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荚膜热休克蛋白 60 调控真菌适应温度胁迫。

Histoplasma capsulatum heat-shock 60 orchestrates the adaptation of the fungus to temperature stress.

机构信息

Division of Infectious Diseases, Department of Medicine, Albert Einstein College of Medicine of Yeshiva University, Bronx, New York, United States of America.

出版信息

PLoS One. 2011 Feb 10;6(2):e14660. doi: 10.1371/journal.pone.0014660.

Abstract

Heat shock proteins (Hsps) are among the most widely distributed and evolutionary conserved proteins. Hsps are essential regulators of diverse constitutive metabolic processes and are markedly upregulated during stress. A 62 kDa Hsp (Hsp60) of Histoplasma capsulatum (Hc) is an immunodominant antigen and the major surface ligand to CR3 receptors on macrophages. However little is known about the function of this protein within the fungus. We characterized Hc Hsp60-protein interactions under different temperature to gain insights of its additional functions oncell wall dynamism, heat stress and pathogenesis. We conducted co-immunoprecipitations with antibodies to Hc Hsp60 using cytoplasmic and cell wall extracts. Interacting proteins were identified by shotgun proteomics. For the cell wall, 84 common interactions were identified among the 3 growth conditions, including proteins involved in heat-shock response, sugar and amino acid/protein metabolism and cell signaling. Unique interactions were found at each temperature [30°C (81 proteins), 37°C (14) and 37/40°C (47)]. There were fewer unique interactions in cytoplasm [30°C (6), 37°C (25) and 37/40°C (39)] and four common interactions, including additional Hsps and other known virulence factors. These results show the complexity of Hsp60 function and provide insights into Hc biology, which may lead to new avenues for the management of histoplasmosis.

摘要

热休克蛋白(Hsps)是分布最广泛且进化上最保守的蛋白质之一。Hsps 是各种组成型代谢过程的重要调节剂,在应激时明显上调。荚膜组织胞浆菌(Histoplasma capsulatum,Hc)的 62kDa Hsp(Hsp60)是一种免疫优势抗原,也是巨噬细胞上 CR3 受体的主要表面配体。然而,人们对该蛋白在真菌中的功能知之甚少。我们在不同温度下对 Hc Hsp60-蛋白相互作用进行了表征,以深入了解其在细胞壁动态、热应激和发病机制方面的其他功能。我们使用针对 Hc Hsp60 的抗体进行了细胞质和细胞壁提取物的共免疫沉淀,通过鸟枪法蛋白质组学鉴定了相互作用的蛋白质。在细胞壁中,在这 3 种生长条件下鉴定出 84 种共同的相互作用,包括参与热休克反应、糖和氨基酸/蛋白质代谢以及细胞信号转导的蛋白质。在每个温度下都发现了独特的相互作用[30°C(81 种蛋白质)、37°C(14 种)和 37/40°C(47 种)]。在细胞质中,独特的相互作用较少[30°C(6 种)、37°C(25 种)和 37/40°C(39 种)],有 4 种共同的相互作用,包括其他 Hsps 和其他已知的毒力因子。这些结果表明 Hsp60 功能的复杂性,并提供了对 Hc 生物学的深入了解,这可能为治疗组织胞浆菌病开辟新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89d4/3037374/631622f54b4f/pone.0014660.g001.jpg

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