Mogessie Binyam, Roth Daniel, Rahil Zainab, Straube Anne
Centre for Mechanochemical Cell Biology, Warwick Medical School, University of Warwick, Coventry, United Kingdom.
Elife. 2015 Apr 21;4:e05697. doi: 10.7554/eLife.05697.
The microtubule cytoskeleton is critical for muscle cell differentiation and undergoes reorganisation into an array of paraxial microtubules, which serves as template for contractile sarcomere formation. In this study, we identify a previously uncharacterised isoform of microtubule-associated protein MAP4, oMAP4, as a microtubule organising factor that is crucial for myogenesis. We show that oMAP4 is expressed upon muscle cell differentiation and is the only MAP4 isoform essential for normal progression of the myogenic differentiation programme. Depletion of oMAP4 impairs cell elongation and cell-cell fusion. Most notably, oMAP4 is required for paraxial microtubule organisation in muscle cells and prevents dynein- and kinesin-driven microtubule-microtubule sliding. Purified oMAP4 aligns dynamic microtubules into antiparallel bundles that withstand motor forces in vitro. We propose a model in which the cooperation of dynein-mediated microtubule transport and oMAP4-mediated zippering of microtubules drives formation of a paraxial microtubule array that provides critical support for the polarisation and elongation of myotubes.
微管细胞骨架对于肌肉细胞分化至关重要,并会重新组织形成一系列近轴微管,这些微管作为收缩性肌节形成的模板。在本研究中,我们鉴定出一种先前未被表征的微管相关蛋白MAP4的异构体oMAP4,它是一种对肌生成至关重要的微管组织因子。我们发现oMAP4在肌肉细胞分化时表达,并且是肌源性分化程序正常进展所必需的唯一MAP4异构体。oMAP4的缺失会损害细胞伸长和细胞间融合。最值得注意的是,oMAP4是肌肉细胞中近轴微管组织所必需的,并且可防止动力蛋白和驱动蛋白驱动的微管-微管滑动。纯化的oMAP4可将动态微管排列成在体外能承受动力的反平行束。我们提出了一个模型,其中动力蛋白介导的微管运输与oMAP4介导的微管拉链作用协同驱动近轴微管阵列的形成,该阵列对肌管的极化和伸长提供关键支持。