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Unexpected connections between type VI-B CRISPR-Cas systems bacterial natural competence ubiquitin signaling network and DNA modification through a distinct family of membrane proteins

机译:VI-B型CRISPR-Cas系统细菌天然能力泛素信号网络和通过独特的膜蛋白家族进行的DNA修饰之间的意外连接

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摘要

In addition to core Cas proteins, CRISPR-Cas loci often encode ancillary proteins that modulate the activity of the respective effectors in interference. Subtype VI-B1 CRISPR-Cas systems encode the Csx27 protein that down-regulates the activity of Cas13b when the type VI-B locus is expressed in . We show that Csx27 belongs to an expansive family of proteins that contain four predicted transmembrane helices and are typically encoded in predicted operons with components of the bacterial natural transformation machinery, multidomain proteins that consist of components of the ubiquitin signaling system and proteins containing the ligand-binding WYL domain and a helix-turn-helix domain. The Csx27 family proteins are predicted to form membrane channels for ssDNA that might comprise the core of a putative novel, Ub-regulated system for DNA uptake and, possibly, degradation. In addition to these associations, a distinct subfamily of the Csx27 family appears to be a part of a novel, membrane-associated system for DNA modification. In , subtype VI-B1 systems might degrade nascent transcripts of foreign DNA in conjunction with its uptake by the bacterial cell. These predictions suggest several experimental directions for the study of type VI CRISPR-Cas systems and distinct mechanisms of foreign DNA uptake and degradation in bacteria.
机译:除了核心Cas蛋白外,CRISPR-Cas基因座还经常编码辅助蛋白,这些蛋白调节各自效应物在干扰中的活性。 VI-B1亚型CRISPR-Cas系统编码Csx27蛋白,该蛋白在VI-B型基因座表达时下调Cas13b的活性。我们显示Csx27属于一个广泛的蛋白质家族,包含四个预测的跨膜螺旋,通常在预测的操纵子中编码,具有细菌天然转化机制的组成部分,由泛素信号传导系统的组成部分组成的多结构域蛋白以及包含配体的蛋白质-结合WYL结构域和螺旋-转-螺旋结构域。预计Csx27家族蛋白将形成ssDNA的膜通道,该膜通道可能构成推定的新型,受Ub调控的DNA摄取和可能降解系统的核心。除了这些关联,Csx27家族的一个独特的亚家族似乎是用于DNA修饰的新型膜相关系统的一部分。在这种情况下,VI-B1亚型系统可能会将外源DNA的新生转录本连同细菌细胞对其的吸收一起降解。这些预测为研究VI型CRISPR-Cas系统以及细菌中外源DNA摄取和降解的独特机制提供了几个实验方向。

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