Shorr R G, Heald S L, Jeffs P W, Lavin T N, Strohsacker M W, Lefkowitz R J, Caron M G
Proc Natl Acad Sci U S A. 1982 May;79(9):2778-82. doi: 10.1073/pnas.79.9.2778.
New procedures for the rapid purification and covalent labeling of the beta-adrenergic receptors have been developed that should greatly accelerate progress in the study of these widely distributed adenylate cyclase-coupled receptors. Chromatography of solubilized receptor preparations on a Sepharose-alprenolol affinity gel followed by HPLC on steric exclusion columns lead to rapid (2 days) and high yield (approximately 30%) purification of the receptors from frog erythrocytes. The receptor obtained by these rapid procedures appears to be composed entirely of 58,000 Mr subunit(s) and to be identical to that previously purified by much lengthier procedures [Shorr, R. G. L., Lefkowitz, R. J. & Caron, M. G. (1981) J. Biol. Chem. 256, 5820-5826]. A novel, very high affinity, specific beta-adrenergic antagonist, p-aminobenzylcarazolol, has also been synthesized. It can be radioiodinated to theoretical specific radioactivity with 125I (2,200 Ci/mmol). This radioligand, which possesses an arylamine moiety, may then be covalently incorporated into the receptor binding subunit (58,000 Mr peptide) of the frog erythrocyte membranes by the use of the bifunctional photoactive crosslinker N-succinimidyl-6-(4'-azido-2'- nitrophenylamino)hexanoate (SANAH). Covalent incorporation is blocked by various drugs with a strict beta-adrenergic specificity. This suggests that the photoaffinity crosslinking approach may be useful for labeling a variety of small molecule and neurotransmitter receptors when appropriate ligands can be synthesized.
已经开发出用于β-肾上腺素能受体快速纯化和共价标记的新方法,这应该会大大加速对这些广泛分布的腺苷酸环化酶偶联受体的研究进展。将溶解的受体制剂在琼脂糖-阿普洛尔亲和凝胶上进行色谱分离,然后在空间排阻柱上进行高效液相色谱,可从蛙红细胞中快速(2天)且高产率(约30%)地纯化受体。通过这些快速方法获得的受体似乎完全由58,000道尔顿的亚基组成,并且与先前通过长得多的方法纯化的受体相同[Shorr, R. G. L., Lefkowitz, R. J. & Caron, M. G. (1981) J. Biol. Chem. 256, 5820 - 5826]。还合成了一种新型的、具有非常高亲和力的特异性β-肾上腺素能拮抗剂,对氨基苄基咔唑洛尔。它可以用125I进行放射性碘化,达到理论比放射性(2,200 Ci/mmol)。这种具有芳胺部分的放射性配体,然后可以通过使用双功能光活性交联剂N-琥珀酰亚胺基-6-(4'-叠氮基-2'-硝基苯氨基)己酸酯(SANAH)共价结合到蛙红细胞膜的受体结合亚基(58,000道尔顿的肽)中。共价结合被具有严格β-肾上腺素能特异性的各种药物阻断。这表明当可以合成合适的配体时,光亲和交联方法可能有助于标记各种小分子和神经递质受体。