Department of Genome Sciences, University of Washington, Seattle, WA 98195, USA; Molecular and Cellular Biology, University of Washington, Seattle, WA 98195, USA.
Department of Chemistry, University of Washington, Seattle, WA 98195, USA.
Mol Cell. 2019 Apr 18;74(2):393-408.e20. doi: 10.1016/j.molcel.2019.02.003. Epub 2019 Apr 4.
Multiple layers of regulation modulate the activity and localization of protein kinases. However, many details of kinase regulation remain incompletely understood. Here, we apply saturation mutagenesis and a chemical genetic method for allosterically modulating kinase global conformation to Src kinase, providing insight into known regulatory mechanisms and revealing a previously undiscovered interaction between Src's SH4 and catalytic domains. Abrogation of this interaction increased phosphotransferase activity, promoted membrane association, and provoked phosphotransferase-independent alterations in cell morphology. Thus, Src's SH4 domain serves as an intramolecular regulator coupling catalytic activity, global conformation, and localization, as well as mediating a phosphotransferase-independent function. Sequence conservation suggests that the SH4 domain regulatory interaction exists in other Src-family kinases. Our combined approach's ability to reveal a regulatory mechanism in one of the best-studied kinases suggests that it could be applied broadly to provide insight into kinase structure, regulation, and function.
多层次的调节控制蛋白激酶的活性和定位。然而,激酶调节的许多细节仍然不完全清楚。在这里,我们应用饱和突变和化学遗传方法来调节激酶的整体构象,深入了解已知的调节机制,并揭示Src 激酶中以前未发现的 SH4 结构域和催化结构域之间的相互作用。这种相互作用的破坏增加了磷酸转移酶的活性,促进了膜的结合,并引起了磷酸转移酶非依赖性的细胞形态改变。因此,Src 的 SH4 结构域作为一种分子内调节剂,连接着催化活性、整体构象和定位,以及介导磷酸转移酶非依赖性的功能。序列保守性表明,SH4 结构域的调节相互作用存在于其他Src 家族激酶中。我们的综合方法能够揭示一种在研究最充分的激酶之一中的调节机制,这表明它可以广泛应用于深入了解激酶的结构、调节和功能。