Dystrophin deficiency in canine X-linked muscular dystrophy in Japan (CXMDJ) alters myosin heavy chain expression profiles in the diaphragm more markedly than in the tibialis cranialis muscle

被引:0
作者
Yuasa K. [1 ,2 ]
Nakamura A. [2 ]
Hijikata T. [1 ]
Takeda S. [2 ]
机构
[1] Department of Anatomy and Cell Biology, Research Institute of Pharmaceutical Sciences, Musashino University, Nishi-tokyo
[2] Department of Molecular Therapy, National Institute of Neuroscience, National Center of Neurology and Psychiatry, Kodaira
关键词
Duchenne Muscular Dystrophy; Myosin Heavy Chain; Duchenne Muscular Dystrophy Patient; Myosin Heavy Chain Isoforms; Slow Fiber;
D O I
10.1186/1471-2474-9-1
中图分类号
学科分类号
摘要
Background. Skeletal muscles are composed of heterogeneous collections of muscle fiber types, the arrangement of which contributes to a variety of functional capabilities in many muscle types. Furthermore, skeletal muscles can adapt individual myofibers under various circumstances, such as disease and exercise, by changing fiber types. This study was performed to examine the influence of dystrophin deficiency on fiber type composition of skeletal muscles in canine X-linked muscular dystrophy in Japan (CXMDJ), a large animal model for Duchenne muscular dystrophy. Methods. We used tibialis cranialis (TC) muscles and diaphragms of normal dogs and those with CXMD J at various ages from 1 month to 3 years old. For classification of fiber types, muscle sections were immunostained with antibodies against fast, slow, or developmental myosin heavy chain (MHC), and the number and size of these fibers were analyzed. In addition, MHC isoforms were detected by gel electrophoresis. Results. In comparison with TC muscles of CXMDJ, the number of fibers expressing slow MHC increased markedly and the number of fibers expressing fast MHC decreased with growth in the affected diaphragm. In populations of muscle fibers expressing fast and/or slow MHC(s) but not developmental MHC of CXMDJ muscles, slow MHC fibers were predominant in number and showed selective enlargement. Especially, in CXMDJ diaphragms, the proportions of slow MHC fibers were significantly larger in populations of myofibers with non-expression of developmental MHC. Analyses of MHC isoforms also indicated a marked increase of type I and decrease of type IIA isoforms in the affected diaphragm at ages over 6 months. In addition, expression of developmental (embryonic and/or neonatal) MHC decreased in the CXMDJ diaphragm in adults, in contrast to continuous high-level expression in affected TC muscle. Conclusion. The CXMDJ diaphragm showed marked changes in fiber type composition unlike TC muscles, suggesting that the affected diaphragm may be effectively adapted toward dystrophic stress by switching to predominantly slow fibers. Furthermore, the MHC expression profile in the CXMDJ diaphragm was markedly different from that in mdx mice, indicating that the dystrophic dog is a more appropriate model than a murine one, to investigate the mechanisms of respiratory failure in DMD. © 2008 Yuasa et al; licensee BioMed Central Ltd.
引用
收藏
相关论文
共 208 条
  • [1] Nonaka I(1998)Animal models of muscular dystrophies Lab Anim Sci 48 8-17
  • [2] Valentine BA(1990)Canine X-linked muscular dystrophy: morphologic lesions J Neurol Sci 97 1-23
  • [3] Cooper BJ(1997)Use of the dog model for Duchenne muscular dystrophy in gene therapy trials Neuromuscul Disord 7 325-328
  • [4] Cummings JF(2005)Major clinical and histopathological characteristics of canine X-linked muscular dystrophy in Japan, CXMDJ Acta Myol 24 145-154
  • [5] De Lahunta A(2003)Canine X-linked muscular dystrophy in Japan (CXMDJ) Exp Anim 52 93-97
  • [6] Howell JM(2006)Cardiac involvement in Beagle-based canine X-linked muscular dystrophy in Japan (CXMDJ): electrocardiographic, echocardiographic, and morphologic studies BMC Cardiovasc Disord 6 47-1260
  • [7] Fletcher S(2007)Activation and localization of matrix metalloproteinase-2 and -9 in the skeletal muscle of the muscular dystrophy dog (CXMDJ) BMC Musculoskelet Disord 8 54-1816
  • [8] Kakulas BA(2007)Injection of a recombinant AAV serotype 2 into canine skeletal muscles evokes strong immune responses against transgene products Gene Ther 14 1249-1926
  • [9] O'Hara M(2001)Human skeletal muscle fiber type classifications Phys Ther 81 1810-409
  • [10] Lochmuller H(2007)Fiber types in canine muscles: myosin isoform expression and functional characterization Am J Physiol Cell Physiol 292 C1915-139