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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Structural basis of the substrate specificity of the FPOD/FAOD family revealed by fructosyl peptide oxidase from Eupenicillium terrenum
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Structural basis of the substrate specificity of the FPOD/FAOD family revealed by fructosyl peptide oxidase from Eupenicillium terrenum

机译:陆地杜仲中的果糖基肽氧化酶揭示了FPOD / FAOD家族底物特异性的结构基础

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摘要

The FAOD/FPOD family of proteins has the potential to be useful for the longterm detection of blood glucose levels in diabetes patients. A bottleneck for this application is to find or engineer a FAOD/FPOD family enzyme that is specifically active towards alpha-fructosyl peptides but is inactive towards other types of glycated peptides. Here, the crystal structure of fructosyl peptide oxidase from Eupenicillium terrenum (EtFPOX) is reported at 1.9 angstrom resolution. In contrast to the previously reported structure of amadoriase II, EtFPOX has an open substrate entrance to accommodate the large peptide substrate. The functions of residues critical for substrate selection are discussed based on structure comparison and sequence alignment. This study reveals the first structural details of group I FPODs that prefer alpha-fructosyl substrates and could provide significant useful information for uncovering the mechanism of substrate specificity of FAOD/FPODs and guidance towards future enzyme engineering for diagnostic purposes.
机译:FAOD / FPOD蛋白家族有潜力用于长期检测糖尿病患者的血糖水平。该应用的瓶颈是找到或工程化对α-果糖基肽具有特异性但对其他类型的糖基化肽无活性的FAOD / FPOD家族酶。在此,报道了来自陆地杜仲(Eupenicillium terrenum)的果糖基肽氧化酶(EtFPOX)的晶体结构为1.9埃的分辨率。与先前报道的amadoriase II结构相反,EtFPOX具有开放的底物入口以容纳大的肽底物。基于结构比较和序列比对,讨论了对底物选择至关重要的残基功能。这项研究揭示了第I类FPOD的第一个结构细节,该结构更喜欢α-果糖基底物,并且可以为揭示FAOD / FPOD底物特异性的机理提供重要的有用信息,并为将来的酶工程诊断提供指导。

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