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In silico studies on bacterial xylanase enzyme: Structural and functional insight

机译:在计算机上研究细菌木聚糖酶的结构和功能

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摘要

Xylans are the second most abundant form of hemicelluloses and are the second most abundant polysaccharide in nature after cellulose. To degrade xylan, microbes produce mainly xylanase enzyme. Wide range of microorganisms like fungi, bacteria, yeast, marine algae etc. are capable of producing xylanase. Main source of xylanase is fungi but industrial production of bacterial xylanase is low cost, easy downstream process and high production rate. To understand primary, secondary and tertiary structure of xylanase, in silico composition of amino acids, basic physiological characteristics; viz., pI, molecular weight, instability index, GRAVY, molar extinction coefficient, secondary structure, presence of functional domain and motifs, phylogenetic tree, salt bridge compositions are determined. In silico study of xylanase focused on 36 different bacterial sources are performed by retrieving FASTA and PDB sequences using RCSB PDB. FASTA and PDB files are proceed further in ExPASy-ProtParam, RAMPAGE, QMEAN, MEME, PSIPRED, InterProScan, MOTIF scan, ERRAT, Peptide cutter, ESBRI and MEGA 7. The instability index range (16.90–38.78) clearly indicates that the protein is highly stable. >α-helix mean value (27.11%) infers the protein is dominated by >α-helix region. The aliphatic index (39.80–90.68) gives information that the protein is highly thermostable, prevalence by alanine amino acid in aliphatic side chain. No transmembrane domain was found in the protein which confirms the enzyme is extracellular in nature. Ancestor chart analysis confirmed that it is a part of carbohydrate metabolic process and more specifically a member of glycoside hydrolase super family.
机译:木聚糖是半纤维素中第二丰富的形式,并且是仅次于纤维素的自然第二丰富的多糖。为了降解木聚糖,微生物主要产生木聚糖酶。诸如真菌,细菌,酵母,海藻等的多种微生物能够产生木聚糖酶。木聚糖酶的主要来源是真菌,但是细菌性木聚糖酶的工业生产成本低,下游工艺容易并且生产率高。了解木聚糖酶的一级,二级和三级结构,氨基酸的计算机组成,基本生理特征;即,pI,分子量,不稳定性指数,GRAVY,摩尔消光系数,二级结构,功能域和基序的存在,系统发育树,盐桥组成被确定。通过使用RCSB PDB检索FASTA和PDB序列,进行了针对36种不同细菌来源的木聚糖酶的计算机研究。 FASTA和PDB文件在ExPASy-ProtParam,RAMPAGE,QMEAN,MEME,PSIPRED,InterProScan,MOTIF扫描,ERRAT,切肽刀,ESBRI和MEGA 7中进行进一步处理。不稳定性指数范围(16.90-38.78)清楚地表明该蛋白质是高度稳定。 >α-螺旋平均值(27.11%)推断蛋白质由>α-螺旋区域占主导。脂族指数(39.80–90.68)提供的信息表明,该蛋白具有很高的热稳定性,在脂族侧链中普遍存在丙氨酸。在蛋白质中未发现跨膜结构域,这证实了该酶本质上是细胞外的。祖先图分析证实,它是碳水化合物代谢过程的一部分,更具体地说是糖苷水解酶超家族的成员。

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