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RNA 聚合酶 III 的核质活性和不断进化的监视转录组。

The nuclear and cytoplasmic activities of RNA polymerase III, and an evolving transcriptome for surveillance.

机构信息

Division of Intramural Research, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD, 20892 USA.

出版信息

Nucleic Acids Res. 2021 Dec 2;49(21):12017-12034. doi: 10.1093/nar/gkab1145.

Abstract

A 1969 report that described biochemical and activity properties of the three eukaryotic RNA polymerases revealed Pol III as highly distinguishable, even before its transcripts were identified. Now known to be the most complex, Pol III contains several stably-associated subunits referred to as built-in transcription factors (BITFs) that enable highly efficient RNA synthesis by a unique termination-associated recycling process. In vertebrates, subunit RPC7(α/β) can be of two forms, encoded by POLR3G or POLR3GL, with differential activity. Here we review promoter-dependent transcription by Pol III as an evolutionary perspective of eukaryotic tRNA expression. Pol III also provides nonconventional functions reportedly by promoter-independent transcription, one of which is RNA synthesis from DNA 3'-ends during repair. Another is synthesis of 5'ppp-RNA signaling molecules from cytoplasmic viral DNA in a pathway of interferon activation that is dysfunctional in immunocompromised patients with mutations in Pol III subunits. These unconventional functions are also reviewed, including evidence that link them to the BITF subunits. We also review data on a fraction of the human Pol III transcriptome that evolved to include vault RNAs and snaRs with activities related to differentiation, and in innate immune and tumor surveillance. The Pol III of higher eukaryotes does considerably more than housekeeping.

摘要

1969 年的一份报告描述了三种真核 RNA 聚合酶的生化和活性特性,揭示了 Pol III 高度可区分,甚至在其转录本被鉴定之前。现在已知 Pol III 是最复杂的,它包含几个稳定相关的亚基,称为内置转录因子 (BITFs),通过独特的终止相关循环过程实现高效的 RNA 合成。在脊椎动物中,亚基 RPC7(α/β)可以有两种形式,由 POLR3G 或 POLR3GL 编码,具有不同的活性。在这里,我们从进化的角度回顾 Pol III 的启动子依赖性转录,作为真核 tRNA 表达的一个观点。Pol III 还提供了据报道通过启动子非依赖性转录的非常规功能,其中之一是在修复过程中从 DNA 3'-末端合成 RNA。另一个是在干扰素激活途径中从细胞质病毒 DNA 合成 5'ppp-RNA 信号分子,在免疫功能低下的患者中,Pol III 亚基的突变导致该途径功能失调。这些非常规功能也进行了综述,包括将它们与 BITF 亚基联系起来的证据。我们还回顾了人类 Pol III 转录组的一部分数据,这些数据进化为包括与分化相关的穹窿 RNA 和 snaRs,以及先天免疫和肿瘤监测。高等真核生物的 Pol III 所做的不仅仅是维持生命。

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