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药物诱导的免疫性血小板减少症:药物结合位点映射到血小板 GPIX 的膜近端区域。

Drug-induced immune thrombocytopenia: Mapping of the drug binding site to the membrane-proximal region of platelet GPIX.

机构信息

b Haematology Department , St George Hospital , Kogarah , NSW , Australia.

a Haematology Research Unit, St George and Sutherland Clinical School , University of New South Wales, Research and Education Centre , Kogarah , NSW , Australia.

出版信息

Platelets. 2019;30(2):251-255. doi: 10.1080/09537104.2017.1419556. Epub 2017 Dec 29.

Abstract

Drug-induced Immune thrombocytopenia (DIT) is a common complication of several medications, including commonly used antibiotics. The most widely studied DIT is caused by quinine. In DIT, antibodies predominantly bind to the platelet membrane glycoprotein (GP) IX in a drug-dependent fashion resulting in increased platelet clearance. Binding of the sensitizing drug, such as quinine, to GPIX has been proposed but is yet to be established. This work demonstrates that quinine is retained specifically by human GPIX. Quinine binding was first analyzed in wild-type mouse platelets and in transgenic mouse platelet expressing human GPIX using high performance liquid chromatography. Binding of quinine to GPIX was then measured in Chinese hamster ovary (CHO) cells expressing a combination of wild type, human or mouse, three human/mouse chimeric constructs and six mutant GPIX proteins. Quinine was retained by human GPIX. No detectable absorption was observed with mouse GPIX or human GPIbα. The quinine binding site was mapped to residues 110-115 of human GPIX suggesting that quinine interacts with specific residues of the GP. These findings provide further insights into the molecular mechanisms of DIT.

摘要

药物诱导的免疫性血小板减少症(DIT)是几种药物的常见并发症,包括常用的抗生素。研究最广泛的 DIT 是由奎宁引起的。在 DIT 中,抗体主要以药物依赖的方式结合到血小板膜糖蛋白(GP)IX 上,导致血小板清除增加。已经提出了但尚未确定的是,敏化药物(如奎宁)与 GPIX 的结合。这项工作表明奎宁被人 GPIX 特异性保留。首先使用高效液相色谱法分析野生型小鼠血小板和表达人 GPIX 的转基因小鼠血小板中的奎宁结合。然后在表达野生型、人或鼠的组合的中国仓鼠卵巢(CHO)细胞中测量奎宁与人 GPIX 的结合,三种人/鼠嵌合构建体和六个突变 GPIX 蛋白。奎宁与人 GPIX 结合。未观察到与鼠 GPIX 或人 GPIbα的可检测吸收。奎宁结合位点映射到人 GPIX 的残基 110-115,表明奎宁与 GP 的特定残基相互作用。这些发现为 DIT 的分子机制提供了进一步的见解。

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