Chakravarthy M V, Abraha T W, Schwartz R J, Fiorotto M L, Booth F W
Department of Integrative Biology, University of Texas Medical School, Houston, Texas 77030, USA.
J Biol Chem. 2000 Nov 17;275(46):35942-52. doi: 10.1074/jbc.M005832200.
Interest is growing in methods to extend replicative life span of non-immortalized stem cells. Using the insulin-like growth factor I (IGF-I) transgenic mouse in which the IGF-I transgene is expressed during skeletal muscle development and maturation prior to isolation and during culture of satellite cells (the myogenic stem cells of mature skeletal muscle fibers) as a model system, we elucidated the underlying molecular mechanisms of IGF-I-mediated enhancement of proliferative potential of these cells. Satellite cells from IGF-I transgenic muscles achieved at least five additional population doublings above the maximum that was attained by wild type satellite cells. This IGF-I-induced increase in proliferative potential was mediated via activation of the phosphatidylinositol 3'-kinase/Akt pathway, independent of mitogen-activated protein kinase activity, facilitating G(1)/S cell cycle progression via a down-regulation of p27(Kip1). Adenovirally mediated ectopic overexpression of p27(Kip1) in exponentially growing IGF-I transgenic satellite cells reversed the increase in cyclin E-cdk2 kinase activity, pRb phosphorylation, and cyclin A protein abundance, thereby implicating an important role for p27(Kip1) in promoting satellite cell senescence. These observations provide a more complete dissection of molecular events by which increased local expression of a growth factor in mature skeletal muscle fibers extends replicative life span of primary stem cells than previously known.
人们对延长非永生化干细胞复制寿命的方法的兴趣与日俱增。我们使用胰岛素样生长因子I(IGF-I)转基因小鼠作为模型系统,在该模型中,IGF-I转基因在骨骼肌发育和成熟过程中表达,即在分离卫星细胞(成熟骨骼肌纤维的生肌干细胞)之前以及培养过程中表达。我们阐明了IGF-I介导的这些细胞增殖潜能增强的潜在分子机制。来自IGF-I转基因肌肉的卫星细胞比野生型卫星细胞达到的最大值至少多实现了五次群体倍增。这种由IGF-I诱导的增殖潜能增加是通过磷脂酰肌醇3'-激酶/Akt途径的激活介导的,与丝裂原活化蛋白激酶活性无关,通过下调p27(Kip1)促进G(1)/S细胞周期进程。在指数生长的IGF-I转基因卫星细胞中,腺病毒介导的p27(Kip1)异位过表达逆转了细胞周期蛋白E-cdk2激酶活性、pRb磷酸化和细胞周期蛋白A蛋白丰度的增加,从而暗示p27(Kip1)在促进卫星细胞衰老中起重要作用。这些观察结果比以前所知的更完整地剖析了成熟骨骼肌纤维中生长因子局部表达增加延长原代干细胞复制寿命的分子事件。