Hoh Joseph F Y, Kim Yoonah, Lim Jacqueline H Y, Sieber Louise G, Lucas Christine A, Zhong Wendy W H
Discipline of Physiology and the Bosch Institute, Building F13, School of Medical Sciences, Faculty of Medicine, The University of Sydney, Sydney, NSW, 2006, Australia.
J Comp Physiol B. 2007 Feb;177(2):153-63. doi: 10.1007/s00360-006-0117-4. Epub 2006 Sep 20.
Cardiac myosins and their subunit compositions were studied in ten species of marsupial mammals. Using native gel electrophoresis, ventricular myosin in macropodoids showed three isoforms, V(1), V(2) and V(3), and western blots using specific anti-alpha- and anti-beta-cardiac myosin heavy chain (MyHC) antibodies showed their MyHC compositions to be alphaalpha, alphabeta and betabeta, respectively. Atrial myosin showed alphaalpha MyHC composition but differed from V(1) in light chain composition. Small marsupials (Sminthopsis crassicaudata, Antechinus stuartii, Antechinus flavipes) showed virtually pure V(1), while the larger (1-3 kg) Pseudocheirus peregrinus and Trichosurus vulpecula showed virtually pure V(3). The five macropodoids (Bettongia penicillata, Macropus eugenii, Wallabia bicolour, M. rufus and M. giganteus), ranging in body mass from 2 to 66 kg, expressed considerably more alpha-MyHC (22.8%) than expected for their body size. These results show that cardiac myosins in marsupial mammals are substantially the same as their eutherian counterparts in subunit composition and in the correlation of their expression with body size, the latter feature underlies the scaling of resting heart rate and cardiac cross-bridge kinetics with specific metabolic rate. The data from macropodoids further suggest that expression of cardiac myosins in mammals may also be influenced by their metabolic scope.
对十种有袋类哺乳动物的心肌肌球蛋白及其亚基组成进行了研究。使用非变性凝胶电泳,袋鼠类动物的心室肌球蛋白显示出三种同工型,即V(1)、V(2)和V(3),并且使用特异性抗α-和抗β-心肌肌球蛋白重链(MyHC)抗体进行的蛋白质免疫印迹显示,它们的MyHC组成分别为αα、αβ和ββ。心房肌球蛋白显示出αα MyHC组成,但在轻链组成上与V(1)不同。小型有袋动物(肥尾袋鼩、史氏宽足袋鼩、黄足宽足袋鼩)几乎显示为纯V(1),而较大的(1 - 3千克)长吻袋貂和帚尾袋貂几乎显示为纯V(3)。体重从2千克到66千克不等的五种袋鼠类动物(刷尾岩袋鼠、尤金袋鼠、双色壁袋鼠、红大袋鼠和大赤袋鼠)表达的α-MyHC(22.8%)比根据其体型预期的要多得多。这些结果表明,有袋类哺乳动物的心肌肌球蛋白在亚基组成以及其表达与体型的相关性方面与真兽类动物基本相同,后一特征是静息心率和心脏横桥动力学与特定代谢率之间比例关系的基础。来自袋鼠类动物的数据进一步表明,哺乳动物中心肌肌球蛋白的表达也可能受其代谢范围的影响。