From the Departments of Molecular Pharmacology and.
Department of Biochemistry and Microbiology, University of Victoria, Victoria V8P 3E6, British Columba, Canada.
J Biol Chem. 2019 Mar 22;294(12):4621-4633. doi: 10.1074/jbc.RA118.006032. Epub 2019 Jan 18.
Phosphoinositide 3-kinase β (PI3Kβ) is regulated by receptor tyrosine kinases (RTKs), G protein-coupled receptors (GPCRs), and small GTPases such as Rac1 and Rab5. Our lab previously identified two residues (Gln and Ile) in the helical domain of the catalytic subunit (p110β) of PI3Kβ whose mutation disrupts binding to Rab5. To better define the Rab5-p110β interface, we performed alanine-scanning mutagenesis and analyzed Rab5 binding with an pulldown assay with GST-Rab5 Of the 35 p110β helical domain mutants assayed, 11 disrupted binding to Rab5 without affecting Rac1 binding, basal lipid kinase activity, or Gβγ-stimulated kinase activity. These mutants defined the Rab5-binding interface within p110β as consisting of two perpendicular α-helices in the helical domain that are adjacent to the initially identified Gln and Ile residues. Analysis of the Rab5-PI3Kβ interaction by hydrogen-deuterium exchange MS identified p110β peptides that overlap with these helices; no interactions were detected between Rab5 and other regions of p110β or p85α. Similarly, the binding of Rab5 to isolated p85α could not be detected, and mutations in the Ras-binding domain (RBD) of p110β had no effect on Rab5 binding. Whereas soluble Rab5 did not affect PI3Kβ activity , the interaction of these two proteins was critical for chemotaxis, invasion, and gelatin degradation by breast cancer cells. Our results define a single, discrete Rab5-binding site in the p110β helical domain, which may be useful for generating inhibitors to better define the physiological role of Rab5-PI3Kβ coupling .
磷酸肌醇 3-激酶 β(PI3Kβ)受受体酪氨酸激酶(RTKs)、G 蛋白偶联受体(GPCRs)和小 GTP 酶(如 Rac1 和 Rab5)调节。我们实验室之前鉴定了 PI3Kβ 催化亚基(p110β)螺旋域中的两个残基(Gln 和 Ile),其突变会破坏与 Rab5 的结合。为了更好地定义 Rab5-p110β 界面,我们进行了丙氨酸扫描突变,并通过 GST-Rab5 pulldown 分析了 Rab5 的结合。在所分析的 35 个 p110β 螺旋域突变体中,有 11 个突变体破坏了与 Rab5 的结合,而不影响 Rac1 结合、基础脂质激酶活性或 Gβγ 刺激的激酶活性。这些突变体将 p110β 中的 Rab5 结合界面定义为螺旋域中两个相邻的垂直α-螺旋,与最初鉴定的 Gln 和 Ile 残基相邻。通过氢氘交换 MS 对 Rab5-PI3Kβ 相互作用进行分析,确定了与这些螺旋重叠的 p110β 肽;在 p110β 或 p85α 的其他区域未检测到 Rab5 与其他区域之间的相互作用。同样,也无法检测到 Rab5 与分离的 p85α 的结合,并且 p110β 的 Ras 结合结构域(RBD)中的突变对 Rab5 结合没有影响。虽然可溶性 Rab5 不会影响 PI3Kβ 活性,但这两种蛋白质的相互作用对于乳腺癌细胞的趋化性、侵袭和明胶降解至关重要。我们的结果定义了 p110β 螺旋域中的一个单一、离散的 Rab5 结合位点,这可能有助于生成抑制剂以更好地定义 Rab5-PI3Kβ 偶联的生理作用。