Fernando Pasan, Sandoz Jacqueline S, Ding Wen, de Repentigny Yves, Brunette Steve, Kelly John F, Kothary Rashmi, Megeney Lynn A
The Sprott Center for Stem Cell Research, Regenerative Medicine Program, Ottawa, Ontario K1H 8L6, Canada.
J Biol Chem. 2009 Oct 2;284(40):27674-86. doi: 10.1074/jbc.M109.029538. Epub 2009 Jul 26.
In skeletal muscle development, the genes and regulatory factors that govern the specification of myocytes are well described. Despite this knowledge, the mechanisms that regulate the coordinated assembly of myofiber proteins into the functional contractile unit or sarcomere remain undefined. Here we explored the hypothesis that modular domain proteins such as Bin1 coordinate protein interactions to promote sarcomere formation. We demonstrate that Bin1 facilitates sarcomere organization through protein-protein interactions as mediated by the Src homology 3 (SH3) domain. We observed a profound disorder in myofiber size and structural organization in a murine model expressing the Bin1 SH3 region. In addition, satellite cell-derived myogenesis was limited despite the accumulation of skeletal muscle-specific proteins. Our experiments revealed that the Bin1 SH3 domain formed transient protein complexes with both actin and myosin filaments and the pro-myogenic kinase Cdk5. Bin1 also associated with a Cdk5 phosphorylation domain of titin. Collectively, these observations suggest that Bin1 displays protein scaffold-like properties and binds with sarcomeric factors important in directing sarcomere protein assembly and myofiber maturation.
在骨骼肌发育过程中,调控肌细胞特化的基因和调控因子已得到充分描述。尽管有这些知识,但调节肌纤维蛋白协调组装成功能性收缩单位或肌节的机制仍不明确。在这里,我们探讨了一个假说,即诸如Bin1等模块化结构域蛋白协调蛋白质相互作用以促进肌节形成。我们证明,Bin1通过由Src同源3(SH3)结构域介导的蛋白质-蛋白质相互作用促进肌节组织。我们在表达Bin1 SH3区域的小鼠模型中观察到肌纤维大小和结构组织的严重紊乱。此外,尽管骨骼肌特异性蛋白积累,但卫星细胞来源的肌生成受到限制。我们的实验表明,Bin1 SH3结构域与肌动蛋白丝、肌球蛋白丝以及促肌生成激酶Cdk5形成瞬时蛋白质复合物。Bin1还与肌联蛋白的Cdk5磷酸化结构域相关联。总体而言,这些观察结果表明,Bin1具有蛋白质支架样特性,并与在指导肌节蛋白组装和肌纤维成熟中起重要作用的肌节因子结合。