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鸟嘌呤核苷酸对[3H]血管加压素与肝细胞膜及可溶性受体结合的调节作用。鸟嘌呤核苷酸调节蛋白参与作用的证据。

Guanine nucleotide regulation of [3H]vasopressin binding to liver plasma membranes and solubilized receptors. Evidence for the involvement of a guanine nucleotide regulatory protein.

作者信息

Bojanic D, Fain J N

出版信息

Biochem J. 1986 Dec 1;240(2):361-5. doi: 10.1042/bj2400361.

Abstract

A guanine nucleotide regulatory protein may be involved in vasopressin-receptor-mediated polyphosphoinositide breakdown in rat liver. Therefore we examined the effects of the non-hydrolysable guanine nucleotide guanosine 5'-[beta gamma-imido]triphosphate (p[NH]ppG) on [3H]vasopressin ([3H]AVP) binding to hepatic plasma membranes and detergent extracts. [3H]AVP bound to a single set of high-affinity binding sites in membranes. Addition of p[NH]ppG decreased the affinity of receptor binding without altering the maximal binding capacity. The rate of dissociation of [3H]AVP from membrane-bound receptors was also enhanced by p[NH]ppG. Solubilization of [3H]AVP-prelabelled membranes with dodecyl beta-D-maltoside resulted in a [3H]AVP-receptor complex that was unstable in solution. Incubation of these extracts for 5 min at 30 degrees C resulted in a 40% loss of bound [3H]AVP, whereas in the presence of p[NH]ppG there was a 54% loss. However, when membranes were prelabelled with [3H]AVP and p[NH]ppG and then solubilized, the resulting hormone-receptor complex was still temperature-labile but insensitive to the further addition of p[NH]ppG. The molecular size of soluble vasopressin receptors was estimated by gel filtration. The [3H]AVP-receptor complex was eluted as a single peak with an apparent molecular size of 258 kDa. However, no peak was detected when solubilized extract was made from membranes prelabelled with [3H]AVP and p[NH]ppG, suggesting that this receptor complex had dissociated during chromatography. It is possible therefore that the high-Mr complex contains the hormone, its receptor and a guanine nucleotide binding protein.

摘要

一种鸟嘌呤核苷酸调节蛋白可能参与大鼠肝脏中血管加压素受体介导的多磷酸肌醇分解。因此,我们研究了不可水解的鸟嘌呤核苷酸鸟苷5'-[βγ-亚氨基]三磷酸(p[NH]ppG)对[3H]血管加压素([3H]AVP)与肝细胞膜及去污剂提取物结合的影响。[3H]AVP与膜上一组单一的高亲和力结合位点结合。加入p[NH]ppG会降低受体结合的亲和力,但不会改变最大结合容量。p[NH]ppG还增强了[3H]AVP从膜结合受体上的解离速率。用十二烷基β-D-麦芽糖苷溶解[3H]AVP预标记的膜,得到一种在溶液中不稳定的[3H]AVP-受体复合物。这些提取物在30℃孵育5分钟导致结合的[3H]AVP损失40%,而在p[NH]ppG存在的情况下损失54%。然而,当膜先用[3H]AVP和p[NH]ppG预标记然后溶解时,得到的激素-受体复合物仍然对温度敏感,但对进一步加入p[NH]ppG不敏感。通过凝胶过滤估计可溶性血管加压素受体的分子大小。[3H]AVP-受体复合物作为一个单一峰洗脱,表观分子大小为258 kDa。然而,当用[3H]AVP和p[NH]ppG预标记的膜制备溶解提取物时未检测到峰,这表明该受体复合物在色谱过程中已解离。因此,有可能高分子量复合物包含激素、其受体和一种鸟嘌呤核苷酸结合蛋白。

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