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Cloning, Sequencing, andIn SilicoAnalysis ofβ-Propeller PhytaseBacillus licheniformisStrain PB-13

机译:β-螺旋植酸酶地衣芽孢杆菌PB-13菌株的克隆,序列分析及计算机分析

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β-Propeller phytases (BPPhy) are widely distributed in nature and play a major role in phytate-phosphorus cycling. In the present study, a BPPhy gene fromBacillus licheniformisstrain was expressed inE. coliwith a phytase activity of 1.15 U/mL and specific activity of 0.92 U/mg proteins. The expressed enzyme represented a full length ORF “PhyPB13” of 381 amino acid residues and differs by 3 residues from the closest similar existing BPPhy sequences. The PhyPB13 sequence was characterizedin silicousing various bioinformatic tools to better understand structural, functional, and evolutionary aspects of BPPhy class by multiple sequence alignment and homology search, phylogenetic tree construction, variation in biochemical features, and distribution of motifs and superfamilies. In all sequences, conserved sites were observed toward their N-terminus and C-terminus. Cysteine was not present in the sequence. Overall, three major clusters were observed in phylogenetic tree with variation in biophysical characteristics. A total of 10 motifs were reported with motif “1” observed in all 44 protein sequences and might be used for diversity and expression analysis of BPPhy enzymes. This study revealed important sequence features of BPPhy and pave a way for determining catalytic mechanism and selection of phytase with desirable characteristics.
机译:β-螺旋桨植酸酶(BPPhy)在自然界中分布广泛,并在植酸磷循环中起主要作用。在本研究中,地衣芽孢杆菌的BPPhy基因在E中表达。大肠杆菌的植酸酶活性为1.15 / U / mL,比活为0.92 U / mg蛋白。表达的酶代表了381个氨基酸残基的全长ORF“ PhyPB13”,并且与最接近的现有BPPhy序列相差3个残基。 PhyPB13序列通过多种生物信息学工具进行计算机表征,以通过多序列比对和同源性搜索,系统树构建,生化特征变异以及基序和超家族分布,更好地了解BPPhy类的结构,功能和进化方面。在所有序列中,在其N末端和C末端均观察到保守位点。该序列中不存在半胱氨酸。总体而言,在系统发育树中观察到三个主要簇,其生物物理特征均发生变化。总共报告了10个基序,在所有44个蛋白质序列中均观察到基序“ 1”,可用于BPPhy酶的多样性和表达分析。这项研究揭示了BPPhy的重要序列特征,并为确定具有理想特性的植酸酶的催化​​机理和选择铺平了道路。

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