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首页> 外文期刊>MBio >Genes Required for Aerial Growth, Cell Division, and Chromosome Segregation Are Targets of WhiA before Sporulation in Streptomyces venezuelae
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Genes Required for Aerial Growth, Cell Division, and Chromosome Segregation Are Targets of WhiA before Sporulation in Streptomyces venezuelae

机译:空中生长,细胞分裂和染色体分离所需的基因是委内链霉菌孢子形成之前WhiA的靶标

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WhiA is a highly unusual transcriptional regulator related to a family of eukaryotic homing endonucleases. WhiA is required for sporulation in the filamentous bacterium Streptomyces, but WhiA homologues of unknown function are also found throughout the Gram-positive bacteria. To better understand the role of WhiA in Streptomyces development and its function as a transcription factor, we identified the WhiA regulon through a combination of chromatin immunoprecipitation-sequencing (ChIP-seq) and microarray transcriptional profiling, exploiting a new model organism for the genus, Streptomyces venezuelae, which sporulates in liquid culture. The regulon encompasses ~240 transcription units, and WhiA appears to function almost equally as an activator and as a repressor. Bioinformatic analysis of the upstream regions of the complete regulon, combined with DNase I footprinting, identified a short but highly conserved asymmetric sequence, GACAC, associated with the majority of WhiA targets. Construction of a null mutant showed that whiA is required for the initiation of sporulation septation and chromosome segregation in S.?venezuelae, and several genes encoding key proteins of the Streptomyces cell division machinery, such as ftsZ, ftsW, and ftsK, were found to be directly activated by WhiA during development. Several other genes encoding proteins with important roles in development were also identified as WhiA targets, including the sporulation-specific sigma factor σWhiG and the diguanylate cyclase CdgB. Cell division is tightly coordinated with the orderly arrest of apical growth in the sporogenic cell, and filP, encoding a key component of the polarisome that directs apical growth, is a direct target for WhiA-mediated repression during sporulation. >IMPORTANCE Since the initial identification of the genetic loci required for Streptomyces development, all of the bld and whi developmental master regulators have been cloned and characterized, and significant progress has been made toward understanding the cell biological processes that drive morphogenesis. A major challenge now is to connect the cell biological processes and the developmental master regulators by dissecting the regulatory networks that link the two. Studies of these regulatory networks have been greatly facilitated by the recent introduction of Streptomyces venezuelae as a new model system for the genus, a species that sporulates in liquid culture. Taking advantage of S.?venezuelae, we have characterized the regulon of genes directly under the control of one of these master regulators, WhiA. Our results implicate WhiA in the direct regulation of key steps in sporulation, including the cessation of aerial growth, the initiation of cell division, and chromosome segregation.
机译:WhiA是与真核归巢内切核酸酶家族有关的高度不寻常的转录调节因子。 WhiA是丝状细菌 Streptomyces 中孢子形成所必需的,但是在整个革兰氏阳性细菌中也发现了功能未知的WhiA同源物。为了更好地了解WhiA在链霉菌发育中的作用及其作为转录因子的功能,我们通过结合染色质免疫沉淀测序(ChIP-seq)和微阵列转录谱鉴定了WhiA调节子,委内瑞拉链霉菌的新模式生物,在液体培养中形成孢子。该调节子包含约240个转录单位,WhiA似乎几乎起着激活剂和阻遏剂的作用。对完整调节子上游区域的生物信息学分析,结合DNase I足迹,发现了一个短但高度保守的不对称序列GACAC,与大多数WhiA靶标相关。一个无效突变体的构建表明 whiA 是委内瑞拉酵母(em.S.委内瑞拉)的孢子分离和染色体分离的启动所必需的,还有几个编码关键蛋白的基因发现链霉菌属的细胞分裂机制,例如 ftsZ ftsW ftsK ,在开发过程中直接被WhiA激活。 WhiA靶标还鉴定了其他几个编码在发育中具有重要作用的蛋白质的基因,包括孢子形成特异性sigma因子σ WhiG 和双鸟苷酸环化酶CdgB。细胞分裂与孢子形成细胞中根尖生长的有序停止紧密协调, filP (编码指导极尖生长的极化体的关键成分)是孢子形成期间WhiA介导的阻遏的直接靶点。 >重要:自从最初确定链霉菌发育所需的遗传基因座以来,所有 bld whi 发育大师调节剂已经被克隆和表征,并且在理解驱动形态发生的细胞生物学过程方面已经取得了重大进展。现在的主要挑战是通过解剖连接两者的调控网络来连接细胞生物学过程和发育中的主要调控因子。最近引入的委内链霉菌作为该属的新模型系统,极大地促进了对这些调控网络的研究,该属在液体培养中形成孢子。利用 S.venezuelae ,我们已经表征了直接在这些主调控因子之一WhiA的控制下的基因调控。我们的研究结果表明WhiA直接参与了孢子形成关键步骤的调控,包括停止气生生长,启动细胞分裂和染色体分离。

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