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多价信号蛋白组装中的相转变。

Phase transitions in the assembly of multivalent signalling proteins.

机构信息

Department of Biochemistry and Howard Hughes Medical Institute, University of Texas Southwestern Medical Center, Dallas, Texas 75390-8812, USA.

出版信息

Nature. 2012 Mar 7;483(7389):336-40. doi: 10.1038/nature10879.

Abstract

Cells are organized on length scales ranging from ångström to micrometres. However, the mechanisms by which ångström-scale molecular properties are translated to micrometre-scale macroscopic properties are not well understood. Here we show that interactions between diverse synthetic, multivalent macromolecules (including multi-domain proteins and RNA) produce sharp liquid-liquid-demixing phase separations, generating micrometre-sized liquid droplets in aqueous solution. This macroscopic transition corresponds to a molecular transition between small complexes and large, dynamic supramolecular polymers. The concentrations needed for phase transition are directly related to the valency of the interacting species. In the case of the actin-regulatory protein called neural Wiskott-Aldrich syndrome protein (N-WASP) interacting with its established biological partners NCK and phosphorylated nephrin, the phase transition corresponds to a sharp increase in activity towards an actin nucleation factor, the Arp2/3 complex. The transition is governed by the degree of phosphorylation of nephrin, explaining how this property of the system can be controlled to regulatory effect by kinases. The widespread occurrence of multivalent systems suggests that phase transitions may be used to spatially organize and biochemically regulate information throughout biology.

摘要

细胞在从埃(Ångström,长度单位,10-10 米)到微米的长度尺度上进行组织。然而,将埃尺度的分子性质转化为微米尺度的宏观性质的机制尚不清楚。在这里,我们表明,不同合成的、多价的大分子(包括多结构域蛋白和 RNA)之间的相互作用产生了明显的液-液相分离,在水溶液中生成了微米大小的液滴。这种宏观转变对应于小分子复合物和大的、动态的超分子聚合物之间的分子转变。发生相转变所需的浓度与相互作用物质的价态直接相关。在称为神经 Wiskott-Aldrich 综合征蛋白(N-WASP)的肌动蛋白调节蛋白与其既定的生物伙伴 NCK 和磷酸化的nephrin 相互作用的情况下,相转变对应于对肌动蛋白成核因子(Arp2/3 复合物)的活性的急剧增加。转变由 nephrin 的磷酸化程度控制,这解释了系统的这一特性如何通过激酶被调控以产生调节效果。多价系统的广泛存在表明,相转变可能被用于在整个生物学中空间组织和生化调节信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e29c/3343696/2c6aac938a28/nihms351604f1.jpg

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