Dong Maoqing, Miller Laurence J
Mayo Clinic Scottsdale, 13400 East Shea Blvd, Scottsdale, AZ 85259, USA.
Ann N Y Acad Sci. 2006 Jul;1070:243-7. doi: 10.1196/annals.1317.022.
Using photoaffinity labeling, we have previously explored the molecular approximations between multiple positions of secretin and its receptor. Interestingly, the amino-terminal secretin probe incorporating a photolabile residue in position 1 labels the top of the sixth transmembrane domain of the receptor, whereas other probes with photolabile residue in positions 6, 12, 13, 14, 18, 22, and 26 all label the long amino-terminal domain of the secretin receptor. Recently, we have developed a secretin probe that incorporated a radioiodinatable photolabile p-(4-hydroxybenzoyl)phenylalanine in position 10 and demonstrated that it efficiently labeled the secretin receptor in a saturable and specific manner. In this work, we attempted to further map its domain of labeling by cyanogen bromide (CNBr) cleavage of the wild-type and mutant receptors. Surprisingly, this position 10 probe labeled the top of the sixth transmembrane domain of the receptor, a domain labeled by the position 1 probe. These data provide an important constraint for modeling the agonist-bound G protein-coupled secretin receptor and should add substantially to our current understanding of the molecular basis of ligand binding of this important receptor.
利用光亲和标记技术,我们之前探究了促胰液素及其受体多个位点之间的分子接近情况。有趣的是,在第1位掺入光不稳定残基的氨基末端促胰液素探针标记了受体第六跨膜结构域的顶部,而在第6、12、13、14、18、22和26位带有光不稳定残基的其他探针均标记促胰液素受体的长氨基末端结构域。最近,我们开发了一种在第10位掺入可放射性碘化的光不稳定对 -(4 - 羟基苯甲酰基)苯丙氨酸的促胰液素探针,并证明它能以饱和且特异的方式有效标记促胰液素受体。在这项工作中,我们试图通过对野生型和突变型受体进行溴化氰(CNBr)裂解来进一步定位其标记结构域。令人惊讶的是,这个第10位探针标记了受体第六跨膜结构域的顶部,该结构域是由第1位探针标记的。这些数据为模拟激动剂结合的G蛋白偶联促胰液素受体提供了重要限制,并且应该会极大地增进我们目前对这个重要受体配体结合分子基础的理解。