Patra Mahesh Chandra, Maharana Jitendra, Dehury Budheswar, De Sachinandan
Animal Genomics Laboratory, Animal Biotechnology Centre, National Dairy Research Institute, Karnal-132001, Haryana, India.
Mol Biosyst. 2014 Aug;10(8):2236-46. doi: 10.1039/c4mb00214h.
Neuropeptide B/W receptor 1 (NPBWR1), previously known as G-protein coupled receptor 7 (GPR7), is a class A G-protein coupled receptor implicated in the modulation of several neuroendocrine functions such as feeding behavior, energy homeostasis, epilepsy, and analgesia. In recent years, a few antagonists have been designed that bind to NPBWR1 with high affinity. However, the exact binding modes between the antagonists and the receptor are still unknown. Unraveling the key pharmacophoric features of the receptor will guide the development of novel compounds with increased potency for therapeutic use. Here, we studied the structural organization of NPBWR1 receptor and its antagonist binding modes through computational approaches. Based on the dynamics and energetic features of receptor-ligand interactions, we categorized the binding affinities of the antagonists for NPBWR1 and identified key residues responsible for ligand recognition by NPBWR1. Binding free energy calculations revealed that the residues Trp102(ECL1), Val113(3.29), Gln281(ECL3), and Ala274(6.58) were crucial for ligand interaction. The results of our study will be useful to understand the structure-function relationship of NPBWR1 that may assist future drug discovery initiatives.
神经肽B/W受体1(NPBWR1),以前称为G蛋白偶联受体7(GPR7),是一种A类G蛋白偶联受体,参与调节多种神经内分泌功能,如进食行为、能量稳态、癫痫和镇痛。近年来,已经设计出了几种与NPBWR1具有高亲和力的拮抗剂。然而,拮抗剂与受体之间的确切结合模式仍然未知。阐明受体的关键药效特征将指导开发具有更高治疗效力的新型化合物。在这里,我们通过计算方法研究了NPBWR1受体的结构组织及其拮抗剂结合模式。基于受体-配体相互作用的动力学和能量特征,我们对拮抗剂与NPBWR1的结合亲和力进行了分类,并确定了NPBWR1识别配体的关键残基。结合自由能计算表明,色氨酸102(胞外环1)、缬氨酸113(3.29)、谷氨酰胺281(胞外环3)和丙氨酸274(6.58)残基对于配体相互作用至关重要。我们的研究结果将有助于理解NPBWR1的结构-功能关系,这可能有助于未来的药物发现工作。