Department of Physiology, Drug Development Diagnostic and Biotechnology Division, Indian Institute of Chemical Biology, Jadavpur, Kolkata, India.
J Pineal Res. 2011 Jan;50(1):8-20. doi: 10.1111/j.1600-079X.2010.00812.x. Epub 2010 Oct 22.
Matrix metalloproteinases (MMPs) are part of a superfamily of metal-requiring proteases that play important roles in tissue remodeling by breaking down proteins in the extracellular matrix that provides structural support for cells. The intricate balance in protease/anti-protease stoichiometry is a contributing factor in a number of diseases. Melatonin possesses multifunctional bioactivities including antioxidative, anti-inflammatory, endocrinologic and behavioral effects. As melatonin affects the redox status of tissues, the association of reactive oxygen species (ROS) with tissue injury under different circumstances may be mitigated by melatonin. Redox signaling is expanding into all areas of basic and clinical sciences, and this timely review focuses on the topic of regulation of MMP activities by melatonin. This is a rapidly growing field. Accumulating evidence indicates that oxidative stress plays an important role in regulating the activities of MMPs that are involved in various cellular processes such as cellular proliferation, angiogenesis, apoptosis, invasion and metastasis. This review offers sections on MMPs, melatonin, major physiological and pathophysiological conditions in the context to MMPs, followed by redox signaling mechanisms that are known to influence the cellular processes. Finally, we discuss the emerging molecular mechanisms relevant to regulatory actions of melatonin on the activities of MMPs. The possibility that melatonin might have therapeutic significance via regulation of MMPs may be a novel approach in the treatment of some diseases.
基质金属蛋白酶(MMPs)是一类需要金属的蛋白酶超家族的一部分,它们通过分解细胞外基质中的蛋白质在组织重塑中发挥重要作用,细胞外基质为细胞提供结构支持。蛋白酶/抗蛋白酶化学计量比的精细平衡是许多疾病的一个因素。褪黑素具有多种生物活性,包括抗氧化、抗炎、内分泌和行为效应。由于褪黑素影响组织的氧化还原状态,因此在不同情况下,活性氧(ROS)与组织损伤的关联可能会被褪黑素减轻。氧化还原信号正在扩展到基础科学和临床科学的所有领域,本及时审查的重点是褪黑素对 MMP 活性的调节。这是一个快速发展的领域。越来越多的证据表明,氧化应激在调节 MMP 活性方面起着重要作用,MMP 参与各种细胞过程,如细胞增殖、血管生成、细胞凋亡、侵袭和转移。本综述提供了关于 MMPs、褪黑素、与 MMPs 相关的主要生理和病理生理条件的部分,然后是已知影响细胞过程的氧化还原信号机制。最后,我们讨论了与褪黑素对 MMPs 活性的调节作用相关的新兴分子机制。褪黑素通过调节 MMPs 可能具有治疗意义,这可能是治疗某些疾病的一种新方法。