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在人类细胞中进行内源性内含子和反转元件诱变的双等位基因和全基因组置换。

Biallelic and gene-wide genomic substitution for endogenous intron and retroelement mutagenesis in human cells.

机构信息

School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, 226-8501, Japan.

Logomix, Inc., Tokyo, 104-0053, Japan.

出版信息

Nat Commun. 2022 Jul 21;13(1):4219. doi: 10.1038/s41467-022-31982-1.

Abstract

Functional annotation of the vast noncoding landscape of the diploid human genome still remains a major challenge of genomic research. An efficient, scarless, biallelic, and gene-wide mutagenesis approach is needed for direct investigation of the functional significance of endogenous long introns in gene regulation. Here we establish a genome substitution platform, the Universal Knock-in System or UKiS, that meets these requirements. For proof of concept, we first used UKiS on the longest intron of TP53 in the pseudo-diploid cell line HCT116. Complete deletion of the intron, its substitution with mouse and zebrafish syntenic introns, and specific removal of retrotransposon-derived elements (retroelements) were all efficiently and accurately achieved in both alleles, revealing a suppressive role of intronic Alu elements in TP53 expression. We also used UKiS for TP53 intron deletion in human induced pluripotent stem cells without losing their stemness. Furthermore, UKiS enabled biallelic removal of all introns from three human gene loci of ~100 kb and longer to demonstrate that intron requirements for transcriptional activities vary among genes. UKiS is a standard platform with which to pursue the design of noncoding regions for genome writing in human cells.

摘要

功能性注释二倍体人类基因组广阔的非编码区仍然是基因组研究的主要挑战。需要一种高效、无痕、双等位基因和全基因诱变方法,以直接研究内源性长内含子在基因调控中的功能意义。在这里,我们建立了一个满足这些要求的基因组替换平台,即通用敲入系统(Universal Knock-in System 或 UKiS)。为了验证概念,我们首先在假二倍体细胞系 HCT116 中的 TP53 的最长内含子上使用了 UKiS。内含子的完全缺失、用小鼠和斑马鱼同源内含子替换以及逆转座子衍生元件(逆转录元件)的特异性去除,在两个等位基因中都高效且准确地实现了,这揭示了内含子中的 Alu 元件在 TP53 表达中的抑制作用。我们还在不丧失其干性的情况下,在人类诱导多能干细胞中使用 UKiS 进行 TP53 内含子缺失。此外,UKiS 能够从三个约 100 kb 及更长的人类基因座中双等位基因去除所有内含子,证明了转录活性的内含子要求因基因而异。UKiS 是一个标准平台,可用于在人类细胞中进行基因组编写的非编码区设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d9c/9304424/701385ed162a/41467_2022_31982_Fig1_HTML.jpg

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