Shafikhani Sasha H, Núñez Esperanza, Leighton Terrance
Department of Molecular and Cellular Biology, Division of Biochemistry and Molecular Biology, 401 Barker Hall, University of California, Berkeley, CA 94720, USA.
FEMS Microbiol Lett. 2004 Feb 9;231(1):99-110. doi: 10.1016/S0378-1097(03)00936-4.
Bacillus subtilis sporulation is a developmental process that culminates in the formation of a highly resistant and persistent endospore. Inhibiting DNA synthesis prior to the completion of the final round of DNA replication blocks sporulation at an early stage. Conditions that prevent compartmentalization of gene expression, i.e. inhibition of asymmetric septum formation or chromosome partitioning, also block sporulation at an early stage. Multiple mechanisms including a RecA-dependent, a RecA-independent, and the soj-spo0J operon have been implicated in signal transduction, connecting DNA replication and chromosome partitioning to the onset of sporulation in B. subtilis. We suggest that a single mechanism involving Hpr (ScoC) and Sda couple cell cycle signaling to sporulation initiation. We show that transcription of phosphorelay sensory chain genes is adversely affected by post-exponential perturbation of the cell cycle. DNA replication arrest by chemical treatments, such as hydroxyphenylazouracil, hydroxyurea, nalidixic acid, and through genetic means using dnaA1ts and dnaB19ts temperature-sensitive mutants caused substantial down-regulation of spo0F and kinA expression and elevated the expression of spo0A and spo0H (sigH). Despite the elevation in spo0A expression, Spo0A approximately P-dependent sinI expression was substantially down-regulated indicating that in vivo Spo0A approximately P levels may be diminished. Similar alterations in gene expression patterns were observed in an ftsA279ts mutant background, indicating that cytokinesis and sporulation may also be coupled by a similar mechanism. Loss of function mutation in hpr (scoC) restored sporulation in a dnaA1ts mutant, blocked the DNA replication arrest induction of spo0A expression and restored expression of spo0F, kinA and sinI. Moreover, hpr expression was up-regulated in response to DNA replication arrest. The increase in hpr expression required Sda. These results suggest a role for Hpr (ScoC) in mediating the coupling of cell cycle events to the onset of sporulation.
枯草芽孢杆菌的孢子形成是一个发育过程,最终形成高度抗性和持久的芽孢。在最后一轮DNA复制完成之前抑制DNA合成会在早期阶段阻断孢子形成。阻止基因表达区室化的条件,即抑制不对称隔膜形成或染色体分配,也会在早期阶段阻断孢子形成。包括RecA依赖性、RecA非依赖性以及soj-spo0J操纵子在内的多种机制参与了信号转导,将DNA复制和染色体分配与枯草芽孢杆菌孢子形成的起始联系起来。我们认为,涉及Hpr(ScoC)和Sda的单一机制将细胞周期信号与孢子形成起始联系起来。我们表明,磷酸化信号转导传感链基因的转录受到细胞周期指数后期扰动的不利影响。通过化学处理(如羟基苯偶氮尿嘧啶、羟基脲、萘啶酸)以及使用dnaA1ts和dnaB19ts温度敏感突变体通过遗传手段导致的DNA复制停滞,会导致spo0F和kinA表达大幅下调,并使spo0A和spo0H(sigH)表达升高。尽管spo0A表达升高,但Spo0AP依赖性的sinI表达大幅下调,表明体内Spo0AP水平可能降低。在ftsA279ts突变体背景中观察到了类似的基因表达模式改变,表明胞质分裂和孢子形成也可能通过类似机制相互关联。hpr(scoC)功能丧失突变恢复了dnaA1ts突变体中的孢子形成,阻断了DNA复制停滞诱导的spo0A表达,并恢复了spo0F、kinA和sinI的表达。此外,hpr表达在DNA复制停滞时上调。hpr表达的增加需要Sda。这些结果表明Hpr(ScoC)在介导细胞周期事件与孢子形成起始的关联中发挥作用。