首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Immobilized angiotensin II type I receptor: A powerful method of high throughput screening for antihypertensive compound identification through binding interaction analysis
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Immobilized angiotensin II type I receptor: A powerful method of high throughput screening for antihypertensive compound identification through binding interaction analysis

机译:固定化血管紧张素II型I受体:通过结合相互作用分析的抗高血量复合鉴定的高通量筛选方法

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The enormous growth in drug discovery paradigm has necessitated continuous exploration of new methods for drug-protein interaction analysis. To enhance the role of these methodologies in designing rational drugs, this work extended an immobilized angiotensin II type I receptor (AT(1)R) based affinity chromatography in antihypertensive compound identification. We fused haloalkane dehalogenase at C-terminus of AT(1)R and expressed the fusion receptor in E. coli. The expressed receptor was covalently immobilized onto 8.0 mu m microspheres by mixing the cell lysate with 6-chlorocaproic acid-modified amino polystyrene microspheres. The immobilized AT(1)R was utilized for thermodynamic and kinetic interaction analysis between the receptor and four specific ligands. Following confirmation of these interactions by molecular docking, we identified puerarin and rosmarinic acid by determining their binding to the receptor. Azilsartan, candesartan, valsartan and olmesartan displayed two kinds of binding sites to AT(1)R by injection amount-dependent method. By molecular docking, we recognize the driving forces of the interaction as electrostatic interaction, hydrogen bonds and van der Waals force. The dissociation rate constants (k(d)) of azilsartan, candesartan, valsartan and olmesartan to AT(1)R were 0.01138 +/- 0.003, 0.05142 +/- 0.003, 0.07547 +/- 0.004 and 0.01310 +/- 0.005 min(-1) by peak profiling assay. Comparing with these parameters, puerarin and rosmarinic acid presented lower affinity (K-A: 0.12 x 10(4) and 1.5 x 10(4)/M) and slower kinetics (k(d): 0.6864 +/- 0.03 and 0.3005 +/- 0.01 min(-1)) to the receptor. These results, taking together, indicated that the immobilized AT(1)R has the capacity to probe antihypertensive compounds. (C) 2020 Elsevier B.V. All rights reserved.
机译:药物发现范式的巨大增长需要持续探索药物 - 蛋​​白质相互作用分析的新方法。为了提高这些方法在设计合理药物方面的作用,这项工作扩展了固定化的血管紧张素II型受体(在(1)R)的基于抗高血压化合物鉴定中的亲和层析。我们在(1)R的C末端熔融卤烷脱氢酶,并在大肠杆菌中表达融合受体。通过将细胞裂解物与6-氯己酸改性的氨基聚苯乙烯微球混合,将表达的受体共价固定在80μm微球上。 (1)R的固定化用于受体和四种特定配体之间的热力学和动力学相互作用分析。通过分子对接确认这些相互作用后,通过确定其与受体的结合来鉴定葛根素和罗霉素。 Azilsartan,Candaartan,Valsartan和Olmesartan通过注射量依赖性方法显示两种结合位点,以(1)r为单位。通过分子对接,我们认识到相互作用作为静电相互作用,氢键和范德瓦尔力的驱动力。将唑烷,坎萨沙坦,缬沙坦和奥尔莫沙坦和Olmesartan的解离速率常数(K(D))为(1)R为0.01138 +/- 0.003,0.05142 +/- 0.003,0.07547 +/- 0.004和0.01310 +/- 0.005分钟( -1)通过峰分析测定。与这些参数,葛根素和罗斯马啉酸呈下亲和力(Ka:0.12×10(4)和1.5×10(4)/ m)和较慢的动力学(K(d):0.6864 +/- 0.03和0.3005 +/-对受体0.01分钟(-1))。这些结果占用,表明(1)R固定化具有探针抗高血压化合物的能力。 (c)2020 Elsevier B.v.保留所有权利。

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