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通过共价交联对大鼠肠上皮中血管活性肠肽受体进行分子鉴定。存在两类具有不同结构和功能特性的结合位点的证据。

Molecular identification of receptors for vasoactive intestinal peptide in rat intestinal epithelium by covalent cross-linking. Evidence for two classes of binding sites with different structural and functional properties.

作者信息

Laburthe M, Breant B, Rouyer-Fessard C

出版信息

Eur J Biochem. 1984 Feb 15;139(1):181-7. doi: 10.1111/j.1432-1033.1984.tb07992.x.

Abstract

The cleavable cross-linking reagent dithiobis (succinimidyl propionate) or DTSP was shown to link 125I-labeled vasoactive intestinal peptide (125I-VIP) covalently to its receptors in rat intestinal epithelial membranes. DTSP treatment of 125I-VIP-labeled membranes inhibited the dissociation of VIP-receptor complexes in a way which was dependent on both time and concentration (ED50 = 200 microM). Polyacrylamide gel electrophoresis of membrane proteins revealed three 125I-VIP-protein complexes of Mr 76 000, 36 000 and 17 000. The labeling of those compounds was not observed when: (a) treatment of membranes by DTSP was omitted; (b) the reagent quench, ammonium acetate, was added together with DTSP; (c) DTSP-treated membranes were incubated with 2-mercaptoethanol which reduces the disulfide bond present within DTSP. Labeling of Mr-76 000 and Mr-36 000 complexes was specific in that it could be abolished by native VIP, while the labeling of the Mr-17 000 was not. Densitometric scanning of autoradiographs indicated that: (a) labeling of the Mr-76 000 complex was abolished by low VIP concentrations (0.03--10 nM), by VIP agonists with the relative potency VIP greater than a peptide having N-terminal histidine and C-terminal isoleucine amide greater than secretin, and by GTP (10(-5)--1 mM) but was unaffected by various other peptide hormones; (b) labeling of the Mr-36 000 complex was inhibited by high VIP concentrations (1--300 nM), by VIP agonists at high concentrations but was not affected by GTP and various peptide hormones. Assuming one molecule of 125I-VIP was bound per molecule of protein, two proteins with Mr-73 000 and 33 000 were identified as VIP binding sites. The Mr-73 000 protein displays many characteristics (affinity, specificity, discriminating power toward agonists, sensitivity to GTP regulation) of the high-affinity VIP receptors mediating adenylate cyclase activation. The Mr-33 000 protein displays the characteristics (affinity, specificity) of a low-affinity VIP binding site. This study thus shows the molecular characteristics of the VIP receptor and further argues for the molecular heterogeneity of VIP binding sites.

摘要

可裂解交联剂二硫代双(琥珀酰亚胺丙酸酯)即DTSP,已被证明可将125I标记的血管活性肠肽(125I-VIP)与其在大鼠肠上皮细胞膜中的受体共价连接。用DTSP处理125I-VIP标记的膜,以一种依赖于时间和浓度的方式抑制了VIP-受体复合物的解离(半数有效浓度=200微摩尔)。膜蛋白的聚丙烯酰胺凝胶电泳显示出三种分子量分别为76000、36000和17000的125I-VIP-蛋白复合物。在以下情况下未观察到这些化合物的标记:(a)省略用DTSP处理膜;(b)将试剂淬灭剂醋酸铵与DTSP一起加入;(c)将经DTSP处理的膜与2-巯基乙醇一起孵育,2-巯基乙醇可还原DTSP中存在的二硫键。分子量为76000和36000的复合物的标记具有特异性,因为天然VIP可将其消除,而分子量为17000的复合物的标记则不能。对放射自显影片的光密度扫描表明:(a)低浓度VIP(0.03-10纳摩尔)、相对效力VIP大于具有N端组氨酸和C端异亮氨酸酰胺的肽且大于促胰液素的VIP激动剂以及GTP(10^-5-1毫摩尔)可消除分子量为76000的复合物的标记,但不受其他各种肽类激素的影响;(b)高浓度VIP(1-300纳摩尔)、高浓度的VIP激动剂可抑制分子量为36000的复合物的标记,但不受GTP和各种肽类激素的影响。假设每个蛋白质分子结合一个125I-VIP分子,则鉴定出两种分子量分别为73000和33000的蛋白质为VIP结合位点。分子量为73000的蛋白质表现出介导腺苷酸环化酶激活的高亲和力VIP受体的许多特征(亲和力、特异性、对激动剂的辨别能力、对GTP调节的敏感性)。分子量为33000的蛋白质表现出低亲和力VIP结合位点的特征(亲和力、特异性)。因此,本研究显示了VIP受体的分子特征,并进一步论证了VIP结合位点的分子异质性。

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