首页> 外文期刊>Journal of Comparative Physiology B: Biochemical, Systemic, and Environmental Physiology >Heterogeneity of α-cardiac myosin heavy chains in a small marsupial, Antechinus flavipes, and the effect of hypothyroidism on its ventricular myosins
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Heterogeneity of α-cardiac myosin heavy chains in a small marsupial, Antechinus flavipes, and the effect of hypothyroidism on its ventricular myosins

机译:小型有袋动物黄tech(Antechinus flavipes)中α-心脏肌球蛋白重链的异质性以及甲状腺功能减退对其心室肌球蛋白的影响

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The effect of drug-induced hypothyroidism on ventricular myosin gene expression was explored in a small marsupial, Antechinus flavipes. Pyrophosphate gel electrophoresis, SDS-PAGE and western blotting were used to analyse changes in native myosin isoforms and myosin heavy chains (MyHCs) in response to hypothyroidism. In some animals, five instead of the normal three native myosin components were found: V1a, V1b,V1c, V2 and V3, in order of decreasing mobility. In western blots, V1a, V1b, and V1c reacted with anti-α-MyHC antibody, but not with anti-β-MyHC, whereas V2 and V3 reacted with anti-β-MyHC antibody. SDS-PAGE of the unusual ventricular myosins revealed three MyHC isoforms, two of which bound anti-α-MyHC antibody while the third bound anti-β-MyHC antibody. We conclude that V1a, V1b, V1c are triplets arising from the dimerization of two distinct α-MyHC isoforms. Hypothyroidism, verified by metabolic studies, decreased α-MyHC content significantly (t-test, P < 0.001) from 91.6 ± 5.9% (SEM, n = 4) in control animals to 67.2 ± 5.7% (SEM, n = 4) in hypothyroid animals, with a concomitant increase in β-MyHC content. We conclude that in adult marsupials, ventricular myosins are also responsive to changes in the thyroid state as found in eutherians, and suggest that evolution of the molecular mechanisms underlying this thyroid responsiveness predate the divergence of marsupials and eutherians.
机译:在一个有袋小动物Antechinus flavipes中研究了药物诱发的甲状腺功能减退对心室肌球蛋白基因表达的影响。使用焦磷酸盐凝胶电泳,SDS-PAGE和Western印迹法分析甲状腺功能减退症中天然肌球蛋白同工型和肌球蛋白重链(MyHCs)的变化。在某些动物中,发现五个而不是正常的三个天然肌球蛋白成分:V 1a ,V 1b ,V 1c ,V 2 和V 3 ,以移动性递减的顺序排列。在蛋白质印迹中,V 1a ,V 1b 和V 1c 与抗α-MyHC抗体反应,但与抗β- MyHC,而V 2 和V 3 与抗β-MyHC抗体反应。 SDS-PAGE显示异常的心室肌球蛋白显示三种MyHC亚型,其中两种结合抗α-MyHC抗体,而第三种结合抗β-MyHC抗体。我们得出结论,V 1a ,V 1b ,V 1c 是由两个不同的α-MyHC亚型二聚化而产生的三联体。经代谢研究证实的甲状腺功能减退症使α-MyHC含量从对照组动物的91.6±5.9%(SEM,n = 4)显着降低(t-test,P <0.001)至对照组的67.2±5.7%(SEM,n = 4)。甲状腺功能低下的动物,β-MyHC含量随之增加。我们得出的结论是,在成年有袋动物中,心室肌球蛋白也对以太坊人发现的甲状腺状态变化有反应,并暗示这种有甲状腺反应能力的分子机制的进化要早于有袋人和人的差异。

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