生物
精氨酸
甲基化
突变
细胞生物学
突变体
遗传学
氨基酸
DNA
基因
作者
Veronica H. Ryan,Gregory L. Dignon,Gül H. Zerze,Charlene Vongai Chabata,Rute Silva,Alexander E. Conicella,Joshua Amaya,Kathleen A. Burke,Jeetain Mittal,Nicolas Lux Fawzi
出处
期刊:Molecular Cell
[Elsevier BV]
日期:2018-01-18
卷期号:69 (3): 465-479.e7
被引量:454
标识
DOI:10.1016/j.molcel.2017.12.022
摘要
hnRNPA2, a component of RNA-processing membraneless organelles, forms inclusions when mutated in a syndrome characterized by the degeneration of neurons (bearing features of amyotrophic lateral sclerosis [ALS] and frontotemporal dementia), muscle, and bone. Here we provide a unified structural view of hnRNPA2 self-assembly, aggregation, and interaction and the distinct effects of small chemical changes-disease mutations and arginine methylation-on these assemblies. The hnRNPA2 low-complexity (LC) domain is compact and intrinsically disordered as a monomer, retaining predominant disorder in a liquid-liquid phase-separated form. Disease mutations D290V and P298L induce aggregation by enhancing and extending, respectively, the aggregation-prone region. Co-aggregating in disease inclusions, hnRNPA2 LC directly interacts with and induces phase separation of TDP-43. Conversely, arginine methylation reduces hnRNPA2 phase separation, disrupting arginine-mediated contacts. These results highlight the mechanistic role of specific LC domain interactions and modifications conserved across many hnRNP family members but altered by aggregation-causing pathological mutations.
科研通智能强力驱动
Strongly Powered by AbleSci AI