Geriatric Research, Educational and Clinical Center, Veterans Affairs Pittsburgh Health Care System, Pittsburgh, PA 15261, United States.
Prog Neurobiol. 2010 Oct;92(2):184-211. doi: 10.1016/j.pneurobio.2010.05.002. Epub 2010 Jun 4.
Emerging evidence indicates that heat shock proteins (HSPs) are critical regulators in normal neural physiological function as well as in cell stress responses. The functions of HSPs represent an enormous and diverse range of cellular activities, far beyond the originally identified roles in protein folding and chaperoning. HSPs are now understood to be involved in processes such as synaptic transmission, autophagy, ER stress response, protein kinase and cell death signaling. In addition, manipulation of HSPs has robust effects on the fate of cells in neurological injury and disease states. The ongoing exploration of multiple HSP superfamilies has underscored the pluripotent nature of HSPs in the cellular context, and has demanded the recent revamping of the nomenclature referring to these families to reflect a re-organization based on structure and function. In keeping with this re-organization, we first discuss the HSP superfamilies in terms of protein structure, regulation, expression and distribution in the brain. We then explore major cellular functions of HSPs that are relevant to neural physiological states, and from there we discuss known and proposed HSP impacts on major neurological disease states. This review article presents a three-part discussion on the array of HSP families relevant to neuronal tissue, their cellular functions, and the exploration of therapeutic targets of these proteins in the context of neurological diseases.
新出现的证据表明,热休克蛋白 (HSPs) 在正常神经生理功能以及细胞应激反应中是至关重要的调节因子。HSPs 的功能代表了广泛而多样的细胞活动,远远超出了最初在蛋白质折叠和伴侣蛋白方面的作用。HSPs 现在被认为参与了突触传递、自噬、内质网应激反应、蛋白激酶和细胞死亡信号转导等过程。此外,HSP 的操纵对神经损伤和疾病状态下细胞的命运有显著影响。对多种 HSP 超家族的持续探索强调了 HSP 在细胞环境中的多能性,并要求最近对这些家族的命名法进行修订,以反映基于结构和功能的重新组织。为了与这种重新组织保持一致,我们首先根据蛋白质结构、大脑中的调节、表达和分布来讨论 HSP 超家族。然后我们探讨了 HSPs 与神经生理状态相关的主要细胞功能,由此我们讨论了 HSPs 对主要神经疾病状态的已知和提出的影响。这篇综述文章对与神经元组织相关的 HSP 家族、它们的细胞功能以及这些蛋白质在神经疾病背景下的治疗靶点的探索进行了三部分讨论。