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再生骨骼肌中缺乏肌分化抗原(MyoD)会影响基底膜、细胞外基质和整合素分子的表达模式,这与肌管形成延迟是一致的。

The absence of MyoD in regenerating skeletal muscle affects the expression pattern of basement membrane, interstitial matrix and integrin molecules that is consistent with delayed myotube formation.

作者信息

Huijbregts J, White J D, Grounds M D

机构信息

Department of Anatomy and Human Biology, The University of Western Australia, Crawley, Australia.

出版信息

Acta Histochem. 2001 Oct;103(4):379-96. doi: 10.1078/0065-1281-00607.

Abstract

MyoD is a member of a skeletal muscle specific family of transcription factors which directs the events of myogenesis during development and regeneration. Muscle cells that lack MyoD show delayed fusion in vivo and in vitro and defects have been observed in vitro in the attachment of MyoD(-/-) myoblasts to complex substrates such as Matrigel. Since interactions with the extracellular matrix (ECM) are important during myoblast fusion (i. e. myotube formation), it was hypothesised that expression of ECM molecules or their receptors may be altered in MyoD(-/-) muscle. The production of basement membrane molecules such as collagen type IV and several laminins, the interstitial molecules fibronectin and tenascin-C, and the cell surface molecules integrin alpha5 and alpha6 were quantitated in vitro using ELISA on cultured cells from MyoD(-/-) and wild type mice. Differences were observed in the production of fibronectin, tenascin-C, collagen type IV, laminin-1 and integrin alpha5 between control and MyoD(-/-) myotubes in vitro. This corresponded with delayed fusion of myoblasts in MyoD(-/-) cultures. On the basis of these findings with respect to matrix expression in vitro, fluorescent immunohistochemistry was carried out on adult whole muscle autografts to examine whether the expression of these molecules, as well as integrin alpha7, was altered in the complex in vivo environment. Some minor differences in expression patterns were observed in MyoD(-/-) as compared to normal BALB/c autografts. The overall expression of matrix components was consistent with the delayed onset of myotube formation. These results suggest that the delay in myotube formation in MyoD(-/-) muscle is not a direct result of altered expression of the matrix molecules collagen type IV, laminins, fibronectin, tenascin-C, and integrins alpha5, alpha6 or alpha7.

摘要

肌分化抗原(MyoD)是骨骼肌特异性转录因子家族的成员之一,在发育和再生过程中指导肌生成事件。缺乏MyoD的肌肉细胞在体内和体外均表现出融合延迟,并且在体外观察到MyoD基因敲除(MyoD(-/-))的成肌细胞与复杂基质(如基质胶)附着时存在缺陷。由于在成肌细胞融合(即肌管形成)过程中与细胞外基质(ECM)的相互作用很重要,因此推测ECM分子或其受体的表达在MyoD(-/-)肌肉中可能会发生改变。使用酶联免疫吸附测定(ELISA)对来自MyoD(-/-)和野生型小鼠的培养细胞进行体外定量分析,检测基底膜分子(如IV型胶原和几种层粘连蛋白)、间质分子(纤连蛋白和腱生蛋白-C)以及细胞表面分子(整合素α5和α6)的产生情况。在体外,对照和MyoD(-/-)肌管之间在纤连蛋白、腱生蛋白-C、IV型胶原、层粘连蛋白-1和整合素α5的产生方面观察到差异。这与MyoD(-/-)培养物中成肌细胞融合延迟相对应。基于这些关于体外基质表达的研究结果,对成年全肌肉自体移植进行荧光免疫组织化学分析,以检查在复杂的体内环境中这些分子以及整合素α7的表达是否发生改变。与正常BALB/c自体移植相比,在MyoD(-/-)中观察到表达模式存在一些细微差异。基质成分的总体表达与肌管形成的延迟起始一致。这些结果表明,MyoD(-/-)肌肉中肌管形成延迟并非IV型胶原、层粘连蛋白、纤连蛋白、腱生蛋白-C以及整合素α5、α6或α7等基质分子表达改变的直接结果。

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