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本文引用的文献

1
Intrinsically disordered RGG/RG domains mediate degenerate specificity in RNA binding.内在无序的RGG/RG结构域介导RNA结合中的简并特异性。
Nucleic Acids Res. 2017 Jul 27;45(13):7984-7996. doi: 10.1093/nar/gkx460.
2
The binding specificity of Translocated in LipoSarcoma/FUsed in Sarcoma with lncRNA transcribed from the promoter region of cyclin D1.脂肪肉瘤中易位/肉瘤中融合蛋白与细胞周期蛋白D1启动子区域转录的lncRNA的结合特异性。
Cell Biosci. 2016 Jan 25;6:4. doi: 10.1186/s13578-016-0068-8. eCollection 2016.
3
Development of a mouse monoclonal antibody for the detection of asymmetric dimethylarginine of Translocated in LipoSarcoma/FUsed in Sarcoma and its application in analyzing methylated TLS.开发一种用于检测脂肪肉瘤易位/融合肉瘤中不对称二甲基精氨酸的小鼠单克隆抗体及其在分析甲基化 TLS 中的应用。
Cell Biosci. 2014 Dec 10;4:77. doi: 10.1186/2045-3701-4-77. eCollection 2014.
4
Arginine methyltransferases as novel therapeutic targets for breast cancer.精氨酸甲基转移酶作为乳腺癌的新型治疗靶点。
Mutagenesis. 2015 Mar;30(2):177-89. doi: 10.1093/mutage/geu039.
5
FUS-regulated RNA metabolism and DNA damage repair: Implications for amyotrophic lateral sclerosis and frontotemporal dementia pathogenesis.FUS调节的RNA代谢与DNA损伤修复:对肌萎缩侧索硬化症和额颞叶痴呆发病机制的影响。
Rare Dis. 2014 Jun 12;2:e29515. doi: 10.4161/rdis.29515. eCollection 2014.
6
Protein arginine methyltransferase 1 and 8 interact with FUS to modify its sub-cellular distribution and toxicity in vitro and in vivo.蛋白质精氨酸甲基转移酶 1 和 8 与 FUS 相互作用,改变其在体外和体内的亚细胞分布和毒性。
PLoS One. 2013 Apr 19;8(4):e61576. doi: 10.1371/journal.pone.0061576. Print 2013.
7
Regulation of telomere length by G-quadruplex telomere DNA- and TERRA-binding protein TLS/FUS.由G-四链体端粒DNA和端粒重复序列RNA结合蛋白TLS/FUS对端粒长度的调控
Chem Biol. 2013 Mar 21;20(3):341-50. doi: 10.1016/j.chembiol.2013.02.013.
8
The effect of PRMT1-mediated arginine methylation on the subcellular localization, stress granules, and detergent-insoluble aggregates of FUS/TLS.PRMT1 介导的精氨酸甲基化对 FUS/TLS 的亚细胞定位、应激颗粒和去垢剂不溶性聚集体的影响。
PLoS One. 2012;7(11):e49267. doi: 10.1371/journal.pone.0049267. Epub 2012 Nov 13.
9
Arginine methylation next to the PY-NLS modulates Transportin binding and nuclear import of FUS.精氨酸甲基化紧邻 PY-NLS 可调节 FUS 的 Transportin 结合和核输入。
EMBO J. 2012 Nov 14;31(22):4258-75. doi: 10.1038/emboj.2012.261. Epub 2012 Sep 11.
10
Two-timing zinc finger transcription factors liaising with RNA.与 RNA 相互作用的双重定时锌指转录因子。
Trends Biochem Sci. 2012 May;37(5):199-205. doi: 10.1016/j.tibs.2012.02.001. Epub 2012 Mar 7.

易位型脂肪肉瘤融合蛋白(TLS)的精氨酸甲基化抑制其与长链非编码 RNA 的结合,从而消除 TLS 介导的 CBP/p300 活性抑制。

Arginine methylation of translocated in liposarcoma (TLS) inhibits its binding to long noncoding RNA, abrogating TLS-mediated repression of CBP/p300 activity.

