化学
内在无序蛋白质
残留物(化学)
生物物理学
核糖核酸
液态液体
拉曼光谱
氢键
核磁共振波谱
结晶学
生物化学
色谱法
立体化学
分子
生物
有机化学
物理
基因
光学
作者
Anastasia C. Murthy,Gregory L. Dignon,Yelena Kan,Gül H. Zerze,Sapun H. Parekh,Jeetain Mittal,Nicolas L. Fawzi
标识
DOI:10.1038/s41594-019-0250-x
摘要
The low-complexity domain of the RNA-binding protein FUS (FUS LC) mediates liquid−liquid phase separation (LLPS), but the interactions between the repetitive SYGQ-rich sequence of FUS LC that stabilize the liquid phase are not known in detail. By combining NMR and Raman spectroscopy, mutagenesis, and molecular simulation, we demonstrate that heterogeneous interactions involving all residue types underlie LLPS of human FUS LC. We find no evidence that FUS LC adopts conformations with traditional secondary structure elements in the condensed phase; rather, it maintains conformational heterogeneity. We show that hydrogen bonding, π/sp2, and hydrophobic interactions all contribute to stabilizing LLPS of FUS LC. In addition to contributions from tyrosine residues, we find that glutamine residues also participate in contacts leading to LLPS of FUS LC. These results support a model in which FUS LC forms dynamic, multivalent interactions via multiple residue types and remains disordered in the densely packed liquid phase. The low-complexity domain of the RNA-binding protein FUS forms dynamic, multivalent interactions via multiple residue types and remains disordered in the densely packed liquid phase.
科研通智能强力驱动
Strongly Powered by AbleSci AI