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通过化学和遗传筛选鉴定四环素诱导基因表达系统的新调控因子。

New regulators of the tetracycline-inducible gene expression system identified by chemical and genetic screens.

机构信息

Science for Life Laboratory, Division of Genome Biology, Department of Medical Biochemistry and Biophysics, Karolinska Institute, Stockholm, Sweden.

Genomic Instability Group, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.

出版信息

FEBS Open Bio. 2022 Oct;12(10):1896-1908. doi: 10.1002/2211-5463.13482. Epub 2022 Sep 11.

DOI:10.1002/2211-5463.13482
PMID:36062323
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9527584/
Abstract

The tetracycline repressor (tetR)-regulated system is a widely used tool to specifically control gene expression in mammalian cells. Based on this system, we generated a human osteosarcoma cell line, which allows for the inducible expression of an EGFP fusion of the TAR DNA-binding protein 43 (TDP-43), which has been linked to neurodegenerative diseases. Consistent with previous findings, TDP-43 overexpression led to the accumulation of aggregates and limited the viability of U2OS. Using this inducible system, we conducted a chemical screen with a library that included FDA-approved drugs. While the primary screen identified several compounds that prevented TDP-43 toxicity, further experiments revealed that these chemicals abrogated the doxycycline-dependent TDP-43 expression. This antagonistic effect was observed with both doxycycline and tetracycline, and in several Tet-On cell lines expressing different genes, confirming the general effect of these compounds as inhibitors of the tetR system. Using the same cell line, a genome-wide CRISPR/Cas9 screen identified epigenetic regulators such as the G9a methyltransferase and TRIM28 as potential modifiers of TDP-43 toxicity. Yet again, further experiments revealed that G9a inhibition or TRIM28 loss prevented doxycycline-dependent expression of TDP-43. In summary, we have identified new chemical and genetic regulators of the tetR system, thereby raising awareness of the limitations of this approach to conduct chemical or genetic screening in mammalian cells.

摘要

四环素阻遏物(tetR)调控系统是一种广泛应用于哺乳动物细胞中特异性控制基因表达的工具。基于该系统,我们构建了一个人骨肉瘤细胞系,该细胞系能够诱导表达 EGFP 融合的 TAR DNA 结合蛋白 43(TDP-43),TDP-43 与神经退行性疾病有关。与先前的发现一致,TDP-43 的过表达导致聚集物的积累,并限制了 U2OS 的活力。使用这种诱导型系统,我们用包含 FDA 批准药物的文库进行了化学筛选。虽然初步筛选确定了几种可预防 TDP-43 毒性的化合物,但进一步的实验表明,这些化学物质消除了四环素依赖性 TDP-43 表达。这种拮抗作用在使用四环素和多西环素时都观察到,并且在表达不同基因的几种 Tet-On 细胞系中都得到了证实,证实了这些化合物作为 tetR 系统抑制剂的一般作用。使用相同的细胞系,全基因组 CRISPR/Cas9 筛选鉴定了表观遗传调节剂,如 G9a 甲基转移酶和 TRIM28,它们是 TDP-43 毒性的潜在调节剂。然而,进一步的实验表明,G9a 抑制或 TRIM28 缺失可防止四环素依赖性 TDP-43 的表达。总之,我们已经确定了 tetR 系统的新的化学和遗传调节剂,从而提高了对这种方法在哺乳动物细胞中进行化学或遗传筛选的局限性的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/56b7448dfe10/FEB4-12-1896-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/3241845d4d8e/FEB4-12-1896-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/4541989d5319/FEB4-12-1896-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/c8849ee777de/FEB4-12-1896-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/56b7448dfe10/FEB4-12-1896-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/3241845d4d8e/FEB4-12-1896-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/4541989d5319/FEB4-12-1896-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/c8849ee777de/FEB4-12-1896-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2404/9527584/56b7448dfe10/FEB4-12-1896-g002.jpg

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本文引用的文献

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