Kwok Rodney, Orchard Ian
Department of Zoology, University of Toronto, Ontario, M5S 3G5, Toronto, Canada.
Peptides. 2002 Apr;23(4):765-72. doi: 10.1016/s0196-9781(01)00671-4.
A putative SchistoFLRFamide receptor in CNS membrane preparations of Locusta migratoria was characterized by cold competition binding and kinetic binding assays using [125I][Y(1)]SchistoFLRFamide ([125I]YDVDHVFLRFamide) as a radioligand. Binding to this site was saturable, specific, reversible, and of high-affinity. Data fit to a single-site binding model by non-linear regression (r(2) = 0.99) estimated K(d) = 1.73 +/- 0.45 x 10(-9) M and B(max) = 49.0 +/- 12.2 fmol.mg(-1) tissue. Total binding of [125I][Y(1)]SchistoFLRFamide to membrane preparations was reduced in the presence of GTPgammaS, an indication that the putative receptor is G protein-coupled. Structure-activity studies determined that the minimum sequence required for binding was HVFLRFamide. Other aspects of the ligand receptor interaction were also examined.
利用[125I][Y(1)]血吸虫FLRF酰胺([125I]YDVDHVFLRFamide)作为放射性配体,通过冷竞争结合和动力学结合试验对东亚飞蝗中枢神经系统膜制剂中的一种假定血吸虫FLRF酰胺受体进行了表征。与该位点的结合是可饱和的、特异性的、可逆的且具有高亲和力。通过非线性回归将数据拟合到单一位点结合模型(r(2)=0.99),估计K(d)=1.73±0.45×10(-9)M,B(max)=49.0±12.2fmol.mg(-1)组织。在GTPγS存在的情况下,[125I][Y(1)]血吸虫FLRF酰胺与膜制剂的总结合减少,这表明假定受体是G蛋白偶联的。结构-活性研究确定结合所需的最小序列是HVFLRF酰胺。还研究了配体-受体相互作用的其他方面。