人类RNase3独特功能的计算机预测和体外鉴定

Pei-Chun Lien, Chien-Jung Chen, Ping-Hsueh Kuo, Tun-Wen Pai, Hsiu-Hui Chang, Y. Lai, Wei-Shuo Wu, M. Chang
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摘要

核糖核酸酶(核糖核酸酶)在包括脊椎动物、细菌、霉菌和植物在内的所有生物体内都具有外核酸酶和内核酸酶的细胞功能。人核糖核酸酶A (hRNaseA)超家族由13个具有高度结构相似性的成员组成。其中hRNase3具有rna酶、细胞毒性、硫酸堆(HS)结合活性等多种功能。对13个人类RNase A家族成员的clstal W2多序列比对结果显示,hRNase3与hRNase2的同源性为67%,相似度为76%,明显高于其他家族成员。此外,RNase 2和RNase3在灵长类动物中都是高度保守的。在hrnase3 -肝素/硫酸肝素(HS)相互作用方面,由于存在正电荷簇,预测了三个假定的肝素结合区(HBRs), 34RWRCK38 (HBR1), 75RSRFR79 (HBR2)和101RPGRR105 (HBR3)。此外,这些区域也被REMUS系统表征为所有13个RNase序列中独特的肽区。我们从蛋白质工程和结合分析中获得的实验数据表明,这些hbr确实参与了hRNase3的特征功能。总之,通过进化,hRNaseA超家族获得了新的功能,这些功能可能保存在独特的区域或结构域中,以解释额外的分子相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In Silico Prediction and In Vitro Characterization of Unique Function of Human RNase3
Ribonucleases (RNases) constitute a cellular function of exo- and endo-nucleases in all living organisms include vertebrate, bacteria, mold and plant. Human ribonuclease A (hRNaseA) super family consists of thirteen members with high structure similarities. Among which hRNase3 has multiple functions such as RNase, cytotoxicity, and heap ran sulfate (HS) binding activity. Employing Clustal W2 multiple sequence alignment of 13 human RNase A family members revealed that hRNase3 shares 67% identity and 76% similarity with hRNase2, much higher than the others. Besides, both RNase 2 and RNase3 are high conserved among primates. In terms of hRNase3-heparin/heparan sulfate (HS) interaction, three putative heparin binding regions (HBRs), 34RWRCK38 (HBR1), 75RSRFR79 (HBR2) and 101RPGRR105 (HBR3) have been predicted due to presence of positive charge clusters. Furthermore, these regions are also characterized as unique peptide regions within all 13 RNase sequences by REMUS system. Our experimental data derived from protein engineering and binding assays have demonstrated that these HBRs indeed involve in characteristic functions of hRNase3. In summary, through evolution hRNaseA super family has gained novel functions which may be preserved in the unique region or domain to account for additional molecular interactions.
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