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NOV/CCN3 Induces Adhesion of Muscle Skeletal Cells and Cooperates with FGF2 and IGF-1 to Promote Proliferation and Survival

机译:NOV / CCN3诱导骨骼肌细胞粘附并与FGF2和IGF-1协同促进增殖和存活

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摘要

During mammalian development, expression of the Nephroblastoma overexpressed gene (NOV/CCN3) is tightly regulated in skeletal muscles. Ex vivo, ectopic expression of NOV blocks myogenic differentiation. NOV also supports endothelial cell adhesion and angiogenesis through interactions with integrins. Integrins play fundamental roles during myogenesis. In this study, we show that NOV mediates adhesion and spreading of myoblasts. Myoblasts adhesion to NOV does not require proteoglycans and is dependent on integrin β1, whereas spreading involves another RGD-sensitive integrin. The C-Terminal part of NOV as well as full-length is able to support adhesion of myoblasts; in addition, both increase focal-adhesion kinase (FAK) phosphorylation. Furthermore, NOV is an adhesive substrate that, combined with FGF2 or IGF-1, promotes cell specific proliferation and survival, respectively, in a better way than fibronectin. Taken together, these results identify NOV as an adhesion substrate for myoblasts which, in concert with growth factors, could play a role in the physiology of muscle cells.
机译:在哺乳动物发育过程中,骨骼肌中肾母细胞瘤过度表达的基因(NOV / CCN3)的表达受到严格调节。离体,NOV的异位表达阻止肌源性分化。 NOV还通过与整合素相互作用来支持内皮细胞粘附和血管生成。整联蛋白在肌发生过程中起基本作用。在这项研究中,我们显示NOV介导成肌细胞的粘附和扩散。成肌细胞对NOV的粘附不需要蛋白聚糖,并且依赖于整联蛋白β1,而扩散涉及另一种RGD敏感的整联蛋白。 NOV的C末端部分以及全长能够支持成肌细胞的粘附;此外,两者都增加了粘着斑激酶(FAK)的磷酸化。此外,NOV是一种与FGF2或IGF-1结合的粘合底物,分别比纤连蛋白更好地促进细胞特异性增殖和存活。综上所述,这些结果确定了NOV是成肌细胞的粘附底物,其与生长因子协同作用可能在肌肉细胞的生理学中起作用。

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