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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Identification, structural, and biochemical characterization of a group of large Csn2 proteins involved in CRISPR-mediated bacterial immunity
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Identification, structural, and biochemical characterization of a group of large Csn2 proteins involved in CRISPR-mediated bacterial immunity

机译:参与CRISPR介导的细菌免疫的一组大型Csn2蛋白的鉴定,结构和生化表征

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摘要

Many prokaryotic organisms acquire immunity against foreign genetic material by incorporating a short segment of foreign DNA called spacer into chromosomal loci, termed clustered regularly interspaced short palindromic repeats (CRISPRs). The encoded RNAs are processed into small fragments that guide the silencing of the invading genetic elements. The CRISPR-associated (Cas) proteins are the main executioners of these processes. Herein, we report the crystal structure of Stu0660 of Streptococcus thermophilus, a Cas protein involved in the acquisition of new spacers. By homotetramerization, Stu0660 forms a central channel which is decorated with basic amino acids and binds linear double-stranded DNA (dsDNA), but not circular dsDNA. Despite undetectably low sequence similarity, two N-terminal domains of Stu0660 are similar to the entire structure of an Enterococcus faecalis Csn2 protein, which also forms a homotetramer and binds dsDNA. Thus, this work identifies a previously unknown group of Stu0660-like Csn2 proteins (~350 residues), which are larger than the known canonical Csn2 proteins (~220 residues) by containing an extra C-terminal domain. The commonly present central channel in the two subgroups appears as a design to selectively interact with linear dsDNA.
机译:许多原核生物通过将一小段称为间隔子的外源DNA掺入染色体基因座中而获得了针对外源遗传物质的免疫力,这种基因座称为簇状规则间隔的短回文重复序列(CRISPRs)。编码的RNA被加工成小片段,指导入侵的遗传元件沉默。 CRISPR相关(Cas)蛋白是这些过程的主要执行者。在这里,我们报告嗜热链球菌的Stu0660的晶体结构,一种参与获得新间隔子的Cas蛋白。通过均四聚化,Stu0660形成一个中央通道,该通道用碱性氨基酸修饰并结合线性双链DNA(dsDNA),但不结合环状dsDNA。尽管存在不可测的低序列相似性,但Stu0660的两个N末端结构域与粪肠球菌Csn2蛋白的整个结构相似,后者也形成同型四聚体并结合dsDNA。因此,这项工作确定了一个以前未知的Stu0660样Csn2蛋白(约350个残基),它们比已知的规范Csn2蛋白(约220个残基)大,因为它含有一个额外的C末端结构域。两个亚组中共同存在的中央通道表现为与线性dsDNA选择性相互作用的设计。

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