| Literature DB >> 27056844 |
Xiaolei Su1, Jonathon A Ditlev2, Enfu Hui1, Wenmin Xing2, Sudeep Banjade2, Julia Okrut1, David S King3, Jack Taunton1, Michael K Rosen4, Ronald D Vale5.
Abstract
Activation of various cell surface receptors triggers the reorganization of downstream signaling molecules into micrometer- or submicrometer-sized clusters. However, the functional consequences of such clustering have been unclear. We biochemically reconstituted a 12-component signaling pathway on model membranes, beginning with T cell receptor (TCR) activation and ending with actin assembly. When TCR phosphorylation was triggered, downstream signaling proteins spontaneously separated into liquid-like clusters that promoted signaling outputs both in vitro and in human Jurkat T cells. Reconstituted clusters were enriched in kinases but excluded phosphatases and enhanced actin filament assembly by recruiting and organizing actin regulators. These results demonstrate that protein phase separation can create a distinct physical and biochemical compartment that facilitates signaling.Entities:
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Year: 2016 PMID: 27056844 PMCID: PMC4892427 DOI: 10.1126/science.aad9964
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728