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热休克蛋白作为疫苗开发中的有力武器。

Heat-shock proteins as powerful weapons in vaccine development.

作者信息

Bolhassani Azam, Rafati Sima

机构信息

Molecular Immunology and Vaccine Research Laboratory, Pasteur Institute of Iran, Tehran, Iran.

出版信息

Expert Rev Vaccines. 2008 Oct;7(8):1185-99. doi: 10.1586/14760584.7.8.1185.

Abstract

Heat-shock proteins (HSPs) have been known as multifunctional proteins. They facilitate the folding and unfolding of proteins, participate in vesicular transport processes, prevent protein aggregation in the densely packed cytosol and are involved in signaling processes. HSPs have been involved in different fields, including autoimmunity, immunity to infections and tumor immunology. Although there are many different kinds of HSPs, only some HSPs, including HSP70 and Gp96, have immunological properties. HSP molecules have been applied into DNA- or protein (peptide)-based vaccines as antigens, chaperones or adjuvants. HSP-based vaccines have been shown to immunize against cancer and infectious diseases in both prophylactic and therapeutic protocols. The immunogenicity of HSPs results from two different properties: a peptide-dependent capacity to chaperone and elicit adaptive cytotoxic T-lymphocyte responses against antigenic peptides and a peptide-independent immunomodulatory capacity. Furthermore, HSPs could be immunoregulatory agents with potent and widely applicable therapeutic uses. Accordingly, certain HSPs, such as HSP70 and Gp96, are highly effective carrier molecules for cross-presentation. Their ability in eliciting immune responses against different pathogens (parasite and virus) and their role in cancer immunity will be discussed in this review.

摘要

热休克蛋白(HSPs)是已知的多功能蛋白。它们促进蛋白质的折叠与解折叠,参与囊泡运输过程,防止蛋白质在密集的胞质溶胶中聚集,并参与信号传导过程。HSPs涉及不同领域,包括自身免疫、抗感染免疫和肿瘤免疫学。尽管有许多不同种类的HSPs,但只有一些HSPs,包括HSP70和Gp96,具有免疫特性。HSP分子已作为抗原、伴侣蛋白或佐剂应用于基于DNA或蛋白质(肽)的疫苗中。基于HSP的疫苗已在预防和治疗方案中显示出对癌症和传染病具有免疫作用。HSPs的免疫原性源于两种不同特性:一种依赖肽的伴侣蛋白能力以及引发针对抗原肽的适应性细胞毒性T淋巴细胞反应的能力,另一种是不依赖肽的免疫调节能力。此外,HSPs可能是具有强大且广泛适用治疗用途的免疫调节因子。因此,某些HSPs,如HSP70和Gp96,是用于交叉呈递的高效载体分子。本文将讨论它们引发针对不同病原体(寄生虫和病毒)免疫反应的能力及其在癌症免疫中的作用。

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