机构信息

From the Division of Gene Structure and Function, Research Center for Genomic Medicine, Saitama Medical University, 1397-1 Yamane, Hidaka-shi, Saitama 350-1241, Japan.

From the Division of Gene Structure and Function, Research Center for Genomic Medicine, Saitama Medical University, 1397-1 Yamane, Hidaka-shi, Saitama 350-1241, Japan

出版信息

J Biol Chem. 2018 Jul 13;293(28):10937-10948. doi: 10.1074/jbc.RA117.000598. Epub 2018 May 21.

DOI:10.1074/jbc.RA117.000598
PMID:29784880
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6052218/
Abstract

Translocated in liposarcoma (TLS) is an RNA-binding protein and a transcription-regulatory sensor of DNA damage. TLS binds promoter-associated noncoding RNA (pncRNA) and inhibits histone acetyltransferase (HAT) activity of CREB-binding protein (CBP)/E1A-binding protein P300 (p300) on the cyclin D1 () gene. Although post-translational modifications of TLS, such as arginine methylation, are known to regulate TLS's nucleocytoplasmic shuttling and assembly in stress granules, its interactions with RNAs remain poorly characterized. Herein, using various biochemical assays, we confirmed the earlier observations that TLS is methylated by protein arginine methyltransferase 1 (PRMT1) The arginine methylation of TLS disrupted binding to pncRNA and also prevented binding of TLS to and inhibition of CBP/p300. This result indicated that arginine methylation of TLS abrogates both binding to pncRNA and TLS-mediated inhibition of CBP/p300 HAT activities. We also report that an arginine residue within the Arg-Gly-Gly domain of TLS, Arg-476, serves as the major determinant for binding to pncRNA. Either methylation or mutation of Arg-476 of TLS significantly decreased pncRNA binding and thereby prevented a pncRNA-induced allosteric alteration in TLS that is required for its interaction with CBP/p300. Moreover, unlike WT TLS, an R476A TLS mutant did not inhibit promoter activity in luciferase reporter assays. Taken together, we propose the hypothesis that arginine methylation of TLS regulates both TLS-nucleic acid and TLS-protein interactions and thereby participates in transcriptional regulation.

摘要

易位在脂肪肉瘤(TLS)是一种 RNA 结合蛋白和 DNA 损伤的转录调节传感器。TLS 结合启动子相关的非编码 RNA(pncRNA),并抑制 CREB 结合蛋白(CBP)/E1A 结合蛋白 P300(p300)的组蛋白乙酰转移酶(HAT)活性在细胞周期蛋白 D1()基因上。尽管 TLS 的翻译后修饰,如精氨酸甲基化,已知调节 TLS 在应激颗粒中的核质穿梭和组装,但它与 RNA 的相互作用仍未得到很好的描述。在此,我们使用各种生化测定方法证实了之前的观察结果,即 TLS 被蛋白质精氨酸甲基转移酶 1(PRMT1)甲基化。TLS 的精氨酸甲基化破坏了与 pncRNA 的结合,也阻止了 TLS 与 CBP/p300 的结合和抑制。这一结果表明,TLS 的精氨酸甲基化既破坏了与 pncRNA 的结合,也破坏了 TLS 介导的 CBP/p300 HAT 活性的抑制。我们还报告说,TLS 的 Arg-Gly-Gly 结构域内的精氨酸残基,Arg-476,是与 pncRNA 结合的主要决定因素。TLS 的 Arg-476 精氨酸的甲基化或突变都显著降低了 pncRNA 的结合,从而阻止了 pncRNA 诱导的 TLS 变构改变,这是其与 CBP/p300 相互作用所必需的。此外,与 WT TLS 不同,R476A TLS 突变体在荧光素酶报告基因检测中不能抑制启动子活性。总之,我们提出假设,TLS 的精氨酸甲基化调节 TLS-核酸和 TLS-蛋白质相互作用,从而参与转录调节。