Austrian Institute of Technology GmbH, Biosensor Technologies, Konrad-Lorenz Straße, 24, 3430 Tulln, Austria.
Faculty of Biology, Institute of Molecular Physiology, Johannes Gutenberg-Universität, 55099 Mainz, Germany.
Int J Mol Sci. 2021 Jun 25;22(13):6828. doi: 10.3390/ijms22136828.
Spider mites are one of the major agricultural pests, feeding on a large variety of plants. As a contribution to understanding chemical communication in these arthropods, we have characterized a recently discovered class of odorant-binding proteins (OBPs) in . As in other species of Chelicerata, the four OBPs of contain six conserved cysteines paired in a pattern (C1-C6, C2-C3, C4-C5) differing from that of insect counterparts (C1-C3, C2-C5, C4-C6). Proteomic analysis uncovered a second family of OBPs, including twelve members that are likely to be unique to . A three-dimensional model of TurtOBP1, built on the recent X-ray structure of OBP1, shows protein folding different from that of insect OBPs, although with some common features. Ligand-binding experiments indicated some affinity to coniferyl aldehyde, but specific ligands may still need to be found among very large molecules, as suggested by the size of the binding pocket.
蜘蛛螨是主要的农业害虫之一,以多种植物为食。作为对这些节肢动物化学通讯理解的贡献,我们已经对 中发现的一类新的气味结合蛋白 (OBP) 进行了特征描述。与其他螯肢动物物种一样, 中的四个 OBP 包含六个保守的半胱氨酸配对模式 (C1-C6、C2-C3、C4-C5),与昆虫对应物 (C1-C3、C2-C5、C4-C6) 不同。蛋白质组学分析揭示了第二个 OBP 家族,包括 12 个可能是 的特有成员。基于最近的 OBP1 的 X 射线结构构建的 TurtOBP1 的三维模型显示,其蛋白折叠与昆虫 OBP 不同,尽管具有一些共同特征。配体结合实验表明对松柏醛具有一定的亲和力,但正如结合口袋的大小所表明的那样,特定的配体可能仍需要在非常大的分子中找到。