Cardiac Signal Transduction and Cellular Biology Laboratory, Interdisciplinary Stem Cell Institute, Departments of Pediatrics and Medicine, Leonard M. Miller School of Medicine, University of Miami, Miami, Florida; and.
Am J Physiol Heart Circ Physiol. 2013 Oct 1;305(7):H1010-9. doi: 10.1152/ajpheart.00237.2013. Epub 2013 Aug 2.
Myocardial interstitial fibrosis is an important contributor to the development of heart failure. Type 3 p90 ribosomal S6 kinase (RSK3) was recently shown to be required for concentric myocyte hypertrophy under in vivo pathological conditions. However, the role of RSK family members in myocardial fibrosis remains uninvestigated. Transgenic expression of α-tropomyosin containing a Glu180Gly mutation (TM180) in mice of a mixed C57BL/6:FVB/N background induces a cardiomyopathy characterized by a small left ventricle, interstitial fibrosis, and diminished systolic and diastolic function. Using this mouse model, we now show that RSK3 is required for the induction of interstitial fibrosis in vivo. TM180 transgenic mice were crossed to RSK3 constitutive knockout (RSK3(-/-)) mice. Although RSK3 knockout did not affect myocyte growth, the decreased cardiac function and mild pulmonary edema associated with the TM180 transgene were attenuated by RSK3 knockout. The improved cardiac function was consistent with reduced interstitial fibrosis in the TM180;RSK3(-/-) mice as shown by histology and gene expression analysis, including the decreased expression of collagens. The specific inhibition of RSK3 should be considered as a potential novel therapeutic strategy for improving cardiac function and the prevention of sudden cardiac death in diseases in which interstitial fibrosis contributes to the development of heart failure.
心肌间质纤维化是心力衰竭发展的重要因素。最近有研究表明,在体内病理条件下,第 3 型 p90 核糖体 S6 激酶(RSK3)对于心肌细胞的向心性肥大是必需的。然而,RSK 家族成员在心肌纤维化中的作用仍未被研究。在 C57BL/6:FVB/N 混合背景的小鼠中,转染含有 Glu180Gly 突变的α-原肌球蛋白(TM180)可诱导一种心肌病,其特征为左心室小、间质纤维化和收缩及舒张功能减退。利用这种小鼠模型,我们现在表明 RSK3 是体内诱导间质纤维化所必需的。TM180 转基因小鼠与 RSK3 组成型敲除(RSK3(-/-)) 小鼠杂交。虽然 RSK3 敲除不影响心肌细胞的生长,但与 TM180 转基因相关的心脏功能减退和轻度肺水肿被 RSK3 敲除所减轻。TM180;RSK3(-/-) 小鼠的心脏功能改善与间质纤维化减少相一致,这可通过组织学和基因表达分析证实,包括胶原表达的降低。RSK3 的特异性抑制可能被认为是改善心脏功能和预防心力衰竭发展中间质纤维化导致的心脏性猝死的一种潜在新型治疗策略。