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Exploring the role of the membrane bilayer in the recognition of candesartan by its GPCR AT1 receptor

机译:膜双层在其GPCR AT1受体中识别膜双层的作用

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Cardiovascular diseases and hypertension in particular are major health risks worldwide and the improvement on their treatment will be beneficial for the human health. AT1R antagonists belong to the sartans family that targets the renin-angiotensin aldosterone system (RAAS) through blocking the hormone angiotensin II to exert its detrimental effects in pathological states. As a consequence, they are beneficial to treat hypertension, diabetes related kidney failure and hyperaemic episodes. Long unbiased Molecular Dynamics (MD) simulations are performed in order to explore candesartan's possible 2D and 3D diffusion mechanisms towards AT1R receptor. 3D diffusion mechanism is referred to the direct binding of the AT1 antagonist candesartan to the AT1R 3D structure (PDB ID: 4YAY). 2D diffusion mechanism involves first, the incorporation of candesartan in the bilayer core and then its localization on the AT1R binding cavity, through a diffusion mechanism. The obtained results indicate that membranes interact significantly with the neutral form of candesartan, which is indeed approaching the receptors' active site through diffusion via the lipids. On the other hand, the deprotonated form of the drug is interacting with AT1R's extracellular loop and fails to enter the membrane, pointing out the importance of the pH microenvironment around the receptor. To validate the calculated diffusion coefficients of the drug in the lipid bilayers 2D DOSY NMR experiments were recorded and they were in good agreement. Information on the impact that has the interaction of candesartan with the membrane is very important for the rationally design and development of potent ARBs. Thus, its conformational features as well as its localization in the membrane core have to be thoroughly explored.
机译:心血管疾病和高血压特别是全球的主要健康风险,对其治疗的改善将有利于人类健康。 AT1R拮抗剂属于SARTANS系列,通过阻断激素血管紧张素II来诱导血管藻素II,以施加对病态状态的不利影响。因此,它们有利于治疗高血压,糖尿病相关的肾功能衰竭和高血透发作。进行长无偏析的分子动力学(MD)模拟,以便探索坎索坦可能的2D和3D扩散机制朝向AT1R受体。 3D扩散机制被称为AT1拮抗剂坎德萨的直接绑定到AT1R 3D结构(PDB ID:4Yay)。图2D扩散机构首先涉及,通过扩散机构将烛体掺入双层芯中,然后在AT1R结合腔上的定位。所得结果表明,膜与坎索坦的中性形式显着相互作用,这确实通过脂质扩散来接近受体的活性部位。另一方面,药物的脱质形式是与AT1R的细胞外环相互作用,并且未能进入膜,指出在受体周围pH微环境的重要性。为了验证药物中的药物的计算扩散系数,记录了DOSY NMR实验,并且它们非常一致。有关坎德坦与膜相互作用的影响的信息对于合理的设计和开发有效的ARB来说非常重要。因此,必须彻底探索其构象特征以及膜核心的本地化。

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