信号调节蛋白γ (SIRPγ)与抗体Fab片段复合物的晶体结构

Q3 Biochemistry, Genetics and Molecular Biology BMC Structural Biology Pub Date : 2013-07-04 DOI:10.1186/1472-6807-13-13
Joanne E Nettleship, Jingshan Ren, David J Scott, Nahid Rahman, Deborah Hatherley, Yuguang Zhao, David I Stuart, A Neil Barclay, Raymond J Owens
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引用次数: 10

摘要

信号调节蛋白γ (SIRPγ)是一个密切相关的三种细胞表面受体家族的成员,参与调节免疫/炎症反应。SIRPγ在T淋巴细胞上表达,它似乎参与淋巴细胞与抗原呈递细胞的不依赖整合素的粘附。在这里,我们描述了人类SIRPγ细胞外区域的第一个全长结构。我们通过将该蛋白与抗sirp抗体的Fab片段OX117合成复合物获得了SIRPγ晶体,OX117也与SIRPα和SIRPβ结合。我们发现FabOX117的表位形成于SIRPγ的第一和第二结构域的界面上,并且包含在所有三个SIRPs之间保守的残基。FabOX117结合位点与区域1中与CD47相互作用的区域不同,CD47是SIRPγ和SIRPα的生理配体,但不与SIRPβ相互作用。通过对SIRPγ和SIRPα三个结构域结构的比较发现,由于前两个结构域之间的连接体具有灵活性,这些受体可以采用不同的整体构象。SIRPγ与FabOX117复合物在晶体中形成二聚体。与Fab的结合固定了结构域1相对于结构域2/3的位置,暴露出有利于形成同型二聚体的表面。然而,这种相互作用似乎相对较弱,因为在单独的蛋白质的沉降速度分析超离心中只观察到SIRPγ的单体。平衡超离心对络合物形成的研究表明,SIRPγ: FabOX117仅形成1:1的络合物,解离常数在低微摩尔范围内(Kd = 1.2 +/?)0.3μM ?)。sirp的三结构域胞外区域在结构上是保守的,但相对于两个膜近端Ig结构域,其氨基末端配体结合Ig结构域的配置具有构象灵活性。交叉反应性抗SIRP Fab片段与SIRPγ的结合稳定了晶体结构中有利于SIRP二聚体形成的构象,尽管这种相互作用似乎不够稳定,无法在溶液中观察到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Crystal structure of signal regulatory protein gamma (SIRPγ) in complex with an antibody Fab fragment

Signal Regulatory Protein γ (SIRPγ) is a member of a closely related family of three cell surface receptors implicated in modulating immune/inflammatory responses. SIRPγ is expressed on T lymphocytes where it appears to be involved in the integrin-independent adhesion of lymphocytes to antigen-presenting cells. Here we describe the first full length structure of the extracellular region of human SIRPγ.

We obtained crystals of SIRPγ by making a complex of the protein with the Fab fragment of the anti-SIRP antibody, OX117, which also binds to SIRPα and SIRPβ. We show that the epitope for FabOX117 is formed at the interface of the first and second domains of SIRPγ and comprises residues which are conserved between all three SIRPs. The FabOX117 binding site is distinct from the region in domain 1 which interacts with CD47, the physiological ligand for both SIRPγ and SIRPα but not SIRPβ. Comparison of the three domain structures of SIRPγ and SIRPα showed that these receptors can adopt different overall conformations due to the flexibility of the linker between the first two domains. SIRPγ in complex with FabOX117 forms a dimer in the crystal. Binding to the Fab fixes the position of domain 1 relative to domains 2/3 exposing a surface which favours formation of a homotypic dimer. However, the interaction appears to be relatively weak since only monomers of SIRPγ were observed in sedimentation velocity analytical ultracentrifugation of the protein alone. Studies of complex formation by equilibrium ultracentrifugation showed that only a 1:1 complex of SIRPγ: FabOX117 was formed with a dissociation constant in the low micromolar range (K d?=?1.2 +/? 0.3?μM).

The three-domain extracellular regions of SIRPs are structurally conserved but show conformational flexibility in the disposition of the amino terminal ligand-binding Ig domain relative to the two membrane proximal Ig domains. Binding of a cross-reactive anti-SIRP Fab fragment to SIRPγ stabilises a conformation that favours SIRP dimer formation in the crystal structure, though this interaction does not appear sufficiently stable to be observed in solution.

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来源期刊
CiteScore
3.60
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: BMC Structural Biology is an open access, peer-reviewed journal that considers articles on investigations into the structure of biological macromolecules, including solving structures, structural and functional analyses, and computational modeling.
期刊最新文献
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