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以活性形式溶解血小板质膜5-羟色胺转运体。

Solubilization of the platelet plasma membrane serotonin transporter in an active form.

作者信息

Talvenheimo J, Rudnick G

出版信息

J Biol Chem. 1980 Sep 25;255(18):8606-11.

PMID:7410380
Abstract

The activity of the serotonin transporter of platelet plasma membrane may be assessed by its ability to bind [N-methyl-3H]imipramine, even in the presence of detergents which disrupt the membrane and inactivate serotonin transport. Of the 21 detergents which were tested for their ability to solubilize the transporter in an active form, some, such as Triton X-100, inactivate imipramine-binding activity in a manner which is difficult or impossible to reverse, while inactivation by others, such as cholate, is readily reversed by gel filtration. Of the detergents which do not inactivate imipramine binding, most, such as the Tween series, also fail to solubilize significant amounts of the transporter. Of all the detergents tested, only one, digitonin, solubilized specific imipramine-binding activity. Imipramine binds to the digitonin-solubilized transporter with slightly reduced affinity, but in all other respects binding to intact and digitonin-solubilized membranes is identical. Thus, binding is, in both cases, saturable and Na+-dependent, and is reversed by serotonin. Furthermore, inhibitors of serotonin transport but not of serotonin-mediated platelet aggregation block imipramine binding to the soluble preparation. Sodium-dependent binding to the soluble extract is insensitive to K+, suggesting that separate sites on the serotonin transporter mediate the effects of effects of Na+ and K+.

摘要

血小板质膜中5-羟色胺转运体的活性可通过其结合[ N-甲基-³H]丙咪嗪的能力来评估,即使在存在破坏膜并使5-羟色胺转运失活的去污剂的情况下也是如此。在测试的21种去污剂中,有些去污剂,如 Triton X-100,会以难以逆转或无法逆转的方式使丙咪嗪结合活性失活,而其他去污剂,如胆酸盐,通过凝胶过滤很容易逆转失活。在不使丙咪嗪结合失活的去污剂中,大多数,如吐温系列,也不能溶解大量的转运体。在所有测试的去污剂中,只有洋地黄皂苷能溶解特异性丙咪嗪结合活性。丙咪嗪与洋地黄皂苷溶解的转运体结合时亲和力略有降低,但在所有其他方面,与完整膜和洋地黄皂苷溶解的膜的结合是相同的。因此,在这两种情况下,结合都是可饱和的且依赖于钠离子,并且会被5-羟色胺逆转。此外,5-羟色胺转运抑制剂而非5-羟色胺介导的血小板聚集抑制剂会阻断丙咪嗪与可溶性制剂的结合。与可溶性提取物的钠离子依赖性结合对钾离子不敏感,这表明5-羟色胺转运体上的不同位点介导了钠离子和钾离子的作用。

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