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PILRα and PILRβ have a siglec fold and provide the basis of binding to sialic acid

机译:PILRα和PILRβ具有单折叠并提供与唾液酸结合的基础

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摘要

Paired immunoglobulin-like type 2 receptor α (PILRα) and β (PILRβ) belong to the PILR family and are related to innate immune regulation in various species. Despite their high sequence identity, PILRα and PILRβ are shown to have variant sialic acid (SA) binding avidities. To explore the molecular basis of this interaction, we solved the crystal structures of PILRα and PILRβ at resolutions of 1.6 Å and 2.2 Å, respectively. Both molecules adopt a typical siglec fold but use a hydrophobic bond to substitute the siglec-specific disulfide linkage for protein stabilization. We further used HSV-1 glycoprotein B (gB) as a representative molecule to study the PILR–SA interaction. Deploying site-directed mutagenesis, we demonstrated that three residues (Y2, R95, and W108) presented on the surface of PILRα form the SA binding site equivalent to those in siglecs but are arranged in a unique linear mode. PILRβ differs from PILRα in one of these three residues (L108), explaining its inability to engage gB. Mutation of L108 to tryptophan in PILRβ restored the gB-binding capacity. We further solved the structure of this PILRβ mutant complexed with SA, which reveals the atomic details mediating PILR/SA recognition. In comparison with the free PILR structures, amino acid Y2 oriented variantly in the complex structure, thereby disrupting the linear arrangement of PILR residues Y2, R95, and W108. In conclusion, our study provides significant implications for the PILR–SA interaction and paves the way for understanding PILR-related ligand binding.
机译:成对的免疫球蛋白样2型受体α(PILRα)和β(PILRβ)属于PILR家族,与各种物种的先天免疫调节有关。尽管具有高序列同一性,但PILRα和PILRβ仍具有变异的唾液酸(SA)结合亲和力。为了探索这种相互作用的分子基础,我们分别解析了分辨率为1.6Å和2.2Å的PILRα和PILRβ的晶体结构。两种分子均采用典型的siglec折叠,但使用疏水键取代siglec特异性的二硫键以稳定蛋白质。我们进一步使用HSV-1糖蛋白B(gB)作为代表分子来研究PILR-SA的相互作用。部署定点诱变,我们证明了存在于PILRα表面的三个残基(Y2,R95和W108)形成的SA结合位点与siglecs中的等同,但以独特的线性模式排列。 PILRβ与PILRα的区别在于这三个残基之一(L108),这说明其无法与gB结合。在PILRβ中L108突变为色氨酸恢复了gB结合能力。我们进一步解决了与SA复合的PILRβ突变体的结构,揭示了介导PILR / SA识别的原子细节。与自由的PILR结构相比,氨基酸Y2在复杂结构中的取向不同,从而破坏了PILR残基Y2,R95和W108的线性排列。总之,我们的研究为PILR-SA的相互作用提供了重要的启示,并为理解PILR相关的配体结合铺平了道路。

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