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疟疾病媒蚊子唾液中的血栓烷 A2/半胱氨酰白三烯结合蛋白的功能和三维结构。

The function and three-dimensional structure of a thromboxane A2/cysteinyl leukotriene-binding protein from the saliva of a mosquito vector of the malaria parasite.

机构信息

Laboratory of Malaria and Vector Research, National Institutes of Health, National Institute of Allergy and Infectious Diseases, Rockville, Maryland, United States of America.

出版信息

PLoS Biol. 2010 Nov 30;8(11):e1000547. doi: 10.1371/journal.pbio.1000547.

Abstract

The highly expressed D7 protein family of mosquito saliva has previously been shown to act as an anti-inflammatory mediator by binding host biogenic amines and cysteinyl leukotrienes (CysLTs). In this study we demonstrate that AnSt-D7L1, a two-domain member of this group from Anopheles stephensi, retains the CysLT binding function seen in the homolog AeD7 from Aedes aegypti but has lost the ability to bind biogenic amines. Unlike any previously characterized members of the D7 family, AnSt-D7L1 has acquired the important function of binding thromboxane A(2) (TXA(2)) and its analogs with high affinity. When administered to tissue preparations, AnSt-D7L1 abrogated Leukotriene C(4) (LTC(4))-induced contraction of guinea pig ileum and contraction of rat aorta by the TXA(2) analog U46619. The protein also inhibited platelet aggregation induced by both collagen and U46619 when administered to stirred platelets. The crystal structure of AnSt-D7L1 contains two OBP-like domains and has a structure similar to AeD7. In AnSt-D7L1, the binding pocket of the C-terminal domain has been rearranged relative to AeD7, making the protein unable to bind biogenic amines. Structures of the ligand complexes show that CysLTs and TXA(2) analogs both bind in the same hydrophobic pocket of the N-terminal domain. The TXA(2) analog U46619 is stabilized by hydrogen bonding interactions of the ω-5 hydroxyl group with the phenolic hydroxyl group of Tyr 52. LTC(4) and occupies a very similar position to LTE(4) in the previously determined structure of its complex with AeD7. As yet, it is not known what, if any, new function has been acquired by the rearranged C-terminal domain. This article presents, to our knowledge, the first structural characterization of a protein from mosquito saliva that inhibits collagen mediated platelet activation.

摘要

唾液中高度表达的 D7 蛋白家族先前被证明通过结合宿主生物胺和半胱氨酰白三烯 (CysLTs) 发挥抗炎介质作用。在这项研究中,我们证明了来自斯氏按蚊的该组的双结构域成员 AnSt-D7L1 保留了在埃及伊蚊的同源物 AeD7 中所见的 CysLT 结合功能,但已丧失结合生物胺的能力。与 D7 家族的任何先前表征成员不同,AnSt-D7L1 获得了结合血栓烷 A(2) (TXA(2)) 和其类似物的高亲和力的重要功能。当给予组织制剂时,AnSt-D7L1 废除了白三烯 C(4) (LTC(4))-诱导的豚鼠回肠收缩和 TXA(2)类似物 U46619 诱导的大鼠主动脉收缩。该蛋白还抑制了给予搅拌血小板时胶原和 U46619 诱导的血小板聚集。AnSt-D7L1 的晶体结构包含两个 OBP 样结构域,并且具有与 AeD7 相似的结构。在 AnSt-D7L1 中,相对于 AeD7,C 端结构域的结合口袋已重新排列,从而使该蛋白无法结合生物胺。配体复合物的结构表明,CysLTs 和 TXA(2)类似物都结合在 N 端结构域的同一疏水性口袋中。TXA(2)类似物 U46619 通过 ω-5 羟基与 Tyr 52 的酚羟基之间的氢键相互作用稳定。LTC(4)并占据与 AeD7 先前确定的复合物中 LTE(4)非常相似的位置。迄今为止,尚不清楚重新排列的 C 端结构域获得了什么新功能(如果有的话)。本文介绍了我们所知的第一个来自蚊子唾液的抑制胶原蛋白介导的血小板活化的蛋白质的结构特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4112/2994686/446776f5d6ad/pbio.1000547.g001.jpg

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