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CdnL, a member of the large CarD-like family of bacterial proteins, is vital for Myxococcus xanthus and differs functionally from the global transcriptional regulator CarD

机译:CdnL是大型CarD样细菌蛋白家族的成员,对黄色粘球菌至关重要,并且在功能上不同于全球转录调节因子CarD

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摘要

CarD, a global transcriptional regulator in Myxococcus xanthus, interacts with CarG via CarDNter, its N-terminal domain, and with DNA via a eukaryotic HMGA-type C-terminal domain. Genomic analysis reveals a large number of standalone proteins resembling CarDNter. These constitute, together with the RNA polymerase (RNAP) interacting domain, RID, of transcription–repair coupling factors, the CarD_TRCF protein family. We show that one such CarDNter-like protein, M. xanthus CdnL, cannot functionally substitute CarDNter (or vice versa) nor interact with CarG. Unlike CarD, CdnL is vital for growth, and lethality due to its absence is not rescued by homologs from various other bacteria. In mycobacteria, with no endogenous DksA, the function of the CdnL homolog mirrors that of Escherichia coli DksA. Our finding that CdnL, like DksA, is indispensable in M. xanthus implies that they are not functionally redundant. Cells are normal on CdnL overexpression, but divide aberrantly on CdnL depletion. CdnL localizes to the nucleoid, suggesting piggyback recruitment by factors such as RNAP, which we show interacts with CdnL, CarDNter and RID. Our study highlights a complex network of interactions involving these factors and RNAP, and points to a vital role for M. xanthus CdnL in an essential DNA transaction that affects cell division.
机译:CarD是黄色粘球菌中的一种全局转录调节因子,它通过CarDNter的N末端结构域与CarG相互作用,并通过真核HMGA型C末端结构域与DNA相互作用。基因组分析揭示了大量类似于CarDNter的独立蛋白质。它们与转录-修复偶联因子CarD_TRCF蛋白家族的RNA聚合酶(RNAP)相互作用域RID一起构成。我们表明,一种这样的CarDNter样蛋白,M。xanthus CdnL,不能在功能上替代CarDNter(反之亦然),也不能与CarG相互作用。与CarD不同,CdnL对于生长至关重要,并且由于缺乏CdnL而导致的致死性无法通过其他各种细菌的同源物来挽救。在没有内源性DksA的分枝杆菌中,CdnL同源物的功能与大肠杆菌DksA的功能相似。我们的发现,与DksA一样,CdnL在X.Manthus中也必不可少,这表明它们在功能上不是多余的。细胞在CdnL过表达时正常,但在CdnL耗尽时异常分裂。 CdnL定位于核苷,提示通过RNAP等因素进行背recruitment募集,我们证明了它与CdnL,CarDNter和RID相互作用。我们的研究突出了涉及这些因素和RNAP的复杂相互作用网络,并指出了黄花病菌CdnL在影响细胞分裂的重要DNA交易中的重要作用。

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