Pizon Véronique, Iakovenko Andrei, Van Der Ven Peter F M, Kelly Raymond, Fatu Cristina, Fürst Dieter O, Karsenti Eric, Gautel Mathias
European Molecular Biology Laboratory, Cell Biology Division, Heidelberg, Germany.
J Cell Sci. 2002 Dec 1;115(Pt 23):4469-82. doi: 10.1242/jcs.00131.
Assembly of muscle sarcomeres is a complex dynamic process and involves a large number of proteins. A growing number of these have regulatory functions and are transiently present in the myofibril. We show here that the novel tubulin-associated RING/B-box protein MURF2 associates transiently with microtubules, myosin and titin during sarcomere assembly. During sarcomere assembly, MURF2 first associates with microtubules at the exclusion of tyrosinated tubulin. Then, MURF2-labelled microtubules associate transiently with sarcomeric myosin and later with A-band titin when non-striated myofibrils differentiate into mature sarcomeres. Finally, MURF2 labelled microtubules disappear from the sarcomere after the incorporation of myosin filaments and the elongation of titin. This suggests that the incorporation of myosin into nascent sarcomeres and the elongation of titin require an active, microtubule-dependent transport process and that MURF2-associated microtubules play a role in the alignment and extension of nascent sarcomeres. MURF2 is expressed in at least four isoforms, of which a 27 kDa isoform is cardiac specific. A C-terminal isoform is generated by alternative reading frame use, a novelty in muscle proteins. In mature cardiac sarcomeres, endogenous MURF2 can associate with the M-band, and is translocated to the nucleus. MURF2 can therefore act as a transient adaptor between microtubules, titin and nascent myosin filaments, as well as being involved in signalling from the sarcomere to the nucleus.
肌节的组装是一个复杂的动态过程,涉及大量蛋白质。其中越来越多的蛋白质具有调节功能,并短暂存在于肌原纤维中。我们在此表明,新型微管蛋白相关的RING/B-box蛋白MURF2在肌节组装过程中与微管、肌球蛋白和肌联蛋白短暂结合。在肌节组装过程中,MURF2首先与微管结合,排斥酪氨酸化微管蛋白。然后,MURF2标记的微管与肌节肌球蛋白短暂结合,随后在无横纹肌原纤维分化为成熟肌节时与A带肌联蛋白结合。最后,在肌球蛋白丝并入和肌联蛋白延长后,MURF2标记的微管从肌节中消失。这表明肌球蛋白并入新生肌节以及肌联蛋白的延长需要一个活跃的、微管依赖的运输过程,并且MURF2相关的微管在新生肌节的排列和延伸中起作用。MURF2至少以四种异构体形式表达,其中一种27 kDa的异构体是心脏特异性的。一种C末端异构体是通过使用替代阅读框产生的,这在肌肉蛋白中是新颖的。在成熟的心脏肌节中,内源性MURF2可与M带结合,并转移至细胞核。因此,MURF2可以作为微管、肌联蛋白和新生肌球蛋白丝之间的瞬时衔接子,并且参与从肌节到细胞核的信号传导。