Development of Novel Photoaffinity Ligands for the β-Adrenergic Receptor

A. Ruoho, A. Rashidbaigi, G. Hockerman, M. Larsen, J. Resek, C. Malbon
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引用次数: 3

Abstract

Abstract The successful synthesis and use of carrier-free radioiodinated β 2 -adrenergic receptor competitive antagonist photoaffinity labels (±)-[ 125 I]IABP, (±)-[ 125 I]MAPIT, (−)-[ 125 I]IAPTA, and (±)-[ 125 I]IAPCGP-12177, are described. In addition, the synthesis and use of two carrier-free radioiodinated β-adrenergic receptor agonist photoaffinity labels (±)-[ 125 I]iodoazidoprenalterol ((±)-[ 125 I]IAPr) and (−)- N -( p -azido- m -[ 125 I]iodophenethylamidoisobutyl)norepinephrine ((−)-[ 125 I]NAIN), are described. All antagonist photolabels were capable of highly specific derivatization of the purified recombinant hamster lung β 2 -adrenergic receptor. Tryptic cleavage of the photolabeled receptor into a 30-kDa radiolabeled fragment (transmembrane 1-5) and an 8-kDa radiolabeled fragment (transmembrane 6,7) showed variable Insertion ratios between the two juxtaposed domains, depending on the structure of the photolabel. Unique synthetic strategies were used for the agonist photolabels. The phenolic hydroxyl of (±)-IAPr was protected as the glucoside and deprotected enzymatically in the final step. The final coupling step in the synthesis of (−)-[ 125 I]NAIN was accomplished by reductive alkylation without protection of the catechol hydroxyls of norepinephrine using sodium cyanoborohydride. (±)-IAPr was found to be a partial agonist for the turkey erythrocyte β-adrenergic receptor and an effective photoaffinity label for the avian β-adrenergic receptor. (−)-NAIN was found to be a full agonist for the β 2 -adrenergic receptor in guinea pig lung membranes and a highly effective agonist photoaffinity label for the β 2 -adrenergic receptor. These photolabels will be useful for probing the β-adrenergic receptor binding site In order to "map" this site under nonactivated (antagonist photolabels) or activated states (agonist photolabels).
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新型β-肾上腺素能受体光亲和配体的研究进展
摘要报道了无载体放射性碘化β 2 -肾上腺素能受体竞争拮抗剂光亲和标记(±)-[125 I]IABP、(±)-[125 I]MAPIT、(−)-[125 I]IAPTA和(±)-[125 I]IAPCGP-12177的成功合成和应用。此外,还描述了两种无载体放射性碘化β-肾上腺素能受体激动剂光亲和标记(±)-[125 I]iodoazidoprenalterol((±)-[125 I]IAPr)和(−)- N -(p -叠氮- m -[125 I]碘苯乙基胺异丁基)去甲肾上腺素((−)-[125 I]NAIN)的合成和使用。所有拮抗剂光标记都能高度特异性衍生纯化重组仓鼠肺β 2 -肾上腺素能受体。光标记受体的胰蛋白酶裂解成一个30 kda的放射性标记片段(跨膜1-5)和一个8 kda的放射性标记片段(跨膜6 - 7),两个并列结构域之间的插入比例不同,这取决于光标记的结构。激动剂光标记采用了独特的合成策略。(±)-IAPr的酚羟基作为糖苷被保护,并在最后一步酶解保护。合成(−)-[125 I]NAIN的最后偶联步骤是在不保护去甲肾上腺素儿茶酚羟基的情况下,用氰硼氢化钠进行还原性烷基化。(±)-IAPr是火鸡红细胞β-肾上腺素能受体的部分激动剂,也是禽类β-肾上腺素能受体的有效光亲和标记物。(−)-NAIN是豚鼠肺膜β 2 -肾上腺素能受体的完全激动剂,也是β 2 -肾上腺素能受体的高效光亲和性激动剂。这些光标记将有助于探测β-肾上腺素能受体结合位点,以便在非激活(拮抗剂光标记)或激活状态(激动剂光标记)下“绘制”该位点。
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