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应激产生的活性氧使血细胞能够释放生长阻断肽(GBP)加工酶的激活剂。

Stress-derived reactive oxygen species enable hemocytes to release activator of growth blocking peptide (GBP) processing enzyme.

机构信息

Department of Applied Biological Sciences, Saga University, Saga 840-8502, Japan.

Institute of Low Temperature Science, Hokkaido University, Sapporo 060-0819, Japan.

出版信息

J Insect Physiol. 2021 May-Jun;131:104225. doi: 10.1016/j.jinsphys.2021.104225. Epub 2021 Mar 16.

Abstract

Insect cytokine growth blocking peptide (GBP) is synthesized as an inactive precursor, termed proGBP, that is normally present in a significant concentration in the hemolymph of non-stressed animals (Hayakawa, 1990, 1991). Under stress conditions, proGBP is instantly processed to active GBP by a serine protease and this is thought to be an important initial step for insects to cope with stress-induced adverse effects via GBP-induced physiological changes. However, the detailed mechanism underlying proteolytic processing of hemolymph proGBP in insects under stress conditions remains unknown. Here we demonstrated that proGBP processing requires ROS-induced release of a proteinaceous factor from hemocytes that activates the inactive proGBP processing enzyme. The release of the activator protein from hemocytes is initiated by an elevation of the cytoplasmic Ca concentration induced by ROS. Therefore, we concluded that stress-induced activation of proGBP requires ROS-dependent stimulation of an intracellular calcium signaling pathway in hemocytes, followed by release of the hemocyte proteinaceous factor that specifically activates the proGBP processing enzyme.

摘要

昆虫细胞因子生长阻断肽(GBP)作为一种无活性的前体被合成,称为 proGBP,通常在非应激动物的血淋巴中以显著浓度存在(Hayakawa,1990,1991)。在应激条件下,proGBP 被丝氨酸蛋白酶即时加工为有活性的 GBP,这被认为是昆虫通过 GBP 诱导的生理变化来应对应激诱导的不利影响的重要初始步骤。然而,应激条件下昆虫血淋巴 proGBP 的蛋白水解加工的详细机制尚不清楚。在这里,我们证明 proGBP 加工需要 ROS 诱导的来自血血细胞的蛋白因子的释放,该因子激活无活性的 proGBP 加工酶。激活蛋白从血血细胞中的释放是由 ROS 诱导的细胞质 Ca 浓度升高引发的。因此,我们得出结论,应激诱导的 proGBP 激活需要 ROS 依赖性刺激血血细胞中的细胞内钙信号通路,然后释放专门激活 proGBP 加工酶的血血细胞蛋白因子。

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