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嗜热栖热放线菌1型多糖裂解酶家族的内切果胶酸裂解酶(PL1B)的结构建模、底物结合及稳定性研究

Structural Modelling, Substrate Binding and Stability Studies of Endopectate Lyase (PL1B) of Family 1 Polysaccharide Lyase from Clostridium thermocellum.

作者信息

Chakraborty Soumyadeep, Sharma Kedar, Mukherjee Joyeeta, Gupta Munishwar N, Goyal Arun

机构信息

Department of Biotechnology, Indian Institute of Technology Guwahati, Guwahati-781039, Assam, India.

出版信息

Protein Pept Lett. 2015;22(6):557-68. doi: 10.2174/0929866522666150506141552.

Abstract

An endo-pectate lyase (PL1B) of family 1 polysaccharide lyase from Clostridium thermocellum was structurally characterized and its stability under chaotropic agent was determined. The putative domain PL1B was identified from the protein sequence ABN53381.1 belonging to superfamily 3 of pectate lyase. Multiple sequence alignment of PL1B with other known pectate lyases revealed the conserved and semi-conserved residues. The secondary structure of PL1B predicted by PsiPred and confirmed by Circular Dichroism showed the presence of 2 α-helices (2.06%), 26 β-strands (40.54%) and 29 random coils (57.4%). The modelled protein represented right handed parallel β-helix structure, where three parallel β-sheets linked by loops coils around to form the β-helix core. Quality assessment of energy minimized structure by Ramachandran plot displayed 82.8% residues in favoured region. Superposition of PL1B structure with Bsp165-PelA from Bacillus sp. revealed the substrate binding cleft formed by the amino acid residues from the loops and β-sheet. Molecular dynamic simulation of modelled PL1B structure inferred that it is quite stable and compact. Docking studies identified Asp151, Arg209, Asn234, Arg236, Tyr271 and Ser272 as the key residues of PL1B involved during catalysis. Among them Arg209 is responsible for proton abstraction during β-elimination. Protein melting studies on PL1B showed that there was 12°C shift of peak from 74 to 86°C in presence of 0.6 mM Ca(2+) ions, showing that they provide stability to the structure. The unfolding of PL1B by GuHCl or Urea by fluorescence study showed that the protein structure is stable and disintegrates at their higher concentrations.

摘要

对热纤梭菌1型多糖裂解酶家族中的一种内切果胶酸裂解酶(PL1B)进行了结构表征,并测定了其在离液剂作用下的稳定性。从属于果胶酸裂解酶超家族3的蛋白质序列ABN53381.1中鉴定出假定的结构域PL1B。PL1B与其他已知果胶酸裂解酶的多序列比对揭示了保守和半保守残基。通过PsiPred预测并经圆二色性证实的PL1B二级结构显示存在2个α螺旋(2.06%)、26个β链(40.54%)和29个无规卷曲(57.4%)。模拟的蛋白质呈现右手平行β螺旋结构,其中由环连接的三个平行β折叠盘绕形成β螺旋核心。通过拉氏图对能量最小化结构进行的质量评估显示,82.8%的残基位于有利区域。PL1B结构与芽孢杆菌属的Bsp165-PelA的叠加显示,由环和β折叠中的氨基酸残基形成了底物结合裂缝。对模拟的PL1B结构进行分子动力学模拟推断,它相当稳定且紧密。对接研究确定Asp151、Arg209、Asn234、Arg236、Tyr271和Ser272是PL1B催化过程中的关键残基。其中Arg209负责β消除过程中的质子提取。对PL1B进行的蛋白质熔解研究表明,在存在0.6 mM Ca(2+)离子的情况下,峰值从74°C移至86°C,移动了12°C,表明它们为结构提供了稳定性。通过荧光研究用盐酸胍或尿素使PL1B展开表明,该蛋白质结构在较低浓度下稳定,在较高浓度下解体。

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