Kaliman P, Canicio J, Shepherd P R, Beeton C A, Testar X, Palacín M, Zorzano A
Departament de Bioquímica i Biologia Molecular, Facultat de Biologia, Universitat de Barcelona, Spain.
Mol Endocrinol. 1998 Jan;12(1):66-77. doi: 10.1210/mend.12.1.0047.
Phosphatidylinositol 3 (PI 3)-kinases are potently inhibited by two structurally unrelated membrane-permeant reagents: wortmannin and LY294002. By using these two inhibitors we first suggested the involvement of a PI 3-kinase activity in muscle cell differentiation. However, several reports have described that these compounds are not as selective for PI 3-kinase activity as assumed. Here we show that LY294002 blocks the myogenic pathway elicited by insulin-like growth factors (IGFs), and we confirm the specific involvement of PI 3-kinase in IGF-induced myogenesis by overexpressing in L6E9 myoblasts a dominant negative p85 PI 3-kinase-regulatory subunit (L6E9-delta p85). IGF-I, des(1-3)IGF-I, or IGF-II induced L6E9 skeletal muscle cell differentiation as measured by myotube formation, myogenin gene expression, and GLUT4 glucose carrier induction. The addition of LY294002 to the differentiation medium totally inhibited these IGF-induced myogenic events without altering the expression of a non-muscle-specific protein, beta1-integrin. Independent clones of L6E9 myoblasts expressing a dominant negative mutant of the p85-regulatory subunit (delta p85) showed markedly impaired glucose transport activity and formation of p85/p110 complexes in response to insulin, consistent with the inhibition of PI 3-kinase activity. IGF-induced myogenic parameters in L6E9-delta p85 cells, ie. cell fusion and myogenin gene and GLUT4 expression, were severely impaired compared with parental cells or L6E9 cells expressing wild-type p85. In all, data presented here indicate that PI 3-kinase is essential for IGF-induced muscle differentiation and that the specific PI 3-kinase subclass involved in myogenesis is the heterodimeric p85-p110 enzyme.
磷脂酰肌醇3(PI 3)激酶受到两种结构不相关的膜渗透性试剂的强烈抑制:渥曼青霉素和LY294002。通过使用这两种抑制剂,我们首先提出PI 3激酶活性参与肌肉细胞分化。然而,一些报告描述这些化合物对PI 3激酶活性的选择性并不像预期的那样高。在这里,我们表明LY294002阻断了胰岛素样生长因子(IGF)引发的成肌途径,并且我们通过在L6E9成肌细胞中过表达显性负性p85 PI 3激酶调节亚基(L6E9-δp85)证实了PI 3激酶在IGF诱导的肌生成中的特异性参与。通过肌管形成、肌细胞生成素基因表达和GLUT4葡萄糖载体诱导来测量,IGF-I、去(1-3)IGF-I或IGF-II诱导L6E9骨骼肌细胞分化。向分化培养基中添加LY294002完全抑制了这些IGF诱导的成肌事件,而不会改变非肌肉特异性蛋白β1整合素的表达。表达p85调节亚基显性负性突变体(δp85)的L6E9成肌细胞独立克隆显示,对胰岛素的葡萄糖转运活性和p85/p110复合物形成明显受损,这与PI 3激酶活性的抑制一致。与亲本细胞或表达野生型p85的L6E9细胞相比,L6E9-δp85细胞中IGF诱导的成肌参数,即细胞融合、肌细胞生成素基因和GLUT4表达,严重受损。总之,这里呈现的数据表明PI 3激酶对于IGF诱导的肌肉分化至关重要,并且参与肌生成的特定PI 3激酶亚类是异二聚体p85-p110酶。