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α7整合素缺陷小鼠中c-Raf-1激酶信号转导通路的激活

Activation of c-Raf-1 kinase signal transduction pathway in alpha(7) integrin-deficient mice.

作者信息

Saher G, Hildt E

机构信息

Max-Planck-Institut für Biochemie, Am Klopferspitz 18a, D-82152 Martinsried, Germany.

出版信息

J Biol Chem. 1999 Sep 24;274(39):27651-7. doi: 10.1074/jbc.274.39.27651.

Abstract

Integrin alpha(7)-deficient mice develop a novel form of muscular dystrophy. Here we report that deficiency of alpha(7) integrin causes an activation of the c-Raf-1/mitogen-activated protein (MAP) 2 kinase signal transduction pathway in muscle cells. The observed activation of c-Raf-1/MAP2 kinases is a specific effect, because the alpha(7) integrin deficiency does not cause unspecific stress as determined by measurement of the Hsp72/73 level and activity of the JNK2 kinase. Because an increased level of activated FAK was found in muscle of alpha(7) integrin-deficient mice, the activation of c-Raf-1 kinase is triggered most likely by an integrin-dependent pathway. In accordance with this, in the integrin alpha(7)-deficient mice, part of the integrin beta(1D) variant in muscle is replaced by the beta(1A) variant, which permits the FAK activation. A recent report describes that integrin activity can be down-modulated by the c-Raf-1/MAP2 kinase pathway. Specific activation of the c-Raf-1/MAP2 kinases by cell-permeable peptides in skeletal muscle of rabbits causes degeneration of muscle fibers. Therefore, we conclude that in alpha(7) integrin-deficient mice, the continuous activation of c-Raf-1 kinase causes a permanent reduction of integrin activity diminishing integrin-dependent cell-matrix interactions and thereby contributing to the development of the dystrophic phenotype.

摘要

整合素α(7)缺陷型小鼠会发展出一种新型的肌肉萎缩症。在此我们报告,α(7)整合素的缺陷会导致肌肉细胞中c-Raf-1/丝裂原活化蛋白(MAP)2激酶信号转导通路的激活。观察到的c-Raf-1/MAP2激酶的激活是一种特异性效应,因为通过测量Hsp72/73水平和JNK2激酶的活性确定,α(7)整合素缺陷不会引起非特异性应激。由于在α(7)整合素缺陷型小鼠的肌肉中发现活化的黏着斑激酶(FAK)水平升高,c-Raf-1激酶的激活很可能是由一条整合素依赖性途径触发的。与此一致的是,在整合素α(7)缺陷型小鼠中,肌肉中的部分整合素β(OD)变体被β(1A)变体取代,这使得FAK能够被激活。最近的一份报告描述了整合素活性可被c-Raf-1/MAP2激酶途径下调。在兔骨骼肌中,细胞可渗透肽对c-Raf-1/MAP2激酶的特异性激活会导致肌纤维变性。因此,我们得出结论,在α(7)整合素缺陷型小鼠中,c-Raf-1激酶的持续激活会导致整合素活性的永久性降低,减少整合素依赖性细胞与基质的相互作用,从而导致营养不良表型的发展。

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