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Piwi 介导的共转录沉默的分子原理通过二聚体 SFiNX 复合物。

Molecular principles of Piwi-mediated cotranscriptional silencing through the dimeric SFiNX complex.

机构信息

Institute of Molecular Biotechnology of the Austrian Academy of Sciences (IMBA), Vienna BioCenter (VBC), 1030 Vienna, Austria.

Vienna BioCenter PhD Program, Doctoral School at the University of Vienna and Medical University of Vienna, 1030 Vienna, Austria.

出版信息

Genes Dev. 2021 Mar 1;35(5-6):392-409. doi: 10.1101/gad.347989.120. Epub 2021 Feb 11.

Abstract

Nuclear Argonaute proteins, guided by their bound small RNAs to nascent target transcripts, mediate cotranscriptional silencing of transposons and repetitive genomic loci through heterochromatin formation. The molecular mechanisms involved in this process are incompletely understood. Here, we show that the SFiNX complex, a silencing mediator downstream from nuclear Piwi-piRNA complexes in , facilitates cotranscriptional silencing as a homodimer. The dynein light chain protein Cut up/LC8 mediates SFiNX dimerization, and its function can be bypassed by a heterologous dimerization domain, arguing for a constitutive SFiNX dimer. Dimeric, but not monomeric SFiNX, is capable of forming molecular condensates in a nucleic acid-stimulated manner. Mutations that prevent SFiNX dimerization result in loss of condensate formation in vitro and the inability of Piwi to initiate heterochromatin formation and silence transposons in vivo. We propose that multivalent SFiNX-nucleic acid interactions are critical for heterochromatin establishment at piRNA target loci in a cotranscriptional manner.

摘要

核 Argonaute 蛋白在其结合的小 RNA 的引导下,靶向新生的靶转录本,通过异染色质形成介导转座子和重复基因组位点的共转录沉默。这一过程涉及的分子机制尚不完全清楚。在这里,我们表明 SFiNX 复合物作为同源二聚体,是核 Piwi-piRNA 复合物下游的沉默介体,促进共转录沉默。动力蛋白轻链蛋白 Cut up/LC8 介导 SFiNX 二聚化,其功能可以被异源二聚化结构域绕过,这表明 SFiNX 是一种组成性二聚体。二聚体形式的 SFiNX,但不是单体形式的 SFiNX,能够以核酸刺激的方式形成分子凝聚物。阻止 SFiNX 二聚化的突变导致体外凝聚物形成的缺失,以及 Piwi 无法在体内起始异染色质形成和沉默转座子。我们提出,多价 SFiNX-核酸相互作用对于 PiRNA 靶位在共转录水平上建立异染色质至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fef/7919418/4b45016d9c90/392f02.jpg

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