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对七鳃鳗基因型的分析为半胱氨酸天冬氨酸蛋白酶的进化和功能分化提供了新视角。

Analysis of the lamprey genotype provides insights into caspase evolution and functional divergence.

机构信息

College of Life Sciences, Liaoning Normal University, Dalian, 116081, China; Lamprey Research Center, Liaoning Normal University, Dalian, 116081, China.

College of Life Sciences, Liaoning Normal University, Dalian, 116081, China; Lamprey Research Center, Liaoning Normal University, Dalian, 116081, China.

出版信息

Mol Immunol. 2021 Apr;132:8-20. doi: 10.1016/j.molimm.2021.01.017. Epub 2021 Jan 29.

Abstract

The cysteine-containing aspartate specific proteinase (caspase) family plays important roles in apoptosis and the maintenance of homeostasis in lampreys. We conducted genomic and functional comparisons of six distinct lamprey caspase groups with human counterparts to determine how these expanded molecules evolved to adapt to the changing caspase-mediated signaling pathways. Our results showed that lineage-specific duplication and rearrangement were responsible for expanding lamprey caspases 3 and 7, whereas caspases 1, 6, 8, and 9 maintained a relatively stable genome and protein structure. Lamprey caspase family molecules displayed various expression patterns and were involved in the innate immune response. Caspase 1 and 7 functioned as a pattern recognition receptor with a broad-spectrum of microbial recognition and bactericidal effect. Additionally, caspases 1 and 7 may induce cell apoptosis in a time- and dose-dependent manner; however, apoptosis was inhibited by caspase inhibitors. Thus, these molecules may reflect the original state of the vertebrates caspase family. Our phylogenetic and functional data provide insights into the evolutionary history of caspases and illustrate their functional characteristics in primitive vertebrates.

摘要

含半胱氨酸的天冬氨酸特异性蛋白酶(caspase)家族在脊椎动物的凋亡和体内平衡维持中发挥着重要作用。我们对六种不同的七鳃鳗 caspase 与人类 caspase 进行了基因组和功能比较,以确定这些扩展的分子是如何进化以适应不断变化的 caspase 介导的信号通路。研究结果表明,谱系特异性复制和重排导致了七鳃鳗 caspase3 和 caspase7 的扩张,而 caspase1、caspase6、caspase8 和 caspase9 则保持了相对稳定的基因组和蛋白结构。七鳃鳗 caspase 家族分子表现出不同的表达模式,并参与先天免疫反应。caspase1 和 caspase7 作为模式识别受体,具有广谱的微生物识别和杀菌作用。此外,caspase1 和 caspase7 可能以时间和剂量依赖的方式诱导细胞凋亡,但凋亡被 caspase 抑制剂抑制。因此,这些分子可能反映了脊椎动物 caspase 家族的原始状态。我们的系统发育和功能数据提供了 caspase 进化历史的深入了解,并阐明了它们在原始脊椎动物中的功能特征。

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