The complex landscape of intracellular signalling in protein modification under hyperglycaemic stress leading to metabolic disorders.

The protein journal Pub Date : 2024-06-01 Epub Date: 2024-03-16 DOI:10.1007/s10930-024-10191-3
Hamda Khan, Afreen Khanam, Adnan Ahmad Khan, Rizwan Ahmad, Arbab Husain, Safia Habib, Saheem Ahmad, Moinuddin
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Abstract

Hyperglycaemia is a life-threatening risk factor that occurs in both chronic and acute phases and has been linked to causing injury to many organs. Protein modification was triggered by hyperglycaemic stress, which resulted in pathogenic alterations such as impaired cellular function and tissue damage. Dysregulation in cellular function increases the condition associated with metabolic disorders, including cardiovascular diseases, nephropathy, retinopathy, and neuropathy. Hyperglycaemic stress also increases the proliferation of cancer cells. The major areas of experimental biomedical research have focused on the underlying mechanisms involved in the cellular signalling systems involved in diabetes-associated chronic hyperglycaemia. Reactive oxygen species and oxidative stress generated by hyperglycaemia modify many intracellular signalling pathways that result in insulin resistance and β-cell function degradation. The dysregulation of post translational modification in β cells is clinically associated with the development of diabetes mellitus and its associated diseases. This review will discuss the effect of hyperglycaemic stress on protein modification and the cellular signalling involved in it. The focus will be on the significant molecular changes associated with severe metabolic disorders.

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在导致代谢紊乱的高血糖应激状态下,细胞内蛋白质修饰信号的复杂情况。
高血糖是一种危及生命的危险因素,在慢性和急性阶段都会发生,并与对许多器官造成损伤有关。高血糖应激会引发蛋白质修饰,导致致病性改变,如细胞功能受损和组织损伤。细胞功能失调会增加与代谢紊乱相关的病症,包括心血管疾病、肾病、视网膜病变和神经病变。高血糖压力还会增加癌细胞的增殖。生物医学实验研究的主要领域集中在糖尿病相关慢性高血糖所涉及的细胞信号系统的基本机制上。高血糖产生的活性氧和氧化应激改变了许多细胞内信号通路,导致胰岛素抵抗和β细胞功能退化。在临床上,β 细胞翻译后修饰的失调与糖尿病及其相关疾病的发生有关。本综述将讨论高血糖应激对蛋白质修饰的影响以及与此相关的细胞信号。重点将放在与严重代谢紊乱相关的重大分子变化上。
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