疾病
中枢神经系统
神经科学
瓜氨酸化
发病机制
痴呆
生物
衰老的大脑
医学
生物信息学
病理
免疫学
遗传学
氨基酸
精氨酸
瓜氨酸
作者
Xavier Gallart‐Palau,Le Min Tan,Aida Serra,Yong‐Gui Gao,Hee Hwa Ho,Mark Richards,Nagaendran Kandiah,Christopher Chen,Raj N. Kalaria,Siu Kwan Sze
标识
DOI:10.1016/j.arr.2019.100909
摘要
Aging influences the pathogenesis and progression of several major diseases affecting both the cardiovascular system (CVS) and central nervous system (CNS). Defining the common molecular features that underpin these disorders in these crucial body systems will likely lead to increased quality of life and improved ‘health-span’ in the global aging population. Degenerative protein modifications (DPMs) have been strongly implicated in the molecular pathogenesis of several age-related diseases affecting the CVS and CNS, including atherosclerosis, heart disease, dementia syndromes, and stroke. However, these isolated findings have yet to be integrated into a wider framework, which considers the possibility that, despite their distinct features, CVS and CNS disorders may in fact be closely related phenomena. In this work, we review the current literature describing molecular roles of the major age-associated DPMs thought to significantly impact on human health, including carbamylation, citrullination and deamidation. In particular, we focus on data indicating that specific DPMs are shared between multiple age-related diseases in both CVS and CNS settings. By contextualizing these data, we aim to assist future studies in defining the universal mechanisms that underpin both vascular and neurological manifestations of age-related protein degeneration.
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