Hsp90 and associates shaping parasite biology.

IF 3.1 2区 生物学 Q2 MICROBIOLOGY
mSphere Pub Date : 2025-09-24 DOI:10.1128/msphere.00329-25
Abhilasha Gahlawat, Sunanda Bhattacharyya, Mrinal Kanti Bhattacharyya
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引用次数: 0

Abstract

Hsp90 is considered to be the master regulator of chaperone activity within the cellular context. In addition to aiding client maturation and maintaining protein homeostasis, Hsp90 serves various non-canonical functions in model eukaryotes: ranging from protein-trafficking into the nucleus to transcriptional regulation, from chromatin remodeling to assembly and disassembly of protein complexes during DNA repair and telomere maintenance. In performing all these trades, Hsp90 collaborates with its co-chaperones in a client-specific or function-specific manner. Hsp90 undergoes various conformational changes during its chaperone cycle, which is regulated via several post-translational modifications (PTM). Different combinations of such PTMs, known as the chaperone code, also play key regulatory roles for Hsp90 functions. Here, we examine various cellular functions of Hsp90 in protozoan parasites, particularly those that shuttle between insect host and human host, adapting to a temperature difference of at least 10°C. Our analyses reveal that most of the prominent co-chaperones are present in all these parasites, except for one that is essential in model eukaryotes. We reviewed the biochemical correlates of Hsp90 and its co-chaperone interactions and realized that the physiological significance of such interplay is largely unknown in the protozoan parasites. One striking observation is the lack of sequence conservation of the parasitic co-chaperones with their human counterparts, making them attractive drug targets. Our analyses revealed that in spite of the identification of few PTMs of parasitic Hsp90 proteins, the chaperone codes remain largely elusive.IMPORTANCEHsp90 is a pivotal molecular chaperone involved in maintaining proteostasis and facilitating the maturation of diverse client proteins. Beyond its canonical folding functions, Hsp90 plays non-canonical roles in nuclear trafficking, transcriptional regulation, chromatin remodeling, and DNA repair. These activities are tightly regulated through interactions with specific co-chaperones and through post-translational modifications, collectively forming the "chaperone code." This study examines Hsp90's role in thermal adaptation of protozoan parasites when shuttling between the insect and human hosts. Here, we summarize the canonical and diverse non-canonical functions of Hsp90 in three protozoan parasites: Plasmodium, Leishmania, and Trypanosoma. We highlight all the Hsp90 isoforms found in these three parasites and also illustrate all the co-chaperones and post-translational modifications of Hsp90 found to be present in these protozoan parasites. Importantly, the divergence in co-chaperone sequences from human homologs in these parasites presents a promising avenue for targeted antiparasitic drug discovery and development.

Hsp90及其相关物塑造寄生虫生物学。
Hsp90被认为是细胞内伴侣活性的主要调节因子。除了帮助客户成熟和维持蛋白质稳态外,Hsp90在模型真核生物中还具有多种非规范功能:从蛋白质转运到细胞核转录调节,从染色质重塑到DNA修复和端粒维持过程中蛋白质复合物的组装和拆卸。在执行所有这些交易时,Hsp90以特定于客户或特定于功能的方式与其合作伙伴合作。Hsp90在其伴侣周期中经历各种构象变化,这是通过几种翻译后修饰(PTM)来调节的。这些ptm的不同组合,被称为伴侣编码,也对Hsp90的功能起着关键的调节作用。在这里,我们研究了原生动物寄生虫中Hsp90的各种细胞功能,特别是那些在昆虫宿主和人类宿主之间穿梭,适应至少10°C温差的原虫。我们的分析表明,除了一种在模式真核生物中必不可少的外,大多数突出的共同伴侣存在于所有这些寄生虫中。我们回顾了热休克蛋白90及其伴侣相互作用的生化相关性,并认识到这种相互作用在原生动物寄生虫中的生理意义在很大程度上是未知的。一个引人注目的观察结果是,寄生伴侣与人类伴侣缺乏序列守恒,这使它们成为有吸引力的药物靶点。我们的分析显示,尽管寄生虫Hsp90蛋白的一些ptm被鉴定出来,但伴侣蛋白的编码在很大程度上仍然难以捉摸。hsp90是一种关键的分子伴侣,参与维持蛋白质稳态和促进多种客户蛋白的成熟。除了典型的折叠功能外,Hsp90在核运输、转录调控、染色质重塑和DNA修复中发挥非典型作用。这些活动通过与特定的共同伴侣的相互作用和翻译后修饰而受到严格调节,共同形成“伴侣代码”。本研究探讨了热休克蛋白90在原生动物寄生虫在昆虫和人类宿主之间穿梭时的热适应中的作用。本文总结了热休克蛋白90在三种原生动物寄生虫(疟原虫、利什曼原虫和锥虫)中的典型和多种非典型功能。我们强调了在这三种寄生虫中发现的所有Hsp90亚型,并说明了在这些原生动物寄生虫中发现的所有Hsp90的共伴侣和翻译后修饰。重要的是,这些寄生虫的共伴侣序列与人类同源物的差异为靶向抗寄生虫药物的发现和开发提供了一条有希望的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
mSphere
mSphere Immunology and Microbiology-Microbiology
CiteScore
8.50
自引率
2.10%
发文量
192
审稿时长
11 weeks
期刊介绍: mSphere™ is a multi-disciplinary open-access journal that will focus on rapid publication of fundamental contributions to our understanding of microbiology. Its scope will reflect the immense range of fields within the microbial sciences, creating new opportunities for researchers to share findings that are transforming our understanding of human health and disease, ecosystems, neuroscience, agriculture, energy production, climate change, evolution, biogeochemical cycling, and food and drug production. Submissions will be encouraged of all high-quality work that makes fundamental contributions to our understanding of microbiology. mSphere™ will provide streamlined decisions, while carrying on ASM''s tradition for rigorous peer review.
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