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剪接因子 SRSF1 的核质穿梭对于发育和纤毛功能是必需的。

Nucleo-cytoplasmic shuttling of splicing factor SRSF1 is required for development and cilia function.

机构信息

MRC Human Genetics Unit, Institute of Genetics and Cancer, University of Edinburgh, Edinburgh, United Kingdom.

Institute of Nuclear Technologies for Health (Intecnus), National Scientific and Technical Research Council (CONICET), Bariloche, Argentina.

出版信息

Elife. 2021 Aug 2;10:e65104. doi: 10.7554/eLife.65104.

Abstract

Shuttling RNA-binding proteins coordinate nuclear and cytoplasmic steps of gene expression. The SR family proteins regulate RNA splicing in the nucleus and a subset of them, including SRSF1, shuttles between the nucleus and cytoplasm affecting post-splicing processes. However, the physiological significance of this remains unclear. Here, we used genome editing to knock-in a nuclear retention signal (NRS) in to create a mouse model harboring an SRSF1 protein that is retained exclusively in the nucleus. mutants displayed small body size, hydrocephalus, and immotile sperm, all traits associated with ciliary defects. We observed reduced translation of a subset of mRNAs and decreased abundance of proteins involved in multiciliogenesis, with disruption of ciliary ultrastructure and motility in cells and tissues derived from this mouse model. These results demonstrate that SRSF1 shuttling is used to reprogram gene expression networks in the context of high cellular demands, as observed here, during motile ciliogenesis.

摘要

RNA 结合蛋白穿梭蛋白协调基因表达的核质步骤。SR 家族蛋白在核内调节 RNA 剪接,其中一部分蛋白,包括 SRSF1,在核质间穿梭,影响剪接后的过程。然而,这一过程的生理意义尚不清楚。在这里,我们使用基因组编辑技术在 中敲入一个核保留信号(NRS),创建了一个 SRSF1 蛋白仅保留在核内的小鼠模型。 突变体表现出体型小、脑积水和不动精子,这些都是与纤毛缺陷相关的特征。我们观察到一部分 mRNA 的翻译减少,参与多纤毛发生的蛋白丰度降低,并且在源自该小鼠模型的细胞和组织中观察到纤毛超微结构和运动的破坏。这些结果表明,SRSF1 的穿梭被用于在高细胞需求的情况下重新编程基因表达网络,正如我们在这里观察到的,在运动纤毛发生过程中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98f4/8352595/0e7be936286e/elife-65104-fig1.jpg

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