Department of Medicine, Helen Diller Family Comprehensive Cancer Center, University of California, San Francisco, San Francisco, CA 94143, USA.
Department of Medicine, Helen Diller Family Comprehensive Cancer Center, University of California, San Francisco, San Francisco, CA 94143, USA.
Cell Rep. 2018 Oct 9;25(2):449-463.e4. doi: 10.1016/j.celrep.2018.09.035.
The mode of regulation of Src kinases has been elucidated by crystallographic studies identifying conserved structured protein modules involved in an orderly set of intramolecular associations and ligand interactions. Despite these detailed insights, much of the complex behavior and diversity in the Src family remains unexplained. A key missing piece is the function of the unstructured N-terminal region. We report here the function of the N-terminal region in binding within a hydrophobic pocket in the kinase domain of a dimerization partner. Dimerization substantially enhances autophosphorylation and phosphorylation of selected substrates, and interfering with dimerization is disruptive to these functions. Dimerization and Y419 phosphorylation are codependent events creating a bistable switch. Given the versatility inherent in this intrinsically disordered region, its multisite phosphorylations, and its divergence within the family, the unique domain likely functions as a central signaling hub overseeing much of the activities and unique functions of Src family kinases.
Src 激酶的调节模式已经通过晶体学研究得以阐明,这些研究确定了参与有序的分子内关联和配体相互作用的保守结构蛋白模块。尽管有了这些详细的见解,但 Src 家族的许多复杂行为和多样性仍然无法解释。一个关键的缺失部分是无结构的 N 端区域的功能。我们在这里报告 N 端区域在与二聚化伙伴的激酶结构域中的疏水口袋结合中的功能。二聚化大大增强了自身磷酸化和选定底物的磷酸化,干扰二聚化会破坏这些功能。二聚化和 Y419 磷酸化是相互依存的事件,形成双稳态开关。鉴于该固有无序区域所具有的多功能性、其多部位磷酸化以及家族内的差异,该独特结构域可能作为一个中央信号枢纽,监督 Src 家族激酶的大部分活性和独特功能。