Vauquelin Georges, Fierens Frederik Lp, Gáborik Zsuzsanna, Le Minh Tam, De Backer Jean-Paul, Hunyady László, Vanderheyden Patrick Ml
Department of Molecular and Biochemical Pharmacology, Institute for Molecular Biology and Biotechnology, Free University of Brussels (VUB), B-1640 Sint-Genesius Rode, Belgium, gvauquel@ vub.ac.be.
Department of Molecular and Biochemical Pharmacology, Institute for Molecular Biology and Biotechnology, Free University of Brussels (VUB), B-1640 Sint-Genesius Rode, Belgium.
J Renin Angiotensin Aldosterone Syst. 2001 Mar;2(1_suppl):S32-S36. doi: 10.1177/14703203010020010501.
To explain the insurmountable/long-lasting binding of biphenyltetrazole-containing AT1-receptor antagonists such as candesartan, to the human angiotensin II type 1-receptor, a model is proposed in which the basic amino acids Lys199 and Arg 167 of the receptor interact respectively with the carboxylate and the tetrazole group of the antagonists. To validate this model, we have investigated the impact of substitution of Lys199 by Ala or Gln and of Arg167 by Ala on the binding properties of [3H]candesartan and on competition binding by candesartan, EXP3174, irbesartan, losartan, angiotensin II (Ang II) and [Sar1-Ile8]angiotensin. Our results indicate that both amino acids play an important role in the AT1-receptor ligand binding. Whereas the negative charge of Lys 199 is involved in an ionic bond with the end-standing carboxylate group of the peptide ligands, its polarity also contributes to the non-peptide antagonist binding. Substitution of Arg167 by Ala completely abolished [3H]Ang II, as well as [3H] candesartan, binding. Whereas these results are in line with the proposed model, it cannot be excluded that both amino acid residues are important for the structural integrity of the AT1-receptor with respect to its ligand binding properties.
为了解释含联苯四唑的血管紧张素II 1型受体拮抗剂(如坎地沙坦)与人血管紧张素II 1型受体之间不可逾越的/持久的结合,我们提出了一个模型,即受体的碱性氨基酸Lys199和Arg 167分别与拮抗剂的羧酸盐和四唑基团相互作用。为了验证该模型,我们研究了用丙氨酸或谷氨酰胺取代Lys199以及用丙氨酸取代Arg167对[3H]坎地沙坦结合特性以及坎地沙坦、EXP3174、厄贝沙坦、氯沙坦、血管紧张素II(Ang II)和[Sar1-Ile8]血管紧张素竞争结合的影响。我们的结果表明,这两种氨基酸在血管紧张素II 1型受体配体结合中都起着重要作用。Lys 199的负电荷参与了与肽配体末端羧酸盐基团的离子键,其极性也有助于非肽拮抗剂的结合。用丙氨酸取代Arg167完全消除了[3H]Ang II以及[3H]坎地沙坦的结合。虽然这些结果与所提出的模型一致,但不能排除这两个氨基酸残基对于血管紧张素II 1型受体与其配体结合特性相关的结构完整性都很重要。