HSP60通过多种声音与免疫系统对话。

Francisco J Quintana, Irun R Cohen
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引用次数: 16

摘要

热休克蛋白(HSP)最初被确定为一个以其伴侣活性为特征的应激诱导蛋白家族。然而,热休克蛋白在控制免疫应答中也扮演着重要的角色:在健康受试者和自身免疫性疾病过程中,热休克蛋白是热休克蛋白特异性T细胞和抗体的靶标,相反,热休克蛋白通过先天受体信号通路影响几种免疫细胞类型的活性。此外,对热休克蛋白的免疫反应可以挖掘免疫系统状态的信息。新生儿携带HSP自身抗体。然而,这种对热休克蛋白的天然自身反应被炎症改变,这些变化可以在出生后作为生物标志物进行监测。利用抗原微阵列,我们已经证明了自身抗体模式在疾病发病前识别出易患自身免疫性糖尿病的个体。此外,多发性硬化症炎症过程的变化也反映在抗体对自身hsp的反应上。在此,我们讨论热休克蛋白及其免疫活动在炎症和自身免疫性疾病的调节和监测中的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HSP60 speaks to the immune system in many voices.

Heat shock proteins (HSP) were initially identified as a family of stress-induced proteins characterized by their chaperone activity. HSP, however, are also important players in the control of the immune response: HSP are targeted by HSP-specific T cells and antibodies in healthy subjects and also during the course of autoimmune disorders and, conversely, HSP influence the activity of several immune cell types via innate receptor signalling pathways. In addition, the immune response to HSP can be mined for information on the state of the immune system. Newborns carry autoantibodies to HSP. However, this natural autoreactivity to HSP is modified by inflammation, and these changes can be monitored as biomarkers during postnatal life. Using antigen microarrays, we have shown that autoantibody patterns identify individuals prone to develop autoimmune diabetes before disease onset. Moreover, changes in the inflammatory process in multiple sclerosis are also reflected in the antibody response to self-HSP. Herein, we discuss the relevance of HSP and their immune activities for the regulation and monitoring of inflammation and autoimmune disease.

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