Immunoinformatic-based drug design utilizing hesperetin to target CISD2 activation for liver aging in humans.

IF 4.4 4区 医学 Q1 GERIATRICS & GERONTOLOGY
Biogerontology Pub Date : 2024-11-01 Epub Date: 2024-08-28 DOI:10.1007/s10522-024-10130-w
Saad Ilyas Baig, Maria Naseer, Abdur-Rehman Munir, Yasir Ali, Muhammad Asif Razzaq
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引用次数: 0

Abstract

The CISD protein family, consisting of CISD1, CISD2, and CISD3, encodes proteins that feature CDGSH iron-sulfur domains crucial for cellular functions and share a common 2Fe-2S domain. CISD2, which is pivotal in cells, regulates intracellular calcium levels, maintains the endoplasmic reticulum and mitochondrial function, and is associated with longevity and overall health, with exercise stimulating CISD2 production. However, CISD2 expression decreases with age, impacting age-related processes. According to in silico docking, HST is a CISD2 activator that affects metabolic dysfunction and age-related illnesses by affecting metabolic pathways. This study investigated the ability of CISD2 and HST to reduce age-related ailments, with a particular emphasis on liver aging. CISD2 deficiency has a major effect on the function of cells, as it undermines the integrity of the ER, mitochondria, and calcium homeostasis. It also increases susceptibility to oxidative stress and metabolic dysregulation, which is linked to Wolfram syndrome and exacerbates age-related illnesses and metabolic disorders. By shielding cells from stress, CISD2 extends the life of cells and maintains liver health as people age. Its protective effecfts on the liver during aging are further enhanced by its control of translation factors such as Nrf2 and IL-6. This work paves the way for future investigations and clinical applications by examining the structural and functional properties of CISD2 and the interaction between CISD2 and HST. This highlights the therapeutic potential of these findings in promoting healthy livers in humans and battling age-related illnesses.

Abstract Image

基于免疫形式的药物设计,利用橙皮甙靶向 CISD2 激活,治疗人类肝脏衰老。
由 CISD1、CISD2 和 CISD3 组成的 CISD 蛋白家族编码的蛋白质具有对细胞功能至关重要的 CDGSH 铁硫结构域,并共享一个共同的 2Fe-2S 结构域。CISD2 在细胞中举足轻重,它能调节细胞内的钙水平,维持内质网和线粒体的功能,并与长寿和整体健康有关,运动能刺激 CISD2 的产生。然而,CISD2 的表达会随着年龄的增长而减少,从而影响与年龄相关的过程。根据硅学对接,HST 是一种 CISD2 激活剂,它通过影响代谢途径来影响代谢功能障碍和与年龄相关的疾病。本研究调查了 CISD2 和 HST 减少老年相关疾病的能力,尤其侧重于肝脏衰老。CISD2 缺乏会对细胞功能产生重大影响,因为它会破坏 ER、线粒体和钙平衡的完整性。它还会增加对氧化应激和代谢失调的易感性,而氧化应激和代谢失调与沃尔夫拉姆综合征有关,并会加剧与年龄有关的疾病和代谢紊乱。随着年龄的增长,CISD2 通过保护细胞免受压力,延长细胞寿命,维护肝脏健康。CISD2对Nrf2和IL-6等翻译因子的控制进一步增强了它在衰老过程中对肝脏的保护作用。这项工作通过研究 CISD2 的结构和功能特性以及 CISD2 与 HST 之间的相互作用,为未来的研究和临床应用铺平了道路。这凸显了这些发现在促进人类肝脏健康和对抗老年相关疾病方面的治疗潜力。
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来源期刊
Biogerontology
Biogerontology 医学-老年医学
CiteScore
8.00
自引率
4.40%
发文量
54
审稿时长
>12 weeks
期刊介绍: The journal Biogerontology offers a platform for research which aims primarily at achieving healthy old age accompanied by improved longevity. The focus is on efforts to understand, prevent, cure or minimize age-related impairments. Biogerontology provides a peer-reviewed forum for publishing original research data, new ideas and discussions on modulating the aging process by physical, chemical and biological means, including transgenic and knockout organisms; cell culture systems to develop new approaches and health care products for maintaining or recovering the lost biochemical functions; immunology, autoimmunity and infection in aging; vertebrates, invertebrates, micro-organisms and plants for experimental studies on genetic determinants of aging and longevity; biodemography and theoretical models linking aging and survival kinetics.
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