Ecarnot-Laubriet A, De Luca K, Vandroux D, Moisant M, Bernard C, Assem M, Rochette L, Teyssier J R
Laboratoire de Physiopathologie et Pharmacologie Cardiovasculaires Expérimentales, Université de Bourgogne, Dijon, France.
J Mol Cell Cardiol. 2000 Dec;32(12):2385-95. doi: 10.1006/jmcc.2000.1269.
The cardiac LIM domain protein MLP plays a crucial role in the architecture and mechanical function of cardiac myocytes. Mice lacking the MLP gene develop cardiac hypertrophy, dilated cardiopathy and heart failure. We investigated whether downregulation of MLP is induced by pressure overload and contributes to the physiopathology of cardiac hypertrophy and failure. We studied this mechanism in rat right ventricles submitted to pulmonary arterial hypertension, because it is known that this ventricle is very vulnerable to the deleterious effects of pressure overload. During the progression of cardiac hypertrophy to failure over a 31 days period there was a dramatic decrease by 50% of the MLP transcripts level. Consistently, immunohistochemistry detected very weak protein signals in the cytoplasms of cardiomyocytes at the failing stage, but myocytes nuclei were heavily labeled. The nuclear relocation was confirmed by the immunodetection of MLP on the nuclear and cytosolic fractions. This nuclear localization is the hallmark of a retro-differentiated phenotype, since it has been observed only in differentiating myoblasts. These changes were associated with ultrastructural disorganization of the myofibrils similar to that observed in MLP -/- mice. Therefore, MLP dowregulation occurring during gene reprogramming may critically contribute to mechanical failure of the myocardium.
心脏LIM结构域蛋白MLP在心肌细胞的结构和机械功能中起关键作用。缺乏MLP基因的小鼠会出现心脏肥大、扩张型心肌病和心力衰竭。我们研究了压力超负荷是否会诱导MLP下调,并导致心脏肥大和衰竭的病理生理过程。我们在患有肺动脉高压的大鼠右心室中研究了这一机制,因为已知该心室对压力超负荷的有害影响非常敏感。在31天的时间里,从心脏肥大发展到心力衰竭的过程中,MLP转录本水平急剧下降了50%。同样,免疫组织化学检测发现在衰竭阶段心肌细胞的细胞质中蛋白信号非常微弱,但心肌细胞核被大量标记。通过对核和胞质组分上的MLP进行免疫检测证实了核移位。这种核定位是逆向分化表型的标志,因为它仅在分化的成肌细胞中观察到。这些变化与肌原纤维的超微结构紊乱有关,类似于在MLP基因敲除小鼠中观察到的情况。因此,在基因重编程过程中发生的MLP下调可能是导致心肌机械功能衰竭的关键因素。