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在计算机上定位白芥过氧化物酶的免疫反应片段并设计一种免疫反应性较低的酶衍生物。

In silico locating the immune-reactive segments of Lepidium draba peroxidase and designing a less immune-reactive enzyme derivative.

作者信息

Fattahian Yaser, Riahi-Madvar Ali, Mirzaee Reza, Asadikaram Gholamreza, Rahbar Mohammad Reza

机构信息

Department of Biotechnology, Institute of Science and High Technology and Environmental Sciences, Graduate University of Advanced Technology, Kerman, Iran.

Department of Biotechnology, Institute of Science and High Technology and Environmental Sciences, Graduate University of Advanced Technology, Kerman, Iran.

出版信息

Comput Biol Chem. 2017 Oct;70:21-30. doi: 10.1016/j.compbiolchem.2017.07.003. Epub 2017 Jul 17.

Abstract

Peroxidases have broad applications in industry, environmental as well as pharmaceutical and diagnosis. Recently applicability of peroxidases in cancer therapy was mentioned. In the present study, a horseradish peroxidase homologue from Lepidium draba was subjected to in silico analyzes aiming at identifying and locating immune-reactive regions. A derivative sequence with decreased immunogenicity and increased stability also suggested. The tertiary structure of the enzyme was predicted. The functional and structural importance of residues was annotated as well as the conservatory status of each residue. The immune-dominant regions of protein were predicted with various software. N-terminal 4 residues, NFSHTGL (186-192), PRNGN (210-214), PLVRAYADGTQKFFN (261-275), and last 4 residues in C-terminal were predicted to be the consensus immunogenic segments of L. draba peroxidase. The modifications were applied to wild type sequence in order to mitigate its immune-reactiveness. The modifications were based on predicted energetic status of residues and naturally occurred amino acids in each position of the enzyme sequence, extracted from alignment file of 150 homologous peroxidases. The new enzyme derivative is predicted to be less immune-reactive and more stable. Thus the sequence is better suited to therapeutic applications.

摘要

过氧化物酶在工业、环境以及制药和诊断领域有着广泛的应用。最近有人提到过氧化物酶在癌症治疗中的适用性。在本研究中,对来自臭独行菜的辣根过氧化物酶同源物进行了计算机分析,旨在识别和定位免疫反应区域。还提出了一种免疫原性降低且稳定性增加的衍生序列。预测了该酶的三级结构。注释了残基的功能和结构重要性以及每个残基的保守状态。使用各种软件预测了蛋白质的免疫优势区域。N端的4个残基NFSHTGL(186 - 192)、PRNGN(210 - 214)、PLVRAYADGTQKFFN(261 - 275)以及C端的最后4个残基被预测为臭独行菜过氧化物酶的共有免疫原性片段。对野生型序列进行了修饰以减轻其免疫反应性。这些修饰基于从150种同源过氧化物酶的比对文件中提取的酶序列每个位置残基的预测能量状态和天然存在的氨基酸。预测新的酶衍生物免疫反应性较低且更稳定。因此,该序列更适合用于治疗应用。

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