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ELAV 和 FNE 通过 EXon-激活拯救来确定神经元转录特征。

ELAV and FNE Determine Neuronal Transcript Signatures through EXon-Activated Rescue.

机构信息

Max-Planck-Institute of Immunobiology and Epigenetics, 79108 Freiburg, Germany; Faculty of Biology, Albert Ludwig University, 79104 Freiburg, Germany; International Max Planck Research School for Molecular and Cellular Biology (IMPRS-MCB), 79108 Freiburg, Germany.

Max-Planck-Institute of Immunobiology and Epigenetics, 79108 Freiburg, Germany.

出版信息

Mol Cell. 2020 Oct 1;80(1):156-163.e6. doi: 10.1016/j.molcel.2020.09.011.

Abstract

The production of alternative RNA variants contributes to the tissue-specific regulation of gene expression. In the animal nervous system, a systematic shift toward distal sites of transcription termination produces transcript signatures that are crucial for neuron development and function. Here, we report that, in Drosophila, the highly conserved protein ELAV globally regulates all sites of neuronal 3' end processing and directly binds to proximal polyadenylation sites of target mRNAs in vivo. We uncover an endogenous strategy of functional gene rescue that safeguards neuronal RNA signatures in an ELAV loss-of-function context. When not directly repressed by ELAV, the transcript encoding the ELAV paralog FNE acquires a mini-exon, generating a new protein able to translocate to the nucleus and rescue ELAV-mediated alternative polyadenylation and alternative splicing. We propose that exon-activated functional rescue is a more widespread mechanism that ensures robustness of processes regulated by a hierarchy, rather than redundancy, of effectors.

摘要

替代性 RNA 变体的产生有助于基因表达的组织特异性调控。在动物神经系统中,转录终止的位置向远端的系统性转移产生了对神经元发育和功能至关重要的转录本特征。在这里,我们报告在果蝇中,高度保守的 ELAV 蛋白全局调控所有神经元 3' 末端加工位点,并在体内直接结合靶 mRNA 的近端聚腺苷酸化位点。我们揭示了一种内在的功能基因拯救策略,可在 ELAV 功能丧失的情况下保护神经元 RNA 特征。当不受 ELAV 直接抑制时,编码 ELAV 同源物 FNE 的转录本获得一个小型外显子,产生一种新的蛋白,能够转位到细胞核,并拯救 ELAV 介导的可变聚腺苷酸化和可变剪接。我们提出,外显子激活的功能拯救是一种更广泛的机制,它确保了由层次而不是冗余的效应物调控的过程的稳健性。

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