通过低复杂度域的相分离促进了应力颗粒的组装,并驱动了病态纤维化
Amandine Molliex1, Jamshid Temirov2, Jihun Lee3
1Department of Cell and Molecular Biology, St. Jude Children's Research Hospital, Memphis, TN 38105, USA.
Cell
|September 26, 2015
概括
在神经退行性疾病中存在的持续性压力颗粒可以形成病态蛋白质. 这项研究表明RNA结合蛋白 hnRNPA1 通过液相分离驱动压力颗粒的形成,将颗粒的持久性与疾病病理联系起来.
科学领域:
- 细胞生物学
- 神经科学
- 生物化学
背景情况:
- 压力颗粒是动态RNA-蛋白质复合体,
- 压力颗粒功能受损和持续的颗粒与病态蛋白质入有关.
研究的目的:
- 研究RNA结合蛋白 hnRNPA1 在压力颗粒形成中的作用.
- 阐明 hnRNPA1 导致液态相分离 (LLPS) 和随后的蛋白质聚合的机制.
主要方法:
- 研究了hnRNPA1的低复杂性域 (LCD) 和RNA识别动机 (RRMs).
- 在实验室中研究了hnRNPA1接受LLPS的能力.
- 评估LLPS对蛋白质纤维化的影响.
主要成果:
- hnRNPA1 的液晶是足以调解LLPS,形成液滴.
- 在RNA的存在下,RRM有助于LLPS调节.
- 富含蛋白质的液滴可以增强纤维化,但不需要LLPS.
结论:
- 通过hnRNPA1介导的LLPS有助于应力颗粒组装和液体特性.
- 这提供了持续的压力颗粒和ALS等疾病中纤维蛋白病理的发展之间的机制联系.
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