Silverman L A, Cheng Z Q, Hsiao D, Rosenthal S M
Department of Pediatrics, University of California, San Francisco 94143.
Endocrinology. 1995 Feb;136(2):720-6. doi: 10.1210/endo.136.2.7530651.
The insulin-like growth factors (IGFs) stimulate the differentiation of skeletal muscle cells. IGF binding proteins (IGFBPs), which are expressed by skeletal muscle cells, may enhance or inhibit IGF actions. To explore the role of skeletal muscle-derived IGFBPs in IGF-induced myogenesis, we compared the differentiation-inducing effects of IGF-I and des(1-3)IGF-I in rat L6E9 skeletal myoblasts. Des(1-3)IGF-I is a naturally occurring IGF-I analog with markedly reduced affinity for IGFBPs but with an affinity for the IGF-I receptor that is comparable to that for native IGF-I. We find that rat L6E9 cells produce principally IGFBP-4 and BP-6, with a minor component of IGFBP-5. Both IGFBP-4 and BP-6 accumulate during differentiation and increase further in response to IGF-I or des(1-3)IGF-I treatment. We find that an IGF-I analog with reduced affinity for IGFBPs is significantly more potent than native IGF-I in stimulating myogenesis (as assessed by myogenin messenger RNA abundance and muscle creatine kinase activity), indicating that IGFBPs expressed by skeletal muscle cells inhibit differentiation induced by IGF-I. In view of the relative abundance of IGFBP-4, its relatively high affinity for IGF-I and the low affinity of IGFBP-6 for IGF-I, it is likely that the inhibitory effect of rat skeletal muscle-derived IGFBPs on IGF-I-induced myogenesis is mediated principally by IGFBP-4.
胰岛素样生长因子(IGFs)可刺激骨骼肌细胞的分化。骨骼肌细胞表达的IGF结合蛋白(IGFBPs)可能增强或抑制IGF的作用。为了探究骨骼肌来源的IGFBPs在IGF诱导的肌生成中的作用,我们比较了IGF-I和去(1-3)IGF-I对大鼠L6E9骨骼肌成肌细胞的分化诱导作用。去(1-3)IGF-I是一种天然存在的IGF-I类似物,它对IGFBPs的亲和力显著降低,但对IGF-I受体的亲和力与天然IGF-I相当。我们发现大鼠L6E9细胞主要产生IGFBP-4和BP-6,还有少量的IGFBP-5。在分化过程中,IGFBP-4和BP-6均会积累,并且在IGF-I或去(1-3)IGF-I处理后进一步增加。我们发现,一种对IGFBPs亲和力降低的IGF-I类似物在刺激肌生成方面(通过肌细胞生成素信使RNA丰度和肌肉肌酸激酶活性评估)比天然IGF-I显著更有效,这表明骨骼肌细胞表达的IGFBPs会抑制IGF-I诱导的分化。鉴于IGFBP-4的相对丰度、其对IGF-I相对较高的亲和力以及IGFBP-6对IGF-I的低亲和力,大鼠骨骼肌来源的IGFBPs对IGF-I诱导的肌生成的抑制作用可能主要由IGFBP-4介导。