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Models of aerobic capacity and myocardial function: Possible association of cardiac myosin heavy chain ATPase.

机译:有氧运动能力和心肌功能模型:心肌肌球蛋白重链ATPase的可能关联。

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摘要

Aerobic running performance is used to assess cardiovascular function. Therefore, the goal of this study was to identify inbred rat strains that could serve as useful models for exploration of the genetic basis of aerobic endurance performance and cardiac function. Six rats of each gender from 11 different inbred strains were initially tested for: (1) maximal running capacity on a treadmill, and (2) isolated cardiac performance. Running performance was estimated from: (a) duration of the run, (b) distance run, and (c) vertical work performed. Cardiac output, during constant preload and afterload, was taken as a measure of cardiac performance from an isolated working heart preparation. Across the 11 strains, the distance run correlated positively with isolated cardiac performance (r = 0.87). Although the COP rats ran the shortest distance, cardiac output from the DA and BUF rat strains showed the widest divergence. Therefore, the following hypotheses were tested: (1) running capacity and cardiac function are reproducible phenotypes for these two inbred strains and (2) the differences in capacity are explained partly by variation in myosin heavy chain (MHC) ATPase activity. The DA rats ran 147% further than the BUF rats at exhaustion. Isolated myocardial contractility averaged 126 mul/beat in BUF rats compared to 202 mul/beat in DA rats (63% Delta) and correlated (r = 0.91) with running capacity. MHC ATPase obtained from DA left ventricles hydrolyzed ATP 64% faster than ATPase obtained from BUF rats; these differences were not due to the presence of beta-MHC isoform in either strain. These data demonstrate that these phenotypes are reproducible and that differences in aerobic capacity between BUF and DA rats can be partly explained by variation in ventricular alpha-MHC ATPase activity.
机译:有氧运动表现用于评估心血管功能。因此,本研究的目的是鉴定可作为探索有氧耐力表现和心脏功能遗传基础的有用模型的近交大鼠品系。最初测试了来自11个不同近交系的六只大鼠的性别:(1)在跑步机上的最大跑步能力,以及(2)孤立的心脏表现。跑步性能通过以下方式估算:(a)跑步时间,(b)远距离跑步和(c)进行的垂直工作。在恒定的预负荷和后负荷期间,将心脏输出量作为衡量离体心脏工作准备的心脏性能的指标。在这11个菌株中,远距离奔跑与孤立的心脏表现呈正相关(r = 0.87)。尽管COP大鼠的距离最短,但DA和BUF大鼠的心输出量差异最大。因此,测试了以下假设:(1)这两个自交系的运行能力和心脏功能是可重现的表型,(2)能力的差异部分由肌球蛋白重链(MHC)ATPase活性的变化部分解释。力竭时,DA大鼠比BUF大鼠多147%。在BUF大鼠中,离体心肌平均收缩率为126 mul / beat,而在DA大鼠中为202 mul / beat(Delta为63%),并且与运动能力相关(r = 0.91)。从DA左心室获得的MHC ATPase比从BUF大鼠获得的ATPase水解速度快64%;这些差异并不是由于任一菌株中都存在β-MHC同工型。这些数据表明,这些表型是可重现的,BUF和DA大鼠之间的有氧能力差异可以部分通过心室α-MHCATPase活性的变化来解释。

著录项

  • 作者

    Barbato, John Christopher.;

  • 作者单位

    Medical College of Ohio.;

  • 授予单位 Medical College of Ohio.;
  • 学科 Biology Genetics.;Health Sciences Recreation.;Biology Animal Physiology.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;
  • 关键词

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