Scaffolds and chaperones in myofibril assembly: Putting the striations in striated muscle

被引:27
作者
Crawford G.L. [1 ]
Horowits R. [2 ]
机构
[1] Department of Chemistry and Biochemistry, Bloomsburg University, Bloomsburg, PA
[2] National Inst. of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Department of Health and Human Services, Bethesda, MD
基金
美国国家卫生研究院;
关键词
Hsc70; Hsp90; Krp1; Myofibrillogenesis; N-RAP; UNC-45;
D O I
10.1007/s12551-011-0043-x
中图分类号
学科分类号
摘要
Sarcomere assembly in striated muscles has long been described as a series of steps leading to assembly of individual proteins into thick filaments, thin filaments and Z-lines. Decades of previous work focused on the order in which various structural proteins adopted the striated organization typical of mature myofibrils. These studies led to the view that actin and α-actinin assemble into premyofibril structures separately from myosin filaments, and that these structures are then assembled into myofibrils with centered myosin filaments and actin filaments anchored at the Z-lines. More recent studies have shown that particular scaffolding proteins and chaperone proteins are required for individual steps in assembly. Here, we review the evidence that N-RAP, a LIM domain and nebulin repeat protein, scaffolds assembly of actin and α-actinin into I-Z-I structures in the first steps of assembly; that the heat shock chaperone proteins Hsp90 & Hsc70 cooperate with UNC-45 to direct the folding of muscle myosin and its assembly into thick filaments; and that the kelch repeat protein Krp1 promotes lateral fusion of premyofibril structures to form mature striated myofibrils. The evidence shows that myofibril assembly is a complex process that requires the action of particular catalysts and scaffolds at individual steps. The scaffolds and chaperones required for assembly are potential regulators of myofibrillogenesis, and abnormal function of these proteins caused by mutation or pathological processes could in principle contribute to diseases of cardiac and skeletal muscles. © 2011 International Union for Pure and Applied Biophysics (IUPAB) and Springer (outside the USA).
引用
收藏
页码:25 / 32
页数:7
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共 78 条
  • [71] Wegele H., Wandinger S.K., Schmid A.B., Reinstein J., Buchner J., Substrate transfer from the chaperone Hsp70 to Hsp90, J Mol Biol, 356, pp. 802-811, (2006)
  • [72] Whitesell L., Lindquist S.L., HSP90 and the chaperoning of cancer, Nat Rev Cancer, 5, pp. 761-772, (2005)
  • [73] Willis M.S., Schisler J.C., Portbury A.L., Patterson C., Build it up-Tear it down: protein quality control in the cardiac sarcomere, Cardiovasc Res, 81, pp. 439-448, (2009)
  • [74] Wohlgemuth S.L., Crawford B.D., Pilgrim D.B., The myosin co-chaperone UNC-45 is required for skeletal and cardiac muscle function in zebrafish, Dev Biol, 303, pp. 483-492, (2007)
  • [75] Xu L., Wei Y., Reboul J., Vaglio P., Shin T.H., Vidal M., Elledge S.J., Harper J.W., BTB proteins are substrate-specific adaptors in an SCF-like modular ubiquitin ligase containing CUL-3, Nature, 425, pp. 316-321, (2003)
  • [76] Zhang J.Q., Elzey B., Williams G., Lu S., Law D.J., Horowits R., Ultrastructural and biochemical localization of N-RAP at the interface between myofibrils and intercalated disks in the mouse heart, Biochemistry, 40, pp. 14898-14906, (2001)
  • [77] Zhang D.D., Lo S.C., Sun Z., Habib G.M., Lieberman M.W., Hannink M., Ubiquitination of Keap1, a BTB-Kelch substrate adaptor protein for Cul3, targets Keap1 for degradation by a proteasome-independent pathway, J Biol Chem, 280, pp. 30091-30099, (2005)
  • [78] Zhao R., Houry W.A., Molecular interaction network of the Hsp90 chaperone system, Adv Exp Med Biol, 594, pp. 27-36, (2007)