Mothers and Babies Research Centre, Faculty of Health, University of Newcastle, Callaghan, NSW 2308, Australia.
Am J Physiol Cell Physiol. 2013 Mar;304(6):C485-504. doi: 10.1152/ajpcell.00161.2012. Epub 2013 Jan 16.
The degree of phosphorylation of myosin light chain 20 (MLC20) is a major determinant of force generation in smooth muscle. Myosin phosphatases (MPs) contain protein phosphatase (PP) 1 as catalytic subunits and are the major enzymes that dephosphorylate MLC20. MP regulatory targeting subunit 1 (MYPT1), the main regulatory subunit of MP in all smooth muscles, is a key convergence point of contractile and relaxatory pathways. Combinations of regulatory mechanisms, including isoform splicing, multiple phosphorylation sites, and scaffolding proteins, modulate MYPT1 activity with tissue and agonist specificities to affect contraction and relaxation. Other members of the PP1 family that do not target myosin, as well as PP2A and PP2B, dephosphorylate a range of proteins that affect smooth muscle contraction. This review discusses the role of phosphatases in smooth muscle contractility with a focus on MYPT1 in uterine smooth muscle. Myometrium shares characteristics of vascular and other visceral smooth muscles yet, during healthy pregnancy, undergoes hypertrophy, hyperplasia, quiescence, and labor as physiological processes. Myometrium presents an accessible model for the study of normal and pathological smooth muscle function, and a better understanding of myometrial physiology may allow the development of novel therapeutics for the many disorders of myometrial physiology from preterm labor to dysmenorrhea.
肌球蛋白轻链 20(MLC20)的磷酸化程度是平滑肌产生力的主要决定因素。肌球蛋白磷酸酶(MPs)含有蛋白磷酸酶(PP)1 作为催化亚基,是主要的使 MLC20 去磷酸化的酶。MP 调节靶向亚单位 1(MYPT1)是所有平滑肌中 MPs 的主要调节亚基,是收缩和松弛途径的主要汇聚点。包括同工型拼接、多个磷酸化位点和支架蛋白在内的调节机制组合,通过组织和激动剂特异性来调节 MYPT1 的活性,从而影响收缩和松弛。其他不针对肌球蛋白的 PP1 家族成员以及 PP2A 和 PP2B 可使一系列影响平滑肌收缩的蛋白去磷酸化。本文讨论了磷酸酶在平滑肌收缩中的作用,重点介绍了子宫平滑肌中的 MYPT1。子宫肌具有血管和其他内脏平滑肌的特征,但在健康妊娠期间,它会经历肥大、增生、静止和分娩等生理过程。子宫肌为研究正常和病理性平滑肌功能提供了一个可接近的模型,对子宫肌生理学的更好理解可能为许多与子宫肌生理学有关的疾病(从早产到痛经)的新型治疗方法的开发提供帮助。