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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Exploring single-domain antibody thermostability by molecular dynamics simulation
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Exploring single-domain antibody thermostability by molecular dynamics simulation

机译:通过分子动力学模拟探索单域抗体热稳定性

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Single-domain antibodies also known as nanobodies are recombinant antigen-binding domains that correspond to the heavy-chain variable region of camelid antibodies. Previous experimental studies showed that the nanobodies have stable and active structures at high temperatures. In this study, the thermal stability and dynamics of nanobodies have been studied by employing molecular dynamics simulation at different temperatures. Variations in root mean square deviation, native contacts, and solvent-accessible surface area of the nanobodies during the simulation were calculated to analyze the effect of different temperatures on the overall conformation of the nanobody. Then, the thermostability mechanism of this protein was studied through calculation of dynamic cross-correlation matrix, principal component analyses, native contact analyses, and root mean square fluctuation. Our results manifest that the side chain conformation of some residues in the complementarity-determining region 3 (CDR3) and also the interaction between alpha-helix region of CDR3 and framework2 play a critical role to stabilize the protein at a high temperature. Communicated by Ramaswamy H. Sarma
机译:含有纳米胚层的单结构域抗体是重组抗原结合结构域,其对应于骆驼抗体的重链可变区。以前的实验研究表明,纳米级在高温下具有稳定且活性的结构。在该研究中,已经通过在不同温度下采用分子动力学模拟来研究纳米叠发的热稳定性和动力学。计算模拟期间纳米型平方偏差,天然触点和溶剂可接近的表面积的变化,以分析不同温度对纳米曲面的整体构象的影响。然后,通过计算动态互相关矩阵,主成分分析,天然接触分析以及根均方波动来研究该蛋白质的热稳定性机制。我们的结果表明,互补确定区域3(CDR3)中一些残留物的侧链构象以及CDR3和Framework2的α-螺旋区域之间的相互作用起到了稳定在高温下蛋白质的关键作用。由Ramaswamy H. Sarma沟通

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