命周期中表现出不同的行为(D. Jakimowicz、B. Gust、J. Zakrzewska-Czerwinska和K. F. Chater,《细菌学杂志》187:3572 - 3580,2005年)。在此,我们分析了支撑这种发育特异性行为的转录调控。启动子突变分析表明,营养菌丝中存在的间隔不规则的复合物依赖于组成型parABp(1)启动子,而气生菌丝中ParB复合物阵列的组装需要启动子parABp(2)的孢子形成特异性诱导,因此对于有效的染色体分离是必需的。parABp(2)的表达完全依赖于两个孢子形成调控基因whiA和whiB,部分依赖于另外两个基因whiH和whiI,这四个基因都是孢子形成隔膜所必需的。由于这种依赖模式,我们研究了whiA和whiB突变体中这四个whi基因的转录,揭示了whiA和whiB之间显著的调控相互作用。通过ftsZ的孢子形成特异性启动子突变来阻断孢子形成隔膜(而非营养隔膜)的菌株,显示出接近野生型的parABp(2)诱导,并在气生菌丝中形成相当规则的ParB - 增强型绿色荧光蛋白焦点,排除了孢子形成过程中隔膜与DNA分区之间强烈的形态偶联或检查点调控。本文提出了parABp(2)表达的发育调控模型。