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A Highly Selective Biosensor Based on Peptide Directly Derived from the HarmOBP7 Aldehyde Binding Site

机译:基于直接来源于HarmOBP7醛结合位点的肽的高选择性生物传感器

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摘要

This paper presents the results of research on determining the optimal length of a peptide chain to effectively bind octanal molecules. Peptides that map the aldehyde binding site in HarmOBP7 were immobilized on piezoelectric transducers. Based on computational studies, four Odorant Binding Protein-derived Peptides (OBPPs) with different sequences were selected. Molecular modelling results of ligand docking with selected peptides were correlated with experimental results. The use of low-molecular synthetic peptides, instead of the whole protein, enabled the construction OBPPs-based biosensors. This work aims at developing a biomimetic piezoelectric OBPPs sensor for selective detection of octanal. Moreover, the research is concerned with the ligand binding affinity depending on different peptides’ chain lengths. The authors believe that the chain length can have a substantial influence on the type and effectiveness of peptide–ligand interaction. A confirmation of in silico investigation results is the correlation with the experimental results, which shows that the highest affinity to octanal is exhibited by the longest peptide (OBPP4 – KLLFDSLTDLKKKMSEC-NH ). We hypothesized that the binding of long chain aldehydes to the peptide, mimicking the binding site of HarmOBP7, induced a conformational change in the peptide deposited on a selected transducer. The constructed OBPP4-based biosensors were able to selectively bind octanal in the gas phase. It was also shown that the sensors were characterized by high selectivity with respect to octanal, as well as to acetaldehyde and benzaldehyde. The results indicate that the OBPP4 peptide, mimicking the binding domain in the Odorant Binding Protein, can provide new opportunities for the development of biomimicking materials in the field of odor biosensors.
机译:本文提出了确定有效结合辛烷分子的最佳肽链长度的研究结果。映射HarmOBP7中醛结合位点的肽被固定在压电换能器上。根据计算研究,选择了四个具有不同序列的气味结合蛋白衍生肽(OBPP)。配体与所选肽对接的分子建模结果与实验结果相关。使用低分子合成肽,而不是整个蛋白质,可以构建基于OBPPs的生物传感器。这项工作的目的是开发一种仿生压电OBPPs传感器,用于选择性检测。此外,该研究还涉及取决于不同肽链长度的配体结合亲和力。作者认为,链长可对肽-配体相互作用的类型和有效性产生重大影响。计算机研究结果的确证是与实验结果的相关性,这表明最长的肽(OBPP4 – KLLFDSLTDLKKKMSEC-NH)显示出与辛烷的最高亲和力。我们假设长链醛与肽的结合(模仿HarmOBP7的结合位点)在沉积在所选换能器上的肽中引起构象变化。构造的基于OBPP4的生物传感器能够在气相中选择性结合八烷。还显示出传感器的特征是对辛烷醛,乙醛和苯甲醛具有高选择性。结果表明,模仿气味结合蛋白中结合域的OBPP4肽可以为气味生物传感器领域中的模仿生物材料提供新的机会。

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