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水蛭素及其编码基因在[具体内容缺失]中的比较研究 。 (你提供的原文不完整,缺少具体研究对象的信息,所以只能翻译到这个程度)

Comparative Study of Hirudins and Encoding Genes in and .

作者信息

Yin Jingjing, Liu Zichao, Yu Yunfei, Wang Anping, Huang Zuhao, Tang Lizhou, Zhao Fang, Lin Gonghua

机构信息

School of Life Sciences, Key Laboratory of Jiangxi Province for Biological Invasion and Biosecurity, Jinggangshan University, Ji'an 343009, China.

School of Agronomy and Life Sciences, Kunming University, Kunming 650214, China.

出版信息

Biology (Basel). 2025 Sep 11;14(9):1250. doi: 10.3390/biology14091250.

Abstract

This study systematically compared the genetic characteristics and functional activities of hirudins and their encoding genes between (Hnip1-3) and (Htia1-3) through bioinformatics analysis, recombinant protein eukaryotic expression, and activity assays. The results revealed 42 nucleotide variation sites and 27 amino acid variation sites across both species. All six genes were expressed and significant pairwise differences between genes were detected within each species. All hirudins were identified as secretory proteins, with Hnip2, Hnip3, and Htia1 showing higher docking scores with thrombin. Four recombinant proteins (Hnip1, Hnip2, Htia1, and Htia2) exhibited antithrombin activity, with Hnip1 displaying the strongest activity. No significant differences were observed in the sequence variation, gene expression, physicochemical properties, predicted three-dimensional structures, or antithrombin activity of hirudins between the two leech species. This may stem from substantial heterogeneity in the genetic makeup and functional characteristics of distinct hirudins within each species, ultimately reducing the statistical power of these interspecific comparisons. Integrating gene expression profiles with recombinant protein activity assessments revealed that hirudins exhibit superior antithrombotic potency compared to those of . This study establishes a theoretical foundation for medicinal leech resource development and provides critical data for innovative antithrombotic drug discovery.

摘要

本研究通过生物信息学分析、重组蛋白真核表达及活性测定,系统比较了(Hnip1 - 3)和(Htia1 - 3)两种水蛭中水蛭素及其编码基因的遗传特征和功能活性。结果显示,两种水蛭的基因共有42个核苷酸变异位点和27个氨基酸变异位点。六个基因均有表达,且在每个物种内基因间检测到显著的成对差异。所有水蛭素均被鉴定为分泌蛋白,其中Hnip2、Hnip3和Htia1与凝血酶的对接分数较高。四种重组蛋白(Hnip1、Hnip2、Htia1和Htia2)表现出抗凝血酶活性,其中Hnip1的活性最强。两种水蛭的水蛭素在序列变异、基因表达、理化性质、预测的三维结构或抗凝血酶活性方面未观察到显著差异。这可能源于每个物种内不同水蛭素在遗传组成和功能特性上存在大量异质性,最终降低了这些种间比较的统计学效力。将基因表达谱与重组蛋白活性评估相结合表明,[具体水蛭名称1]的水蛭素比[具体水蛭名称2]的水蛭素具有更强的抗血栓形成能力。本研究为药用水蛭资源开发奠定了理论基础,并为创新抗血栓药物发现提供了关键数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cff5/12466982/c42ed82f6b07/biology-14-01250-g001.jpg

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