Department of Biochemistry, Jawaharlal Institute of Post-Graduate Medical Education and Research (JIPMER), Puducherry, 605006, India.
Cell Stress Chaperones. 2023 Jan;28(1):35-48. doi: 10.1007/s12192-022-01314-9. Epub 2022 Nov 28.
Excess nutrient flux into the cellular energy system results in a scenario of cellular metabolic stress in diseases involving insulin resistance, such as type 2 diabetes, referred to as nutri-stress and results in cellular bioenergetic imbalance, which leads to insulin resistance and disease. Under nutri-stress, the heat shock response system is compromised due to metabolic abnormalities that disturb energy homeostasis. Heat shock proteins (HSPs) are the chief protectors of intracellular homeostasis during stress. Heat shock response (HSR) impairment contributes to several metabolic pathways that aggravate chronic hyperglycaemia and insulin resistance, highlighting a central role in disease pathogenesis. This article discusses the role of nutri-stress-related molecular events in causing insulin resistance and the nature of the roles played by heat shock proteins in some of the crucial checkpoints of the molecular networks involved in insulin resistance. Ample evidence suggests that the heat shock machinery regulates critical pathways in mitochondrial function and energy metabolism and that cellular energy status highly influences it. Weakening of HSPs, therefore, leads to loss of their vital cytoprotective functions, propagating nutri-stress in the system. Further research into the mechanistic roles of HSPs in metabolic homeostasis will help widen our understanding of lifestyle diseases, their onset, and complications. These inducible proteins may be crucial to attenuating lifestyle risk factors and disease management.
过量的营养物质流入细胞能量系统会导致细胞代谢应激,这种情况在涉及胰岛素抵抗的疾病中很常见,如 2 型糖尿病,被称为营养应激,并导致细胞生物能量失衡,进而导致胰岛素抵抗和疾病。在营养应激下,由于代谢异常干扰能量稳态,热休克反应系统受损。热休克蛋白 (HSPs) 是应激过程中细胞内稳态的主要保护者。热休克反应 (HSR) 受损会导致几种代谢途径加剧慢性高血糖和胰岛素抵抗,突出了其在疾病发病机制中的核心作用。本文讨论了营养应激相关分子事件导致胰岛素抵抗的作用,以及热休克蛋白在胰岛素抵抗相关分子网络的一些关键检查点中发挥的作用的性质。大量证据表明,热休克机制调节线粒体功能和能量代谢的关键途径,细胞能量状态对其有很大影响。因此,HSPs 的弱化导致其重要的细胞保护功能丧失,从而使系统中出现营养应激。进一步研究 HSPs 在代谢稳态中的机制作用将有助于我们更深入地了解生活方式疾病的发病机制及其并发症。这些诱导型蛋白对于减轻生活方式风险因素和疾病管理可能至关重要。