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小鼠肌球蛋白重链基因的失活:多样且意想不到的表型。

Inactivation of myosin heavy chain genes in the mouse: diverse and unexpected phenotypes.

作者信息

Allen D L, Harrison B C, Leinwand L A

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Boulder, Colorado 80309-0347, USA.

出版信息

Microsc Res Tech. 2000 Sep 15;50(6):492-9. doi: 10.1002/1097-0029(20000915)50:6<492::AID-JEMT6>3.0.CO;2-J.

Abstract

Myosin heavy chain (MyHC) is a critical component of the cellular contractile apparatus. The mammalian genome contains two nonmuscle, two smooth muscle, and eight striated muscle isoforms of MyHC. Within each class of genes, there is extremely high sequence homology among different MyHC isoforms, raising the question of whether these isoforms are functionally redundant or whether they perform unique roles in cell function. Recently, strains of mice null for four different MyHC isoforms have been generated. Mice null for the nonmuscle II-B isoform experience significant prenatal lethality and surviving animals have several cardiac abnormalities [Tullio et al. (1997) Proc Natl Acad Sci USA 94:12407-12412]. Mice homozygous null for alpha cardiac MyHC are embryonic lethal, while heterozygous mice are viable but also have numerous cardiac defects [Jones et al. (1996) J Clin Invest 98:1906-1917]. Mice null for IIb or IId adult skeletal MyHC are viable but have skeletal muscle abnormalities compared to wild type mice, despite compensation of a neighboring MyHC gene [Acakpo-Satchivi et al. (1997) J Cell Biol 139:1219-1229]. Both IIb and IId null mice show significant decreases in body mass. Mean muscle mass is also significantly decreased in both null strains but the extent and the pattern of affected muscles differs between the two strains. Both strains show evidence of skeletal muscle pathology but again the pattern and extent differ between the two strains. Finally, both adult skeletal strains demonstrate distinct impairments in contractile function when compared to wild type. Together these observations support the hypothesis that the different isoforms of MyHC are functionally unique and cannot substitute for one another.

摘要

肌球蛋白重链(MyHC)是细胞收缩装置的关键组成部分。哺乳动物基因组包含两种非肌肉型、两种平滑肌型和八种横纹肌型的MyHC。在每一类基因中,不同的MyHC亚型之间存在极高的序列同源性,这就引发了一个问题,即这些亚型在功能上是冗余的,还是在细胞功能中发挥独特的作用。最近,已经培育出了缺失四种不同MyHC亚型的小鼠品系。缺失非肌肉型II - B亚型的小鼠在产前有显著的致死率,存活下来的动物有几种心脏异常情况[图利奥等人(1997年),《美国国家科学院院刊》94:12407 - 12412]。α - 心脏型MyHC纯合缺失的小鼠胚胎致死,而杂合小鼠可以存活,但也有许多心脏缺陷[琼斯等人(1996年),《临床研究杂志》98:1906 - 1917]。缺失IIb或IId成年骨骼肌型MyHC的小鼠可以存活,但与野生型小鼠相比有骨骼肌异常,尽管相邻的MyHC基因有代偿作用[阿卡波 - 萨奇维等人(1997年),《细胞生物学杂志》139:1219 - 1229]。IIb和IId缺失的小鼠体重均显著下降。两种缺失品系的平均肌肉质量也显著降低,但受影响肌肉的程度和模式在两个品系之间有所不同。两个品系都有骨骼肌病理的证据,但同样,两个品系之间的模式和程度也不同。最后,与野生型相比,两种成年骨骼肌品系在收缩功能上都表现出明显的损伤。这些观察结果共同支持了这样一个假设,即MyHC的不同亚型在功能上是独特的,不能相互替代。

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