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piRNA 簇 torimochi 是培养的家蚕细胞中扩增的转座子。

The piRNA cluster torimochi is an expanding transposon in cultured silkworm cells.

机构信息

Laboratory of RNA Function, Institute for Quantitative Biosciences, The University of Tokyo, Bunkyo-ku, Tokyo, Japan.

Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Meguro-ku, Tokyo, Japan.

出版信息

PLoS Genet. 2023 Feb 9;19(2):e1010632. doi: 10.1371/journal.pgen.1010632. eCollection 2023 Feb.

Abstract

PIWI proteins and PIWI-interacting RNAs (piRNAs) play a central role in repressing transposable elements in animal germ cells. It is thought that piRNAs are mainly produced from discrete genomic loci named piRNA clusters, which often contain many "dead" transposon remnants from past invasions and have heterochromatic features. In the genome of silkworm ovary-derived cultured cells called BmN4, a well-established model for piRNA research, torimochi was previously annotated as a unique and specialized genomic region that can capture transgenes and produce new piRNAs bearing a trans-silencing activity. However, the sequence identity of torimochi has remained elusive. Here, we carefully characterized torimochi by utilizing the updated silkworm genome sequence and the long-read sequencer MinION. We found that torimochi is in fact a full-length gypsy-like LTR retrotransposon, which is exceptionally active and has massively expanded its copy number in BmN4 cells. Many copies of torimochi in BmN4 cells have features of open chromatin and the ability to produce piRNAs. Therefore, torimochi may represent a young, growing piRNA cluster, which is still "alive" and active in transposition yet capable of trapping other transposable elements to produce de novo piRNAs.

摘要

PIWI 蛋白和 PIWI 相互作用的 RNA(piRNA)在抑制动物生殖细胞中的转座元件中起着核心作用。人们认为 piRNA 主要是从离散的基因组位点(称为 piRNA 簇)产生的,这些位点通常包含许多来自过去入侵的“死”转座子残基,并且具有异染色质特征。在蚕卵巢衍生的培养细胞 BmN4 的基因组中,torimochi 以前被注释为一个独特的专门基因组区域,它可以捕获转基因并产生具有转录沉默活性的新 piRNA。然而,torimochi 的序列同一性仍然难以捉摸。在这里,我们利用最新的蚕基因组序列和长读测序仪 MinION 仔细表征了 torimochi。我们发现 torimochi 实际上是一个全长 gypsy 样 LTR 反转录转座子,它异常活跃,并在 BmN4 细胞中大量扩增其拷贝数。BmN4 细胞中的许多 torimochi 具有开放染色质的特征和产生 piRNA 的能力。因此,torimochi 可能代表一个年轻的、不断增长的 piRNA 簇,它仍然“活跃”并在转座过程中活跃,但能够捕获其他转座元件以产生新的 piRNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c1f/9946225/e25f951c430c/pgen.1010632.g001.jpg

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