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Cyclin-mediated inhibition of muscle gene expression via a mechanism that is independent of pRB hyperphosphorylation.

机译:细胞周期蛋白介导的肌肉基因表达抑制其机制与pRB过度磷酸化无关。

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摘要

It was recently demonstrated that ectopic expression of cyclin D1 inhibits skeletal muscle differentiation and, conversely, that expression of cyclin-dependent kinase (cdk) inhibitors facilitates activation of this differentiation program (S. S. Rao, C. Chu, and D. S. Kohtz, Mol. Cell. Biol. 14:5259-5267, 1994; S. S. Rao and D. S. Kohtz, J. Biol. Chem. 270:4093-4100, 1995; S. X. Skapek, J. Rhee, D. B. Spicer, and A. B. Lassar, Science 267:1022-1024, 1995). Here we demonstrate that cyclin D1 inhibits muscle gene expression without affecting MyoD DNA binding activity. Ectopic expression of cyclin D1 inhibits muscle gene activation by both MyoD and myogenin, including a mutated form of myogenin in which two potential inhibitory cdk phosphorylation sites are absent. Because the retinoblastoma gene product, pRB, is a known target for cyclin D1-cdk phosphorylation, we determined whether cyclin D1-mediated inhibition of myogenesis was due to hyperphosphorylation of pRB. In pRB-deficient fibroblasts, the ability of MyoD to activate the expression of muscle-specific genes requires coexpression of ectopic pRB (B. G. Novitch, G. J. Mulligan, T. Jacks, and A. B. Lassar, J. Cell Biol., 135:441-456, 1996). In these cells, the expression of cyclins A and E can lead to pRB hyperphosphorylation and can inhibit muscle gene expression. The negative effects of cyclins A or E on muscle gene expression are, however, reversed by the presence of a mutated form of pRB which cannot be hyperphosphorylated. In contrast, cyclin D1 can inhibit muscle gene expression in the presence of the nonhyperphosphorylatable form of pRB. On the basis of these results we propose that G1 cyclin-cdk activity blocks the initiation of skeletal muscle differentiation by two distinct mechanisms: one that is dependent on pRB hyperphosphorylation and one that is independent of pRB hyperphosphorylation.
机译:最近证明,细胞周期蛋白D1的异位表达抑制骨骼肌的分化,相反,细胞周期蛋白依赖性激酶(cdk)抑制剂的表达促进了该分化程序的激活(SS Rao,C。Chu和DS Kohtz,Mol。Cell) ,Biol.14:5259-5267,1994; SS Rao和DS Kohtz,J.Biol.Chem.270:4093-4100,1995; SX Skapek,J.Rhee,DB Spicer和AB Lassar,Science 267:1022-。 1024,1995)。在这里,我们证明细胞周期蛋白D1抑制肌肉基因表达而不影响MyoD DNA结合活性。 cyclin D1的异位表达抑制了MyoD和Myogenin的肌肉基因激活,包括突变的Myogenin形式,其中没有两个潜在的抑制性cdk磷酸化位点。由于视网膜母细胞瘤基因产物pRB是细胞周期蛋白D1-cdk磷酸化的已知靶标,因此我们确定了细胞周期蛋白D1介导的肌发生抑制是否是由于pRB的过度磷酸化引起的。在缺乏pRB的成纤维细胞中,MyoD激活肌肉特异性基因表达的能力需要异位pRB的共表达(BG Novitch,GJ Mulligan,T。Jacks和AB Lassar,J。Cell Biol。,135:441-456 (1996)。在这些细胞中,细胞周期蛋白A和E的表达可导致pRB过度磷酸化并抑制肌肉基因的表达。然而,细胞周期蛋白A或E对肌肉基因表达的负面影响由于存在不能被过度磷酸化的突变形式的pRB而被逆转。相反,在非超磷酸化形式的pRB存在下,细胞周期蛋白D1可以抑制肌肉基因表达。根据这些结果,我们提出G1 cyclin-cdk活性通过两种不同的机制来阻止骨骼肌分化的启动:一种依赖于pRB过度磷酸化,另一种依赖于pRB过度磷酸化。

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