A.I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, PO Box 1627, FI-70211 Kuopio, Finland.
Department of Physiology and Pharmacology Karolinska Institutet, Biomedicum, Solnavägen 9 171 65 Solna, Sweden.
Cardiovasc Res. 2022 May 6;118(6):1520-1534. doi: 10.1093/cvr/cvab188.
Biological sex has fundamental effects on mammalian heart physiology and pathogenesis. While it has been established that female sex is a protective factor against most cardiovascular diseases (CVDs), this beneficial effect may involve pathways associated with cardiac energy metabolism. Our aim was to elucidate the role of transcriptional coactivator PGC-1α in sex dimorphism of heart failure (HF) development.
Here, we show that mice deficient in cardiac expression of the peroxisome proliferator-activated receptor gamma (PPAR-γ) coactivator-1α (PGC-1α) develop dilated HF associated with changes in aerobic and anaerobic metabolism, calcium handling, cell structure, electrophysiology, as well as gene expression. These cardiac changes occur in both sexes, but female mice develop an earlier and more severe structural and functional phenotype associated with dyssynchronous local calcium release resulting from disruption of t-tubular structures of the cardiomyocytes.
These data reveal that the integrity of the subcellular Ca2+ release and uptake machinery is dependent on energy metabolism and that female hearts are more prone to suffer from contractile dysfunction in conditions with compromised production of cellular energy. Furthermore, these findings suggest that PGC-1α is a central mediator of sex-specific differences in heart function and CVD susceptibility.
生物性别对哺乳动物心脏生理学和发病机制有根本影响。虽然已经确定女性性别是大多数心血管疾病(CVD)的保护因素,但这种有益影响可能涉及与心脏能量代谢相关的途径。我们的目的是阐明转录共激活因子 PGC-1α 在心力衰竭(HF)发展中的性别二态性中的作用。
在这里,我们表明,缺乏过氧化物酶体增殖物激活受体γ(PPAR-γ)共激活因子 1α(PGC-1α)的心脏表达的小鼠会发展为扩张型 HF,伴有有氧和无氧代谢、钙处理、细胞结构、电生理学以及基因表达的变化。这些心脏变化发生在两性中,但雌性小鼠表现出更早和更严重的结构和功能表型,这与肌细胞的 t 小管结构破坏导致的局部钙释放不同步有关。
这些数据表明,亚细胞 Ca2+释放和摄取机制的完整性依赖于能量代谢,并且在细胞能量产生受损的情况下,雌性心脏更容易受到收缩功能障碍的影响。此外,这些发现表明 PGC-1α 是心脏功能和 CVD 易感性性别特异性差异的中枢介质。