Berchtold Martin W, Villalobo Antonio
Department of Biology, University of Copenhagen, 13 Universitetsparken, DK-2100 Copenhagen Ø, Denmark.
Cancer and Human Molecular Genetics Area, Oto-Neurosurgery Research Group, University Hospital La Paz Research Institute (IdiPAZ), Paseo de la Castellana 261, E-28046 Madrid, Spain.
Biochim Biophys Acta Mol Basis Dis. 2025 Feb;1871(2):167583. doi: 10.1016/j.bbadis.2024.167583. Epub 2024 Nov 22.
Molecular mechanisms of aging processes at the level of organisms and cells are in the focus of a large number of research laboratories. This research culminated in recent breakthroughs, which contributed to the better understanding of the natural aging process and aging associated malfunctions leading to age-related diseases. Ca in connection with its master intracellular sensor protein calmodulin (CaM) regulates a plethora of crucial cellular processes orchestrating a wide range of signaling processes. This review focuses on the involvement of Ca/CaM in cellular mechanisms, which are associated with normal aging, as well as playing a role in the development of diseases connected with signaling processes during aging. We specifically highlight processes that involve inactivation of proteins, which take part in Ca/CaM regulatory systems by oxygen or nitrogen free radical species, during organismal aging and cellular senescence. As examples of organs where aging processes have recently been investigated, we chose to review the literature on molecular aging processes with involvement of Ca/CaM in heart and neuronal diseases, as well as in cancer and metabolic diseases, all deeply affected by aging. In addition, this article focuses on cellular senescence, a mechanism that may contribute to aging processes and therefore has been proposed as a target to interfere with the progression of age-associated diseases.
生物体和细胞水平上衰老过程的分子机制是众多研究实验室关注的焦点。这项研究在近期取得了突破,有助于更好地理解自然衰老过程以及与衰老相关的功能障碍,这些功能障碍会导致与年龄相关的疾病。钙与其主要的细胞内传感蛋白钙调蛋白(CaM)共同调节大量关键的细胞过程,协调广泛的信号传导过程。本综述聚焦于钙/钙调蛋白在细胞机制中的作用,这些机制与正常衰老相关,并且在衰老过程中与信号传导过程相关的疾病发展中也发挥作用。我们特别强调在机体衰老和细胞衰老过程中,涉及通过氧或氮自由基使参与钙/钙调蛋白调节系统的蛋白质失活的过程。作为近期对衰老过程进行研究调查的器官实例,我们选择回顾有关钙/钙调蛋白参与心脏和神经疾病、癌症以及代谢疾病等分子衰老过程的文献,所有这些疾病都深受衰老影响。此外,本文重点关注细胞衰老,这一机制可能促成衰老过程,因此已被提议作为干预与年龄相关疾病进展的靶点。