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人血小板中环前列腺素膜受体的增溶作用。

Solubilization of prostacyclin membrane receptors from human platelets.

作者信息

Tsai A L, Hsu M J, Vijjeswarapu H, Wu K K

机构信息

Department of Internal Medicine, University of Texas Health Science Center, Houston 77030.

出版信息

J Biol Chem. 1989 Jan 5;264(1):61-7.

PMID:2642482
Abstract

Prostacyclin (PGI2) receptors have been identified on platelets and other tissues but their physicochemical properties remain unknown due to difficulties in obtaining active solubilized receptors. We evaluated the ability of several detergents to release the receptors from platelet membrane preparations. In contrast to the results of Dutta-Roy and Sinha (Dutta-Roy, A. K., and Sinha, A. K. (1987) J. Biol. Chem. 262, 12685-12691) which revealed selective solubilization of PGE1/PGI2 receptors by 0.05% Triton X-100, we found that CHAPS (3-[(3-chlamidopropyl)dimethylammonio]-1-propanesulfonic acid) (10 mM) was far superior in releasing the PGI2 receptors. In fact, Triton X-100 failed to release detectable PGI2 binding activity into the supernatant. The CHAPS-solubilized receptor degraded rapidly unless 30% glycerol was added which greatly enhanced its stability. By employing an improved binding assay using [3H]iloprost as the ligand and selective membrane filters (AP-15 or GF/B) pretreated with polyethyleneimine for achieving a higher trapping efficiency, we showed by equilibrium binding measurements that the solubilized receptors exhibited a single class of binding sites with a KD of 18.5 nM and Bmax 0.5 pmol/mg. These values were similar to those of the membrane receptors, i.e. KD of 16.6 nM and Bmax 1.0 pmol/mg. Kinetic binding measurements of the solubilized receptors revealed an association rate constant of 0.51 x 10(6) M-1 s-1 and dissociation rate constant of 0.0041 s-1 yielding a calculated KD of 8.0 nM. Displacement of [3H]iloprost (Ki values) from the solubilized and the membrane receptors by diversified eicosanoids was parallel. Our data demonstrate for the first time a successful solubilization of platelet PGI2 receptors. The solubilized receptors retained almost identical binding characteristics as the native membrane receptors.

摘要

前列环素(PGI2)受体已在血小板和其他组织中被鉴定出来,但由于难以获得活性溶解受体,其物理化学性质仍不清楚。我们评估了几种去污剂从血小板膜制剂中释放受体的能力。与Dutta-Roy和Sinha(Dutta-Roy, A. K., and Sinha, A. K. (1987) J. Biol. Chem. 262, 12685 - 12691)的结果相反,他们发现0.05% Triton X - 100可选择性溶解PGE1/PGI2受体,而我们发现CHAPS(3 - [(3 - 氯丙基)二甲基铵基]-1 - 丙烷磺酸)(10 mM)在释放PGI2受体方面要优越得多。事实上,Triton X - 100未能将可检测到的PGI2结合活性释放到上清液中。除非添加30%甘油以大大提高其稳定性,否则CHAPS溶解的受体迅速降解。通过使用改进的结合测定法,以[3H]伊洛前列素作为配体,并使用经聚乙烯亚胺预处理以实现更高捕获效率的选择性膜过滤器(AP - 15或GF/B),我们通过平衡结合测量表明,溶解的受体表现出一类结合位点,KD为18.5 nM,Bmax为0.5 pmol/mg。这些值与膜受体的值相似,即KD为16.6 nM,Bmax为1.0 pmol/mg。溶解受体的动力学结合测量显示结合速率常数为0.51×10(6) M - 1 s - 1,解离速率常数为0.0041 s - 1,计算得出的KD为8.0 nM。多种类二十烷酸对溶解受体和膜受体上[3H]伊洛前列素的置换(Ki值)是平行的。我们的数据首次证明了血小板PGI2受体的成功溶解。溶解的受体保留了与天然膜受体几乎相同的结合特性。

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