Ma Haihao, Ma Yuemin, Liu Xuehui, Dyer David H, Xu Pingyong, Liu Kaiyu, Lan Que, Hong Huazhu, Peng Jianxin, Peng Rong
School of Life Sciences, Central China Normal University, Wuhan, P.R.China.
National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, P.R.China.
Sci Rep. 2015 Dec 10;5:18186. doi: 10.1038/srep18186.
The cotton bollworm, Helicoverpa armigera, has developed strong resistance to many insecticides. Sterol Carrier Protein-2 (SCP-2) is an important non-specific lipid transfer protein in insects and appears to be a potential new target. In order to elucidate the structure and function of Helicoverpa armigera SCP-2 (HaSCP-2), NMR spectroscopy, docking simulations, mutagenesis and bioassays were performed. HaSCP-2 composed of five α-helices and four stranded β-sheets. The folds of α-helices and β-sheets interacted together to form a hydrophobic cavity with putative entrance and exit openings, which served as a tunnel for accommodating and transporting of lipids. Several sterols and fatty acids could interact with HaSCP-2 via important hydrophobic sites, which could be potential targets for insecticides. Mutagenesis experiments indicated Y51, F53, F89, F110, I117 and Q131 may be the key functional sites. HaSCP-2 showed high cholesterol binding activity and SCP-2 inhibitors (SCPIs) could inhibit the biological activity of HaSCP-2. SCPI-treated larvae at young stage showed a significant decrease of cholesterol uptake in vivo. Our study describes for the first time a NMR structure of SCP-2 in lepidopteran H. armigera and reveals its important function in cholesterol uptake, which facilitates the screening of effective insecticides targeting the insect cholesterol metabolism.
棉铃虫(Helicoverpa armigera)已对多种杀虫剂产生了很强的抗性。固醇载体蛋白2(SCP - 2)是昆虫体内一种重要的非特异性脂质转运蛋白,似乎是一个潜在的新靶点。为了阐明棉铃虫SCP - 2(HaSCP - 2)的结构与功能,进行了核磁共振光谱分析、对接模拟、诱变和生物测定。HaSCP - 2由五个α - 螺旋和四个β - 折叠片层组成。α - 螺旋和β - 折叠片层的褶皱相互作用,形成一个具有假定入口和出口的疏水腔,该腔作为容纳和运输脂质的通道。几种固醇和脂肪酸可通过重要的疏水位点与HaSCP - 2相互作用,这些位点可能是杀虫剂的潜在靶点。诱变实验表明Y51、F53、F89、F110、I117和Q131可能是关键功能位点。HaSCP - 2表现出高胆固醇结合活性,SCP - 2抑制剂(SCPIs)可抑制HaSCP - 2的生物活性。用SCPI处理的幼虫在幼龄期体内胆固醇摄取显著降低。我们的研究首次描述了鳞翅目棉铃虫中SCP - 2的核磁共振结构,并揭示了其在胆固醇摄取中的重要功能,这有助于筛选针对昆虫胆固醇代谢的有效杀虫剂。