Institute of Chemical Sciences, Bahauddin Zakariya University, Multan, Pakistan.
Department of Biochemistry, Government College University, Faisalabad, Pakistan.
Pak J Pharm Sci. 2020 Sep;33(5(Supplementary)):2361-2369.
Bacterial proteases are of great pharmaceutical importance and have a key role in various biological processes and in life cycle of several pathogens. New technology used for rational protein engineering as well improved delivery options will expand the potential pharmaceutical applications of proteases. The catalytic proteases belong to metalloproteases (EC.3.4.24) that comprise thermo lysine. The metalloproteases and their homologs have many important biotechnological and therapeutic applications. In the present study, a novel protease gene nprB was isolated from a thermophilic bacterium Streptomyces thermovulgaris and bioinformatics analyses were performed. PCR amplification and sequencing of nprB gene indicated an open reading frame of 178 aa (20191.18 Dalton). Based on protein sequence homology as well as conserved motifs and PTF domain the protein is characterized as a thermo lysine-like protease and is a member of M4 family of metalloproteases. Different bioinformatics tools such as ProtParam, SOPMA, signalP4.1 and ProDom from the ExPAsy server were used for structural and functional analyses. A phylogram was also reconstructed to reveal evolutionary relationships of nprB with its various homologs. The provided data will serve as a background to further reveal pharmaceutical and biotechnological importance of this novel protease gene from S. thermovulgaris in future.
细菌蛋白酶具有重要的药物学意义,在各种生物过程和多种病原体的生命周期中都起着关键作用。新的理性蛋白质工程技术以及改进的传递选择将扩大蛋白酶的潜在药物应用。催化蛋白酶属于金属蛋白酶(EC.3.4.24),包括热赖氨酸。金属蛋白酶及其同源物具有许多重要的生物技术和治疗应用。在本研究中,从嗜热细菌链霉菌中分离到一种新型蛋白酶基因 nprB,并进行了生物信息学分析。nprB 基因的 PCR 扩增和测序表明,其开放阅读框为 178 个氨基酸(20191.18 道尔顿)。基于蛋白质序列同源性以及保守基元和 PTF 结构域,该蛋白被鉴定为热赖氨酸样蛋白酶,是金属蛋白酶 M4 家族的成员。使用不同的生物信息学工具,如 ProtParam、SOPMA、signalP4.1 和 ExPAsy 服务器的 ProDom,对其结构和功能进行了分析。还构建了系统发育树,以揭示 nprB 与各种同源物之间的进化关系。提供的数据将为进一步揭示来自 S. thermovulgaris 的这种新型蛋白酶基因的药物学和生物技术重要性提供背景信息。