Henkel R D, Kammerer C M, Escobedo L V, VandeBerg J L, Walsh R A
Department of Genetics, Southwest Foundation for Biomedical Research, San Antonio, Texas.
Cardiovasc Res. 1993 Mar;27(3):416-22. doi: 10.1093/cvr/27.3.416.
The aim was to determine the extent to which myosin heavy chain and light chain isoform transitions in atrial myocardium are coordinately regulated under pathological conditions in tissue from normal baboons, hypertensive baboons with myocardial hypertrophy, and baboons in which hypertrophy had regressed.
Quantitative distributions of myosin heavy chain (MHC) and regulatory myosin light chain (MLC2) isoforms in atrial myocardium from 35 adult baboons were determined by electrophoresis under denaturing conditions and laser densitometry.
A significant association was observed between the ratios of MHC and MLC2 isoforms in atrial myocardium (r = 0.73, p < 0.001, n = 69). Expressions of alpha MHC and atrial MLC2 (ALC2) isoforms were correlated in atrial myocardium, as were those of beta MHC and ventricular MLC2 (VLC2) isoforms. In a subset of baboons with experimentally induced renal hypertension (n = 12) both beta MHC and VLC2 isoforms were found at higher levels in left atria than were present in normotensive baboons (p = 0.006, n = 15). Left atria from hypertensive baboons with regressed LVH contained intermediate levels of both beta MHC and VLC2 isoforms.
There is tight coupling between the expression of myosin subunit isoforms under pathological conditions from a primate species closely related to humans. The data suggest that the synthesis of these subunits of myosin may be coordinated at the molecular level.
本研究旨在确定在正常狒狒、患有心肌肥厚的高血压狒狒以及肥厚已消退的狒狒组织的病理条件下,心房心肌中肌球蛋白重链和轻链亚型转变的协调调节程度。
通过变性条件下的电泳和激光密度测定法,确定了35只成年狒狒心房心肌中肌球蛋白重链(MHC)和调节性肌球蛋白轻链(MLC2)亚型的定量分布。
观察到心房心肌中MHC和MLC2亚型的比例之间存在显著相关性(r = 0.73, p < 0.001, n = 69)。α-MHC和心房MLC2(ALC2)亚型的表达在心房心肌中相关,β-MHC和心室MLC2(VLC2)亚型的表达也相关。在一组实验性诱导肾性高血压的狒狒(n = 12)中,发现左心房中β-MHC和VLC2亚型的水平均高于正常血压狒狒(p = 0.006, n = 15)。左心室肥厚已消退的高血压狒狒的左心房中β-MHC和VLC2亚型的水平处于中间水平。
在与人类密切相关的灵长类动物的病理条件下,肌球蛋白亚基亚型的表达之间存在紧密的耦合。数据表明,这些肌球蛋白亚基的合成可能在分子水平上是协调的。