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嗜铁素的寡聚化。

Oligomerization of nitrophorins.

作者信息

Ambrus Attila, Friedrich Kenneth, Somogyi Arpád

机构信息

Department of Pharmacology and Toxicology, University of Arizona, Tucson, 85721, USA.

出版信息

Anal Biochem. 2006 May 15;352(2):286-95. doi: 10.1016/j.ab.2006.02.003. Epub 2006 Mar 20.

Abstract

Rhodnius prolixus is a blood-sucking insect that uses a mixture of nitrophorin (NP) proteins to deliver nitric oxide (NO) from the insect saliva to the hosts via a ferric heme coordinated to the protein, causing vasodilatation and anticoagulation to support their feeding. R. prolixus NPs 1-4 are very similar proteins ( approximately 20 kDa) with different NO affinities for stepwise NO release triggered by pH increase and histamine binding in hosts. Ultra-high-resolution X-ray structures of native and mutant NPs and their kinetic analysis already have revealed the fundamental steps of NO binding and release. In this study, we found that NPs can exist in multiple oligomerization states at higher concentrations. The oligomers are characterized by a combination of multiple biophysical methods. The intrinsic features of the oligomerization revealed here led us to propose that this intensive, moderately pH- and ligand-dependent oligomerization of NPs has physiological implications in the facilitation of the efficient storage and release of the highly reactive NO in the insect saliva and the victim, respectively.

摘要

南美锥蝽是一种吸血昆虫,它利用一组硝基亚血红素蛋白(NP),通过与蛋白质配位的三价铁血红素将一氧化氮(NO)从昆虫唾液传递给宿主,引起血管舒张和抗凝,以支持其进食。南美锥蝽NP 1-4是非常相似的蛋白质(约20 kDa),对宿主中pH值升高和组胺结合引发的NO逐步释放具有不同的NO亲和力。天然和突变NP的超高分辨率X射线结构及其动力学分析已经揭示了NO结合和释放的基本步骤。在本研究中,我们发现NP在较高浓度下可以存在多种寡聚状态。通过多种生物物理方法的组合对这些寡聚体进行了表征。此处揭示的寡聚化内在特征使我们提出,这种强烈的、适度依赖pH值和配体的NP寡聚化分别在促进昆虫唾液和宿主体内高活性NO的有效储存和释放方面具有生理意义。

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