Matsubayashi Hideaki, Mountain Jack, Yao Tony, Peterson Amy, Roy Abhijit Deb, Inoue Takanari
Johns Hopkins University.
Res Sq. 2023 Jan 20:rs.3.rs-2432041. doi: 10.21203/rs.3.rs-2432041/v1.
Class IA phosphoinositide 3-kinase (PI3K) galvanizes fundamental cellular processes such as migration, proliferation, and differentiation. To enable multifaceted roles, the catalytic subunit p110 utilizes a multi-domain, regulatory subunit p85 through its inter SH2 domain (iSH2). In cell migration, their product PI(3,4,5)P generates locomotive activity. While non-catalytic roles are also implicated, underlying mechanisms and its relationship to PI(3,4,5)P signaling remain elusive. Here, we report that a disordered region of iSH2 contains previously uncharacterized AP-2 binding motifs which can trigger clathrin and dynamin-mediated endocytosis independent of PI3K catalytic activity. The AP-2 binding motif mutants of p85 aberrantly accumulate at focal adhesions and upregulate both velocity and persistency in fibroblast migration. We thus propose the dual functionality of PI3K in the control of cell motility, catalytic and non-catalytic, arising distinctly from juxtaposed regions within iSH2.
IA类磷酸肌醇3-激酶(PI3K)促进细胞迁移、增殖和分化等基本细胞过程。为发挥多方面作用,催化亚基p110通过其内部SH2结构域(iSH2)与多结构域调节亚基p85结合。在细胞迁移中,其产物PI(3,4,5)P产生运动活性。虽然非催化作用也有涉及,但其潜在机制及其与PI(3,4,5)P信号传导的关系仍不清楚。在这里,我们报告iSH2的一个无序区域包含以前未表征的AP-2结合基序,其可独立于PI3K催化活性触发网格蛋白和发动蛋白介导的内吞作用。p85的AP-2结合基序突变体在粘着斑异常积累,并上调成纤维细胞迁移的速度和持续性。因此,我们提出PI3K在控制细胞运动性方面具有双重功能,即催化和非催化功能,分别源自iSH2内相邻区域。