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Comprehensive search for accessory proteins encoded with archaeal and bacterial type III CRISPR-cas gene cassettes reveals 39 new cas gene families

机译:综合搜索配有古物和细菌III型CrisPr-Cas基因盒编码的辅助蛋白质显示39个新的CAS基因家族

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A study was undertaken to identify conserved proteins that are encoded adjacent to cas gene cassettes of Type III CRISPR-Cas (Clustered Regularly Interspaced Short Palindromic Repeats – CRISPR associated) interference modules. Type III modules have been shown to target and degrade dsDNA, ssDNA and ssRNA and are frequently intertwined with cofunctional accessory genes, including genes encoding CRISPR-associated Rossman Fold (CARF) domains. Using a comparative genomics approach, and defining a Type III association score accounting for coevolution and specificity of flanking genes, we identified and classified 39 new Type III associated gene families. Most archaeal and bacterial Type III modules were seen to be flanked by several accessory genes, around half of which did not encode CARF domains and remain of unknown function. Northern blotting and interference assays in Synechocystis confirmed that one particular non-CARF accessory protein family was involved in crRNA maturation. Non-CARF accessory genes were generally diverse, encoding nuclease, helicase, protease, ATPase, transporter and transmembrane domains with some encoding no known domains. We infer that additional families of non-CARF accessory proteins remain to be found. The method employed is scalable for potential application to metagenomic data once automated pipelines for annotation of CRISPR-Cas systems have been developed. All accessory genes found in this study are presented online in a readily accessible and searchable format for researchers to audit their model organism of choice: http://accessory.crispr.dk.
机译:进行了一项研究以鉴定邻近III型CRSPR-CAS的CAS基因盒的保守蛋白质(群集定期间隙的短语重复组成的CRISPR相关)干扰模块。 III型模块已被显示为靶向和降解DSDNA,SSDNA和SSRNA,并且经常与共官能辅助基因交织在一起,包括编码CRISP相关的ROSSMAN折叠(CARF)域的基因。使用比较基因组学方法,并定义III型关联分数占侧翼基因的共同性和特异性,我们鉴定并分类了39型III型相关基因家族。大多数古物和细菌类型III模块被认为是若干附件基因的侧翼,其中大约一半没有编码CURF结构域并保持未知的功能。 SyneChocystis中的北方印迹和干扰测定证实,一个特定的非CARF辅助蛋白系列参与CRRNA成熟。非CARF辅助基因通常是多种多样的,编码核酸酶,螺旋酶,蛋白酶,ATP酶,转运蛋白和跨膜结构域,其中一些编码没有已知结构域。我们推断仍有剩余的非CARF辅助蛋白的家庭。所采用的方法可扩展,用于潜在应用于Metagenomic数据,一旦开发了用于注释CRISPR-CAS系统的自动化管道。本研究中发现的所有附件基因在线呈现在线,可用于研究人员的易于访问和可搜索的格式,以审核他们的模型生物:http://accessory.creispr.dk。

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