Sbrissa D, Ikonomov O, Shisheva A
Department of Physiology, Wayne State University School of Medicine, 4237 Scott Mall, 540 E. Canfield, Detroit, MI 48201, USA.
Mol Cell Endocrinol. 2001 Jul 5;181(1-2):35-46. doi: 10.1016/s0303-7207(01)00539-1.
A diverse range of insulin-regulated cellular processes are dependent on class I(A) phosphatidylinositol 3-kinases (PI 3-Ks) and their association with and activation by up-stream signaling molecules. Here we report on the identification of the phosphoinositide 5'-kinase PIKfyve as a partner of class I(A) PI 3-K. Thus, both p85 and p110 subunits (class I(A)) of PI 3-Ks co-precipitated with anti-PIKfyve antibodies from lysates of resting 3T3-L1 adipocytes and, vice versa, PIKfyve co-precipitated with anti-p85 PI 3-K antibodies. Assignment to class I(A) PI 3-K enzymatic activity was further substantiated by the inhibition of PtdIns 3-P production in PIKfyve immune complexes by low concentrations of wortmannin and Triton X-100, and its preferences for Mg(2+) versus Mn(2+). Insulin but not PDGF or EGF stimulation of 3T3-L1 adipocytes markedly increased the PtdIns 3-P production (4.2-fold) in PIKfyve immune complexes, primarily as a result of increased PI 3-K intrinsic enzymatic activity. Intriguingly, while both insulin and PDGF caused an increase of class I(A) PI 3-K activity co-immunoprecipitated with tyrosine phosphorylated proteins, only insulin treatment yielded an activation of class I(A) PI 3-K in PIKfyve immune complexes. Studies aiming at identifying the underlying mechanism revealed that PIKfyve-class I(A) PI 3-K association and the insulin-induced activation likely operate independently of tyrosine phosphorylated insulin receptor substrate proteins. Together, these results establish PIKfyve as a novel source of activated class I(A) PI 3-K molecules that may be relevant in the insulin-signal transduction pathway.
多种胰岛素调节的细胞过程依赖于I(A)类磷脂酰肌醇3激酶(PI 3-Ks)及其与上游信号分子的结合和激活。在此,我们报告了磷酸肌醇5'-激酶PIKfyve作为I(A)类PI 3-K的一个伙伴的鉴定。因此,PI 3-Ks的p85和p110亚基(I(A)类)与抗PIKfyve抗体从静止的3T3-L1脂肪细胞裂解物中共沉淀,反之亦然,PIKfyve与抗p85 PI 3-K抗体共沉淀。低浓度的渥曼青霉素和 Triton X-100对PIKfyve免疫复合物中磷脂酰肌醇3-磷酸(PtdIns 3-P)产生的抑制作用及其对Mg(2+) 相对于Mn(2+) 的偏好,进一步证实了其属于I(A)类PI 3-K酶活性。胰岛素而非血小板衍生生长因子(PDGF)或表皮生长因子(EGF)刺激3T3-L1脂肪细胞显著增加了PIKfyve免疫复合物中PtdIns 3-P的产生(4.2倍),这主要是由于PI 3-K内在酶活性增加所致。有趣的是,虽然胰岛素和PDGF都导致与酪氨酸磷酸化蛋白共免疫沉淀的I(A)类PI 3-K活性增加,但只有胰岛素处理能激活PIKfyve免疫复合物中的I(A)类PI 3-K。旨在确定潜在机制的研究表明,PIKfyve-I(A)类PI 3-K的结合以及胰岛素诱导的激活可能独立于酪氨酸磷酸化的胰岛素受体底物蛋白发挥作用。总之,这些结果确立了PIKfyve作为I(A)类PI 3-K活化分子的新来源,可能与胰岛素信号转导途径相关。