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Mef2s是新生肌纤维中粗肌丝形成所必需的。

Mef2s are required for thick filament formation in nascent muscle fibres.

作者信息

Hinits Yaniv, Hughes Simon M

机构信息

MRC Centre for Developmental Neurobiology and Randall Division for Cell and Molecular Biophysics, New Hunt's House, Guy's Campus, King's College London, London SE1 1UL, UK.

出版信息

Development. 2007 Jul;134(13):2511-9. doi: 10.1242/dev.007088. Epub 2007 May 30.

Abstract

During skeletal muscle differentiation, the actomyosin motor is assembled into myofibrils, multiprotein machines that generate and transmit force to cell ends. How expression of muscle proteins is coordinated to build the myofibril is unknown. Here we show that zebrafish Mef2d and Mef2c proteins are required redundantly for assembly of myosin-containing thick filaments in nascent muscle fibres, but not for the earlier steps of skeletal muscle fibre differentiation, elongation, fusion or thin filament gene expression. mef2d mRNA and protein is present in myoblasts, whereas mef2c expression commences in muscle fibres. Knockdown of both Mef2s with antisense morpholino oligonucleotides or in mutant fish blocks muscle function and prevents sarcomere assembly. Cell transplantation and heat-shock-driven rescue reveal a cell-autonomous requirement for Mef2 within fibres. In nascent fibres, Mef2 drives expression of genes encoding thick, but not thin, filament proteins. Among genes analysed, myosin heavy and light chains and myosin-binding protein C require Mef2 for normal expression, whereas actin, tropomyosin and troponin do not. Our findings show that Mef2 controls skeletal muscle formation after terminal differentiation and define a new maturation step in vertebrate skeletal muscle development at which thick filament gene expression is controlled.

摘要

在骨骼肌分化过程中,肌动球蛋白马达组装成肌原纤维,这是一种多蛋白机器,可产生并将力传递至细胞末端。肌肉蛋白的表达如何协调以构建肌原纤维尚不清楚。在此,我们表明斑马鱼的Mef2d和Mef2c蛋白在新生肌纤维中组装含肌球蛋白的粗肌丝时发挥冗余作用,但对骨骼肌纤维分化、伸长、融合或细肌丝基因表达的早期步骤并非必需。mef2d mRNA和蛋白存在于成肌细胞中,而mef2c的表达始于肌纤维。用反义吗啉代寡核苷酸或在突变鱼中敲低这两种Mef2会阻碍肌肉功能并阻止肌节组装。细胞移植和热休克驱动的拯救实验揭示了纤维内对Mef2的细胞自主性需求。在新生纤维中,Mef2驱动编码粗肌丝而非细肌丝蛋白的基因表达。在所分析的基因中,肌球蛋白重链和轻链以及肌球蛋白结合蛋白C的正常表达需要Mef2,而肌动蛋白、原肌球蛋白和肌钙蛋白则不需要。我们的研究结果表明,Mef2在终末分化后控制骨骼肌形成,并确定了脊椎动物骨骼肌发育中的一个新的成熟步骤,即在此步骤中粗肌丝基因表达受到控制。

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