Chanin Rachael B, West Patrick T, Park Ryan M, Wirbel Jakob, Green Gabriella Z M, Miklos Arjun M, Gill Matthew O, Hickey Angela S, Brooks Erin F, Bhatt Ami S
Department of Medicine (Hematology, Blood and Marrow Transplantation); Stanford, USA.
Department of Genetics, Stanford University; Stanford, USA.
bioRxiv. 2023 Sep 16:2023.03.11.532203. doi: 10.1101/2023.03.11.532203.
Bacterial populations that originate from a single bacterium are not strictly clonal. Often, they contain subgroups with distinct phenotypes. Bacteria can generate heterogeneity through phase variation: a preprogrammed, reversible mechanism that alters gene expression levels across a population. One well studied type of phase variation involves enzyme-mediated inversion of specific intergenic regions of genomic DNA. Frequently, these DNA inversions flip the orientation of promoters, turning ON or OFF adjacent coding regions within otherwise isogenic populations. Through this mechanism, inversion can affect fitness, survival, or group dynamics. Here, we develop and apply bioinformatic approaches to discover thousands of previously undescribed phase-variable regions in prokaryotes using long-read datasets. We identify 'intragenic invertons', a surprising new class of invertible elements found entirely within genes, in bacteria and archaea. To date, inversions within single genes have not been described. Intragenic invertons allow a gene to encode two or more versions of a protein by flipping a DNA sequence within the coding region, thereby increasing coding capacity without increasing genome size. We experimentally characterize specific intragenic invertons in the gut commensal , presenting a 'roadmap' for investigating this new gene-diversifying phenomenon.
源自单个细菌的细菌群体并非严格的克隆群体。通常,它们包含具有不同表型的亚群。细菌可通过相变产生异质性:这是一种预先设定的、可逆的机制,可改变整个群体的基因表达水平。一种经过充分研究的相变类型涉及酶介导的基因组DNA特定基因间区域的倒位。这些DNA倒位常常会翻转启动子的方向,从而开启或关闭同基因群体中相邻的编码区域。通过这种机制,倒位可影响适应性、生存或群体动态。在此,我们开发并应用生物信息学方法,利用长读长数据集在原核生物中发现了数千个以前未描述的相变可变区域。我们在细菌和古菌中鉴定出了“基因内倒位子”,这是一类令人惊讶的全新的可倒位元件,完全位于基因内部。迄今为止,尚未有关于单个基因内倒位的描述。基因内倒位子可通过翻转编码区域内的DNA序列,使一个基因编码两种或更多种蛋白质版本,从而在不增加基因组大小的情况下增加编码能力。我们通过实验对肠道共生菌中的特定基因内倒位子进行了表征,为研究这种新的基因多样化现象提供了一个“路线图”。