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球形副斑点的三嵌段共聚物胶束模型。

Triblock copolymer micelle model of spherical paraspeckles.

作者信息

Yamamoto Tetsuya, Yamazaki Tomohiro, Hirose Tetsuro

机构信息

Institute for Chemical Reaction Design and Discovery, Hokkaido University, Sapporo, Japan.

PRESTO, Japan Science and Technology Agency (JST), 4-1-8 Honcho, Kawaguchi, Japan.

出版信息

Front Mol Biosci. 2022 Aug 22;9:925058. doi: 10.3389/fmolb.2022.925058. eCollection 2022.

Abstract

Paraspeckles are nuclear bodies scaffolded by RNP complexes of NEAT1_2 RNA transcripts and multiple RNA-binding proteins. The assembly of paraspeckles is coupled with the transcription of NEAT1_2. Paraspeckles form the core-shell structure, where the two terminal regions of NEAT1_2 RNP complexes compose the shell of the paraspeckle and the middle regions of these complexes compose the core. We here construct a theoretical model of paraspeckles by taking into account the transcription of NEAT1_2 in an extension of the theory of block copolymer micelles. This theory predicts that the core-shell structure of a paraspeckle is assembled by the association of the middle region of NEAT1_2 RNP complexes due to the multivalent interactions between RBPs bound to these regions and by the relative affinity of the terminal regions of the complexes to the nucleoplasm. The latter affinity results in the effective repulsive interactions between terminal regions of the RNA complexes and limits the number of complexes composing the paraspeckle. In the wild type, the repulsive interaction between the middle and terminal block dominates the thermal fluctuation. However, the thermal fluctuation can be significant in a mutant, where a part of the terminal regions of NEAT1_2 is deleted, and distributes the shortened terminal regions randomly between the shell and the core, consistent with our recent experiments. With the upregulated transcription, the shortened terminal regions of NEAT1_2 in a deletion mutant is localized to the core to decrease the repulsive interaction between the terminal regions, while the structure does not change with the upregulation in the wild type. The robustness of the structure of paraspeckles in the wild type results from the polymeric nature of NEAT1_2 complexes.

摘要

副斑点是由NEAT1_2 RNA转录本和多种RNA结合蛋白的RNP复合物搭建的核体。副斑点的组装与NEAT1_2的转录相关联。副斑点形成核壳结构,其中NEAT1_2 RNP复合物的两个末端区域构成副斑点的壳,这些复合物的中间区域构成核心。我们在此通过在嵌段共聚物胶束理论的扩展中考虑NEAT1_2的转录,构建了一个副斑点的理论模型。该理论预测,由于结合在这些区域的RNA结合蛋白(RBPs)之间的多价相互作用以及复合物末端区域对核质的相对亲和力,副斑点的核壳结构由NEAT1_2 RNP复合物的中间区域缔合组装而成。后者的亲和力导致RNA复合物末端区域之间产生有效的排斥相互作用,并限制了构成副斑点的复合物数量。在野生型中,中间和末端嵌段之间的排斥相互作用主导热涨落。然而,在一个突变体中热涨落可能很显著,在该突变体中NEAT1_2的部分末端区域被删除,并将缩短的末端区域随机分布在壳和核心之间,这与我们最近的实验一致。随着转录上调,缺失突变体中NEAT1_2缩短的末端区域定位于核心以减少末端区域之间的排斥相互作用,而在野生型中结构不会随上调而改变。野生型中副斑点结构的稳健性源于NEAT1_2复合物的聚合物性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e25/9441768/9c1465836851/fmolb-09-925058-g001.jpg

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