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Intricate and Cell Type-Specific Populations of Endogenous Circular DNA (eccDNA) in Caenorhabditis elegans and Homo sapiens

机译:秀丽隐杆线虫和智人的内源性环状DNA(eccDNA)的复杂和特定细胞类型的种群

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Investigations aimed at defining the 3D configuration of eukaryotic chromosomes have consistently encountered an endogenous population of chromosome-derived circular genomic DNA, referred to as extrachromosomal circular DNA (eccDNA). While the production, distribution, and activities of eccDNAs remain understudied, eccDNA formation from specific regions of the linear genome has profound consequences on the regulatory and coding capabilities for these regions. Here, we define eccDNA distributions in Caenorhabditis elegans and in three human cell types, utilizing a set of DNA topology-dependent approaches for enrichment and characterization. The use of parallel biophysical, enzymatic, and informatic approaches provides a comprehensive profiling of eccDNA robust to isolation and analysis methodology. Results in human and nematode systems provide quantitative analysis of the eccDNA loci at both unique and repetitive regions. Our studies converge on and support a consistent picture, in which endogenous genomic DNA circles are present in normal physiological states, and in which the circles come from both coding and noncoding genomic regions. Prominent among the coding regions generating DNA circles are several genes known to produce a diversity of protein isoforms, with mucin proteins and titin as specific examples.
机译:旨在定义真核染色体3D构型的研究一直遇到内源性染色体衍生的环状基因组DNA,称为染色体外环状DNA(eccDNA)。虽然eccDNA的产生,分布和活性仍处于研究不足,但从线性基因组特定区域形成eccDNA会对这些区域的调节和编码能力产生深远影响。在这里,我们利用一系列依赖DNA拓扑学的方法进行富集和鉴定,从而定义秀丽隐杆线虫和三种人类细胞类型中的eccDNA分布。并行生物物理,酶促和信息学方法的使用提供了对eccDNA的全面分析,对分离和分析方法具有鲁棒性。人类和线虫系统的结果可对独特和重复区域的eccDNA基因座进行定量分析。我们的研究收敛并支持一个一致的图景,其中内源基因组DNA圆以正常生理状态存在,并且其中这些圆来自编码和非编码基因组区域。在产生DNA环的编码区中最突出的是已知可产生多种蛋白质同工型的几种基因,其中粘蛋白和肌动蛋白为特定实例。

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