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虾血蓝蛋白亚型的进化适应及其对结构和功能的影响。

The evolutionary adaptation of shrimp hemocyanin subtypes and the consequences on their structure and functions.

机构信息

Guangdong Provincial Key Laboratory of Marine Biotechnology, Institute of Marine Sciences, Shantou University, Shantou, 515063, China.

Key Laboratory of Tropical Marine Bio-resources and Ecology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, China.

出版信息

Fish Shellfish Immunol. 2024 Feb;145:109347. doi: 10.1016/j.fsi.2023.109347. Epub 2023 Dec 30.

Abstract

Hemocyanin is the main respiratory protein of arthropods and is formed by hexameric and/or oligomeric subunits. Due to changes in the living environment and gene rearrangement, various hemocyanin subtypes and subunits evolved in crustaceans. This paper reviews the various hemocyanin subtypes and isoforms in shrimp and analyses published genomic data of sixteen hemocyanin family genes from Litopenaeus vannamei to explore the evolution of hemocyanin genes, subunits, and protein structure. Analysis of hemocyanin subtypes distribution and structure in various tissues was also performed and related to multiple and tissue-specific functions, i.e., immunological activity, immune signaling, phenoloxidase activity, modulation of microbiota homeostasis, and energy metabolism. The functional diversity of shrimp hemocyanin due to molecular polymorphism, transcriptional regulation, alternative splicing, degradation into functional peptides, interaction with other proteins or genes, and structural differences will also be highlighted for future research. Inferences would be drawn from other crustaceans to explain how evolution has changed the structure-function of hemocyanin and its implication for evolutionary research into the multifunctionality of hemocyanin and other related proteins in shrimp.

摘要

血蓝蛋白是节肢动物的主要呼吸蛋白,由六聚体和/或寡聚体亚基组成。由于生活环境的变化和基因重排,甲壳动物中进化出了各种血蓝蛋白亚型和亚基。本文综述了虾类的各种血蓝蛋白亚型和同工型,并分析了来自凡纳滨对虾的 16 个血蓝蛋白家族基因的已发表基因组数据,以探讨血蓝蛋白基因、亚基和蛋白质结构的进化。还分析了各种组织中血蓝蛋白亚型的分布和结构,并与多种组织特异性功能相关,如免疫活性、免疫信号、酚氧化酶活性、调节微生物组稳态和能量代谢。虾血蓝蛋白由于分子多态性、转录调控、选择性剪接、降解为功能肽、与其他蛋白质或基因相互作用以及结构差异而产生的功能多样性也将为未来的研究提供重点。还将从其他甲壳动物中进行推断,以解释进化如何改变血蓝蛋白的结构-功能及其对虾类血蓝蛋白和其他相关蛋白质多功能性进化研究的意义。

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