Department of Internal Medicine III, Cardiology and Angiology, University Medical Center Schleswig-Holstein, Campus Kiel, Kiel, Germany.
Department of Cardiology, Angiology and Pneumology, University Hospital Heidelberg, Heidelberg, Germany.
J Biomed Sci. 2022 Jun 9;29(1):38. doi: 10.1186/s12929-022-00820-3.
The molecular mechanisms that regulate embryogenesis and cardiac development are calibrated by multiple signal transduction pathways within or between different cell lineages via autocrine or paracrine mechanisms of action. The heart is the first functional organ to form during development, which highlights the importance of this organ in later stages of growth. Knowledge of the regulatory mechanisms underlying cardiac development and adult cardiac homeostasis paves the way for discovering therapeutic possibilities for cardiac disease treatment. Serum response factor (SRF) is a major transcription factor that controls both embryonic and adult cardiac development. SRF expression is needed through the duration of development, from the first mesodermal cell in a developing embryo to the last cell damaged by infarction in the myocardium. Precise regulation of SRF expression is critical for mesoderm formation and cardiac crescent formation in the embryo, and altered SRF levels lead to cardiomyopathies in the adult heart, suggesting the vital role played by SRF in cardiac development and disease. This review provides a detailed overview of SRF and its partners in their various functions and discusses the future scope and possible therapeutic potential of SRF in the cardiovascular system.
调控胚胎发生和心脏发育的分子机制通过自分泌或旁分泌作用的多种信号转导途径在不同细胞谱系内或之间进行校准。心脏是发育过程中第一个形成的功能性器官,这凸显了它在生长后期的重要性。了解心脏发育和成人心脏稳态的调节机制为心脏疾病治疗的治疗可能性开辟了道路。血清反应因子 (SRF) 是一种主要的转录因子,它控制着胚胎和成人心脏的发育。从发育中的胚胎中的第一个中胚层细胞到心肌中最后一个因梗塞而受损的细胞,都需要 SRF 的表达。SRF 表达的精确调节对于胚胎中的中胚层形成和心脏新月形成至关重要,而改变的 SRF 水平会导致成年心脏的心肌病,这表明 SRF 在心脏发育和疾病中起着至关重要的作用。本综述详细概述了 SRF 及其在各种功能中的合作伙伴,并讨论了 SRF 在心血管系统中的未来范围和可能的治疗潜力。