Ikonomov Ognian C, Sbrissa Diego, Mlak Krzysztof, Shisheva Assia
Department of Physiology, Wayne State University School of Medicine, Detroit, Michigan 48201, USA.
Endocrinology. 2002 Dec;143(12):4742-54. doi: 10.1210/en.2002-220615.
PIKfyve is a phosphoinositide 5-kinase that can also act as a protein kinase. PIKfyve's role in acute insulin action has been suggested on the basis of its association with the insulin stimulatable phosphatidylinositol-3-kinase and the ability of acute insulin to recruit and phosphorylate PIKfyve on intracellular membranes of 3T3-L1 adipocytes. Here we have examined several classical insulin-regulated long- and short-term responses in insulin-sensitive cells expressing high levels of either active PIKfyve or kinase-dead mutants with a dominant-negative effect. Up-regulation of PIKfyve protein expression was documented in the early stages of differentiation of cultured 3T3-L1 fibroblasts into adipocytes and a kinase-dead mutant, PIKfyveDeltaK, introduced into the preadipocyte stage profoundly delayed the hormone-induced adipogenesis. Next, insulin-induced mitogenesis was markedly inhibited in HEK293 stable cell lines, inducibly expressing the dominant-negative kinase-dead PIKfyve(K1831E) mutant but not in cells expressing PIKfyve(WT). Similarly, expression of the dominant negative mutants PIKfyve(K1831E) or PIKfyveDeltaK strongly inhibited insulin-stimulated translocation of GLUT4 in 3T3-L1 adipocytes, or GLUT1-mediated glucose uptake in Chinese hamster ovary T cells expressing the human insulin receptor. Expression of PIKfyveDeltaK and PIKfyve(WT) in Chinese hamster ovary T cells decreased or increased, respectively, insulin-stimulated Akt phosphorylation at Ser473 but not at Thr308. Furthermore, a powerful inhibition of PIKfyve was documented at a very low concentration (ID(50) = 6 micro M) of the cell-permeable kinase inhibitor curcumin. When introduced into 3T3-L1 adipocytes, curcumin markedly inhibited insulin-induced GLUT4 translocation and glucose transport. Together these data indicate that PIKfyve enzymatic activity functions as a positive regulatory intermediate in insulin acute and long-term biological responses and identify Ser473 in Akt as one potential PIKfyve downstream target.
PIKfyve是一种磷酸肌醇5激酶,也可作为蛋白激酶发挥作用。基于其与胰岛素刺激的磷脂酰肌醇-3激酶的关联以及急性胰岛素在3T3-L1脂肪细胞内膜上募集和磷酸化PIKfyve的能力,有人提出了PIKfyve在急性胰岛素作用中的作用。在此,我们研究了在表达高水平活性PIKfyve或具有显性负效应的激酶失活突变体的胰岛素敏感细胞中几种经典的胰岛素调节的长期和短期反应。在培养的3T3-L1成纤维细胞分化为脂肪细胞的早期阶段,记录到PIKfyve蛋白表达上调,而引入前脂肪细胞阶段的激酶失活突变体PIKfyveDeltaK显著延迟了激素诱导的脂肪生成。接下来,在可诱导表达显性负激酶失活PIKfyve(K1831E)突变体的HEK293稳定细胞系中,胰岛素诱导的有丝分裂显著受到抑制,但在表达PIKfyve(WT)的细胞中未受抑制。同样,显性负突变体PIKfyve(K1831E)或PIKfyveDeltaK的表达强烈抑制了3T3-L1脂肪细胞中胰岛素刺激的GLUT4转位,或表达人胰岛素受体的中国仓鼠卵巢T细胞中GLUT1介导的葡萄糖摄取。PIKfyveDeltaK和PIKfyve(WT)在中国仓鼠卵巢T细胞中的表达分别降低或增加了胰岛素刺激的Akt在Ser473而非Thr308处的磷酸化。此外,在细胞可渗透的激酶抑制剂姜黄素的极低浓度(ID(50)=6μM)下,记录到对PIKfyve的强烈抑制。当引入3T3-L1脂肪细胞时,姜黄素显著抑制胰岛素诱导的GLUT4转位和葡萄糖转运。这些数据共同表明,PIKfyve酶活性在胰岛素急性和长期生物学反应中作为正调节中间体发挥作用,并确定Akt中的Ser473为PIKfyve的一个潜在下游靶点。