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首页> 外文期刊>MBio >The ClpX and ClpP2 Orthologs of Chlamydia trachomatis Perform Discrete and Essential Functions in Organism Growth and Development
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The ClpX and ClpP2 Orthologs of Chlamydia trachomatis Perform Discrete and Essential Functions in Organism Growth and Development

机译:<命名含量含量型=“属型”> Chlamydia Trachomatis 的CLPX和CLPP2 Orthologs在有机体增长和发展中执行离散和基本功能

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Chlamydia trachomatis is an obligate intracellular bacterium that undergoes a complex developmental cycle in which the bacterium differentiates between two functionally and morphologically distinct forms, the elementary body (EB) and reticulate body (RB), each of which expresses its own specialized repertoire of proteins. Both primary (EB to RB) and secondary (RB to EB) differentiations require protein turnover, and we hypothesize that proteases are critical for mediating differentiation. The Clp protease system is well conserved in bacteria and important for protein turnover. Minimally, the system relies on a serine protease subunit, ClpP, and an AAA+ ATPase, such as ClpX, that recognizes and unfolds substrates for ClpP degradation. In Chlamydia , ClpX is encoded within an operon 3′ to clpP2 . We present evidence that the chlamydial ClpX and ClpP2 orthologs are essential to organism viability and development. We demonstrate here that chlamydial ClpX is a functional ATPase and forms the expected homohexamer in vitro . Overexpression of a ClpX mutant lacking ATPase activity had a limited impact on DNA replication or secondary differentiation but, nonetheless, reduced EB viability with observable defects in EB morphology noted. Conversely, overexpression of a catalytically inactive ClpP2 mutant significantly impacted developmental cycle progression by reducing the overall number of organisms. Blocking clpP2X transcription using CRISPR interference led to a decrease in bacterial growth, and this effect was complemented in trans by a plasmid copy of clpP2 . Taken together, our data indicate that ClpX and the associated ClpP2 serve distinct functions in chlamydial developmental cycle progression and differentiation.
机译:Chlamydia Thachomatis是一种迫使细胞内细菌,其经历复杂的发育循环,其中细菌在两种功能和形态学上不同的形式之间区分,所述基本体(EB)和网状体(RB),每种功能和网状体(RB)都表达了自己的专门蛋白质的蛋白质。原发性(EB至RB)和次级(RB至EB)的差异需要蛋白质周转,并且我们假设蛋白酶对介导分化至关重要。 CLP蛋白酶系统在细菌中保存良好,对蛋白质的成交是重要的。最微小地,该系统依赖于丝氨酸蛋白酶亚基,CLPP和AAA + ATP酶,例如CLPX,其识别和展开用于CLPP劣化的底物。在Chlamydia中,CLPX在Operon 3'中编码到CLPP2。我们提出了证据表明衣原体CLPX和CLPP2矫形表现对于有机体活力和发展至关重要。我们在此证明衣原体CLPX是官能的ATP酶,并在体外形成预期的同种氧脂。缺乏ATPase活性的CLPX突变体的过度表达对DNA复制或二次分化的影响有限,但是,尤其在EB形态学中具有可观察缺陷的EB活力降低。相反,催化活性CLPP2突变体的过度表达通过降低生物的总数来显着影响发育循环进展。通过CRISPR干扰阻断CLPP2X转录导致细菌生长的降低,并且通过CLPP2的质粒拷贝替代这种效果。连同,我们的数据表明CLPX和相关的CLPP2在衣原体发育周期进展和分化中提供不同的功能。

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