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首页> 外文期刊>BMC Bioinformatics >Not all predicted CRISPR–Cas systems are equal: isolated cas genes and classes of CRISPR like elements
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Not all predicted CRISPR–Cas systems are equal: isolated cas genes and classes of CRISPR like elements

机译:并非所有预测的CRISPR-Cas系统都相同:分离的cas基因和CRISPR类元件的类别

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Background The CRISPR–Cas systems in prokaryotes are RNA-guided immune systems that target and deactivate foreign nucleic acids. A typical CRISPR–Cas system consists of a CRISPR array of repeat and spacer units, and a locus of cas genes. The CRISPR and the cas locus are often located next to each other in the genomes. However, there is no quantitative estimate of the co-location. In addition, ad-hoc studies have shown that some non-CRISPR genomic elements contain repeat-spacer-like structures and are mistaken as CRISPRs. Results Using available genome sequences, we observed that a significant number of genomes have isolated cas loci and/or CRISPRs. We found that 11%, 22% and 28% of the type I, II and III cas loci are isolated (without CRISPRs in the same genomes at all or with CRISPRs distant in the genomes), respectively. We identified a large number of genomic elements that superficially reassemble CRISPRs but don’t contain diverse spacers and have no companion cas genes. We called these elements false-CRISPRs and further classified them into groups, including tandem repeats and Staphylococcus aureus repeat (STAR)-like elements. Conclusion This is the first systematic study to collect and characterize false-CRISPR elements. We demonstrated that false-CRISPRs could be used to reduce the false annotation of CRISPRs, therefore showing them to be useful for improving the annotation of CRISPR–Cas systems.
机译:背景技术原核生物中的CRISPR–Cas系统是RNA导向的免疫系统,其靶向并灭活外来核酸。一个典型的CRISPR–Cas系统由重复和间隔单元的CRISPR阵列以及一个cas基因位点组成。 CRISPR和cas基因座通常在基因组中彼此紧邻。但是,没有对同一地点的定量估计。此外,临时研究表明,某些非CRISPR基因组元件含有重复间隔物样结构,被误认为是CRISPR。结果使用可用的基因组序列,我们观察到大量基因组具有分离的cas基因座和/或CRISPR。我们发现分别分离出11%,22%和28%的I,II和III型cas基因座(在同一基因组中完全没有CRISPR,或者在基因组中没有CRISPRs)。我们鉴定了许多基因组元件,它们可以在表面上重组CRISPR,但不包含各种间隔子,也没有伴随的cas基因。我们称这些元件为假CRISPR,然后将它们进一步分为几类,包括串联重复序列和金黄色葡萄球菌重复序列(STAR)样元素。结论这是第一个收集和鉴定假CRISPR元件的系统研究。我们证明了错误的CRISPRs可用于减少CRISPR的错误注释,因此表明它们对于改善CRISPR-Cas系统的注释是有用的。

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