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Odor binding protein as probe for a refractive index-based biosensor: new perspectives in biohazard assessment

机译:气味结合蛋白作为基于折射率的生物传感器的探针:生物危害评估中的新观点

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The odor-binding proteins (OBPs) are abundant low-molecular weight soluble proteins, which are secreted by the olfactory epithelium in the nasal mucus of vertebrates. These protein reversibly bind odorants with dissociation constants in the micromolar range. For this reason, they are good candidates as biological elements in the development of biosensors. Vertebrate OBPs belong to the lipocalin superfamily. Even if the members of this superfamily display low sequence similarity, all of them show a conserved folding pattern, that is an 8-stranded β-barrel flanked by an α-helix at the C-terminal end of the protein chain. The β-barrel defines a central apolar cavity, called calyx, whose role is to bind and transport hydrophobic odorant molecules. The detection of hazard exposure is becoming a priority in the third millennium, and OBPs are good candidates for detecting traces of explosive molecules in different environments such as luggage's storage rooms and public places. In this context, the measurement of refractive index of odor-binding protein in absence and in presence of odorant molecules have been performed in order to assess its usefulness as a probe for detection of hazardous agents. The work is instrumental to explore the possibility to realize a biosensor where the concentration of searched for substances is analyzed as a variation of the protein refractive index by means of suitable optoelectronic devices.
机译:气味结合蛋白(OBP)是丰富的低分子量可溶性蛋白质,其被鼻粘液中的嗅觉上皮分泌。这些蛋白质可逆地将气味与微摩尔范围中的解离常数结合。因此,他们是生物传感器发展中的生物元素的良好候选人。脊椎动物OBP属于脂质植物超家族。即使这种超家族的构件显示出低序列相似性,所有这些都显示出保守的折叠模式,即在蛋白质链的C末端的α-螺旋中侧翼的8链β-筒。 β-筒定义一个名为Calyx的中央腔体,其作用是结合和传递疏水性气味分子。危害暴露的检测是第三千年的优先事项,OBPS是用于检测不同环境中的爆炸分子痕迹的良好候选者,例如行李箱的储藏室和公共场所。在这种情况下,已经进行了在不存在和存在气味分子中的气味结合蛋白的折射率的测量,以评估其作为检测危险剂的探针的有用性。该工作是有助于探讨实现生物传感器的可能性,其中通过合适的光电器件分析作为蛋白质折射率的变化作为蛋白质折射率的变化。

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