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G-四联体为 NONO 募集到 NEAT1 结构 lncRNA 提供了一个保守的结构基序。

G-quadruplexes offer a conserved structural motif for NONO recruitment to NEAT1 architectural lncRNA.

机构信息

Department of Biochemistry and Molecular Biology, Johns Hopkins University Bloomberg School of Public Health, 615 N. Wolfe St, Baltimore, MD 21205, USA.

Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Nucleic Acids Res. 2020 Jul 27;48(13):7421-7438. doi: 10.1093/nar/gkaa475.

Abstract

The long non-coding RNA NEAT1 serves as a scaffold for the assembly of paraspeckles, membraneless nuclear organelles involved in gene regulation. Paraspeckle assembly requires NEAT1 recruitment of the RNA-binding protein NONO, however the NEAT1 elements responsible for recruitment are unknown. Herein we present evidence that previously unrecognized structural features of NEAT1 serve an important role in these interactions. Led by the initial observation that NONO preferentially binds the G-quadruplex conformation of G-rich C9orf72 repeat RNA, we find that G-quadruplex motifs are abundant and conserved features of NEAT1. Furthermore, we determine that NONO binds NEAT1 G-quadruplexes with structural specificity and provide evidence that G-quadruplex motifs mediate NONO-NEAT1 association, with NONO binding sites on NEAT1 corresponding largely to G-quadruplex motifs, and treatment with a G-quadruplex-disrupting small molecule causing dissociation of native NONO-NEAT1 complexes. Together, these findings position G-quadruplexes as a primary candidate for the NONO-recruiting elements of NEAT1 and provide a framework for further investigation into the role of G-quadruplexes in paraspeckle formation and function.

摘要

长链非编码 RNA NEAT1 可作为组装无膜核细胞器的支架,这些细胞器参与基因调控。组装需要 NEAT1 招募 RNA 结合蛋白 NONO,但负责招募的 NEAT1 元件尚不清楚。本文通过研究发现,以前未被识别的 NEAT1 结构特征在这些相互作用中起着重要作用。最初观察到 NONO 优先结合富含 G 的 C9orf72 重复 RNA 的 G-四链体构象,研究发现 G-四链体基序是 NEAT1 丰富且保守的特征。此外,研究确定 NONO 以结构特异性结合 NEAT1 G-四链体,并提供证据表明 G-四链体基序介导 NONO-NEAT1 结合,NEAT1 上的 NONO 结合位点主要对应 G-四链体基序,用 G-四链体破坏小分子处理会导致天然 NONO-NEAT1 复合物解离。综上所述,这些发现将 G-四链体作为 NEAT1 的 NONO 招募元件的主要候选物,并为进一步研究 G-四链体在形成和功能中的作用提供了框架。

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