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整合酶 RNA 切割模块的组装机制。

Assembly mechanism of Integrator's RNA cleavage module.

机构信息

Institute of Molecular Biology and Biophysics, ETH Zurich, Zurich, Switzerland.

Institute of Molecular Biology and Biophysics, ETH Zurich, Zurich, Switzerland.

出版信息

Mol Cell. 2024 Aug 8;84(15):2882-2899.e10. doi: 10.1016/j.molcel.2024.06.032. Epub 2024 Jul 19.

Abstract

The modular Integrator complex is a transcription regulator that is essential for embryonic development. It attenuates coding gene expression via premature transcription termination and performs 3'-processing of non-coding RNAs. For both activities, Integrator requires endonuclease activity that is harbored by an RNA cleavage module consisting of INTS4-9-11. How correct assembly of Integrator modules is achieved remains unknown. Here, we show that BRAT1 and WDR73 are critical biogenesis factors for the human cleavage module. They maintain INTS9-11 inactive during maturation by physically blocking the endonuclease active site and prevent premature INTS4 association. Furthermore, BRAT1 facilitates import of INTS9-11 into the nucleus, where it is joined by INTS4. Final BRAT1 release requires locking of the mature cleavage module conformation by inositol hexaphosphate (IP). Our data explain several neurodevelopmental disorders caused by BRAT1, WDR73, and INTS11 mutations as Integrator assembly defects and reveal that IP is an essential co-factor for cleavage module maturation.

摘要

模块化整合酶复合物是一种转录调节剂,对胚胎发育至关重要。它通过过早的转录终止来减弱编码基因的表达,并对非编码 RNA 进行 3'加工。对于这两种活性,整合酶都需要内切核酸酶活性,而这种活性由由 INTS4-9-11 组成的 RNA 切割模块所承载。整合酶模块的正确组装是如何实现的仍然未知。在这里,我们表明 BRAT1 和 WDR73 是人类切割模块生物发生的关键因素。它们通过物理上阻止内切核酸酶的活性位点来使 INTS9-11 在成熟过程中保持不活跃,并防止 INTS4 过早结合。此外,BRAT1 促进 INTS9-11 进入细胞核,在那里与 INTS4 结合。BRAT1 的最终释放需要由六磷酸肌醇 (IP) 锁定成熟切割模块构象。我们的数据解释了由 BRAT1、WDR73 和 INTS11 突变引起的几种神经发育障碍是由于整合酶组装缺陷,并揭示了 IP 是切割模块成熟的必需辅助因子。

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