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In Silico Characterization of Histidine Acid Phytase Sequences

机译:组氨酸酸性植酸酶序列的计算机表征

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摘要

Histidine acid phytases (HAPhy) are widely distributed enzymes among bacteria, fungi, plants, and some animal tissues. They have a significant role as an animal feed enzyme and in the solubilization of insoluble phosphates and minerals present in the form of phytic acid complex. A set of 50 reference protein sequences representing HAPhy were retrieved from NCBI protein database and characterized for various biochemical properties, multiple sequence alignment (MSA), homology search, phylogenetic analysis, motifs, and superfamily search. MSA using MEGA5 revealed the presence of conserved sequences at N-terminal “RHGXRXP” and C-terminal “HD.” Phylogenetic tree analysis indicates the presence of three clusters representing different HAPhy, that is, PhyA, PhyB, and AppA. Analysis of 10 commonly distributed motifs in the sequences indicates the presence of signature sequence for each class. Motif 1 “SPFCDLFTHEEWIQYDYLQSLGKYYGYGAGNPLGPAQGIGF” was present in 38 protein sequences representing clusters 1 (PhyA) and 2 (PhyB). Cluster 3 (AppA) contains motif 9 “KKGCPQSGQVAIIADVDERTRKTGEAFAAGLAPDCAITVHTQADTSSPDP” as a signature sequence. All sequences belong to histidine acid phosphatase family as resulted from superfamily search. No conserved sequence representing 3- or 6-phytase could be identified using multiple sequence alignment. This in silico analysis might contribute in the classification and future genetic engineering of this most diverse class of phytase.
机译:组氨酸酸性植酸酶(HAPhy)是细菌,真菌,植物和一些动物组织中广泛分布的酶。它们在作为动物饲料酶以及溶解以植酸复合物形式存在的不溶性磷酸盐和矿物质中具有重要作用。从NCBI蛋白质数据库中检索了代表HAPhy的50个参考蛋白质序列,并针对各种生化特性,多序列比对(MSA),同源性搜索,系统发育分析,基序和超家族搜索进行了表征。使用MEGA5的MSA显示在N端“ RHGXRXP”和C端“ HD”存在保守序列。系统发育树分析表明存在三个代表不同HAPhy的簇,即PhyA,PhyB和AppA。对序列中10个常见分布的基序的分析表明,每个类别均存在签名序列。母题1“ SPFCDLFTHEEWIQYDYLQSLGKYYGYGAGNPLGPAQGIGF”存在于代表簇1(PhyA)和簇2(PhyB)的38个蛋白质序列中。簇3(AppA)包含基序9“ KKGCPQSGQVAIIADVDERTRKTGEAFAAGLAPDCAITVHTQADTSSPDP”作为签名序列。由于超家族搜索,所有序列均属于组氨酸酸性磷酸酶家族。使用多重序列比对不能鉴定代表3-或6-植酸酶的保守序列。这种计算机分析可以为这种最多样化的植酸酶的分类和未来的基因工程做出贡献。

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