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丝氨酸蛋白酶抑制剂是从应激到衰老和疾病过程中的守门人

[Sestrins are Gatekeepers in the Way from Stress to Aging and Disease].

作者信息

Dalina A A, Kovaleva I E, Budanov A V

机构信息

Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow, 119991 Russia.

Trinity College Dublin, Dublin 2, Ireland.

出版信息

Mol Biol (Mosk). 2018 Nov-Dec;52(6):948-962. doi: 10.1134/S0026898418060046.

Abstract

Sestrins belong to a family of evolutionary conserved proteins which are found in the majority of animal species. While invertebrate genomes contain only one sestrin gene, mammalian and other vertebrate genomes comprise three highly homologous genes that encode Sestrin 1, 2 and 3 proteins (Sesn1, Sesn2 and Sesn3). Sestrins are activated in response to a variety of stimuli and trigger metabolic shifts promoting cell survival under stress conditions. Although cellular stress within an organism is often caused by external stimuli it can be induced by excess of cytokines, chemokines, reactive oxygen species which are produced during aberrant metabolic or immune processes and are involved in regulation of cell physiological states including cell death. Activation of sestrins facilitates cell adaptation to stress through stimulation of antioxidant response and autophagy through regulation of the signaling pathways mediated by AMPK and mTOR kinases. These activities are involved in protection of the organism during physical exercise and certain level of sestrins activity contributes to the development of age-related diseases. However, prolonged activation of sestrins under chronic stress may cause negative effects for the organism.

摘要

硒蛋白属于一类进化保守的蛋白质家族,在大多数动物物种中都能找到。无脊椎动物基因组仅包含一个硒蛋白基因,而哺乳动物和其他脊椎动物基因组包含三个高度同源的基因,它们编码硒蛋白1、2和3(Sesn1、Sesn2和Sesn3)。硒蛋白会因各种刺激而被激活,并在应激条件下引发代谢转变以促进细胞存活。尽管生物体内的细胞应激通常由外部刺激引起,但它也可由细胞因子、趋化因子、活性氧过量诱导产生,这些物质在异常代谢或免疫过程中产生,并参与包括细胞死亡在内的细胞生理状态的调节。硒蛋白的激活通过刺激抗氧化反应和自噬,调节由AMPK和mTOR激酶介导的信号通路,促进细胞对压力的适应。这些活动在体育锻炼期间参与对生物体的保护,一定水平的硒蛋白活性有助于与年龄相关疾病的发展。然而,在慢性应激下硒蛋白的长期激活可能会对生物体产生负面影响。

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