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Thermostabilisation of an agonist-bound conformation of the human adenosine A(2A) receptor.

机译:人腺苷A(2A)受体激动剂结合构象的热稳定作用。

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The adenosine A(2A) receptor (A(2A)R) is a G-protein-coupled receptor that plays a key role in transmembrane signalling mediated by the agonist adenosine. The structure of A(2A)R was determined recently in an antagonist-bound conformation, which was facilitated by the T4 lysozyme fusion in cytoplasmic loop 3 and the considerable stabilisation conferred on the receptor by the bound inverse agonist ZM241385. Unfortunately, the natural agonist adenosine does not sufficiently stabilise the receptor for the formation of diffraction-quality crystals. As a first step towards determining the structure of A(2A)R bound to an agonist, the receptor was thermostabilised by systematic mutagenesis in the presence of the bound agonist [(3)H]5'-N-ethylcarboxamidoadenosine (NECA). Four thermostabilising mutations were identified that when combined to give mutant A(2A)R-GL26, conferred a greater than 200-fold decrease in its rate of unfolding compared to the wild-type receptor. Pharmacological analysis suggested that A(2A)R-GL26 is stabilised in an agonist-bound conformation because antagonists bind with up to 320-fold decreased affinity. None of the thermostabilising mutations are in the ZM241385 binding pocket, suggesting that the mutations affect ligand binding by altering the conformation of the receptor rather than through direct interactions with ligands. A(2A)R-GL26 shows considerable stability in short-chain detergents, which has allowed its purification and crystallisation.
机译:腺苷A(2A)受体(A(2A)R)是一种G蛋白偶联受体,在激动剂腺苷介导的跨膜信号传导中起关键作用。 A(2A)R的结构最近以拮抗剂结合的构象确定,这是由于胞质环3中的T4溶菌酶融合和结合的反向激动剂ZM241385赋予了受体相当大的稳定性而促进的。不幸的是,天然激动剂腺苷不能充分稳定受体以形成衍射质量的晶体。作为确定与激动剂结合的A(2A)R结构的第一步,在结合的激动剂[(3)H] 5'-N-乙基羧酰胺基腺苷(NECA)存在下,通过系统诱变使受体热稳定。鉴定出四个热稳定突变,当与突变体A(2A)R-GL26结合使用时,与野生型受体相比,其解折叠速率降低幅度大于200倍。药理分析表明,A(2A)R-GL26被稳定在激动剂结合的构象中,因为拮抗剂结合时最多可降低320倍的亲和力。 ZM241385的结合口袋中没有一个热稳定突变,这表明该突变通过改变受体的构象而不是通过与配体的直接相互作用来影响配体结合。 A(2A)R-GL26在短链去污剂中显示出相当大的稳定性,这使其可以纯化和结晶。

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