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脂质纳米结构域在抑制性FcγRIIb功能中的作用。

Role of lipid nanodomains for inhibitory FcγRIIb function.

作者信息

Spiegel Franziska, Trollmann Marius F W, Kara Sibel, Pöhnl Matthias, Brandner Astrid F, Nimmerjahn Falk, Lux Anja, Böckmann Rainer A

机构信息

Computational Biology, Department Biology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, 91058, Germany.

Erlangen National High-Performance Computing Center (NHR@FAU).

出版信息

bioRxiv. 2023 May 12:2023.05.09.540011. doi: 10.1101/2023.05.09.540011.

Abstract

The inhibitory Fcγ receptor FcγRIIb is involved in immune regulation and is known to localize to specific regions of the plasma membrane called lipid rafts. Previous studies suggested a link between the altered lateral receptor localization within the plasma membrane and the functional impairment of the FcγRIIb-I232T variant that is associated with systemic lupus erythematosus. Here, we conducted microsecond all-atom molecular dynamics simulations and IgG binding assays to investigate the lipid nano-environment of FcγRIIb monomers and of the FcγRIIb-I232T mutant within a plasma membrane model, the orientation of the FcγRIIb ectodomain, and its accessibility to IgG ligands. In contrast to previously proposed models, our simulations indicated that FcγRIIb does not favor a cholesterol- or a sphingolipid-enriched lipid environment. Interestingly, cholesterol was depleted for all studied FcγRIIb variants within a 2-3 nm environment of the receptor, counteracting the usage of raft terminology for models on receptor functionality. Instead, the receptor interacts with lipids that have poly-unsaturated fatty acyl chains and with (poly-) anionic lipids within the cytosolic membrane leaflet. We also found that FcγRIIb monomers adopt a conformation that is not suitable for binding to its IgG ligand, consistent with a lack of detectable binding of monomeric IgG in experiments on primary immune cells. However, our results propose that multivalent IgG complexes might stabilize FcγRIIb in a binding-competent conformation. We suggest differences in receptor complex formation within the membrane as a plausible cause of the altered membrane localization or clustering and the altered suppressive function of the FcγRIIb-I232T variant.

摘要

抑制性Fcγ受体FcγRIIb参与免疫调节,已知其定位于质膜的特定区域,即脂筏。先前的研究表明,质膜内受体侧向定位的改变与与系统性红斑狼疮相关的FcγRIIb - I232T变体的功能受损之间存在联系。在这里,我们进行了微秒级全原子分子动力学模拟和IgG结合试验,以研究质膜模型中FcγRIIb单体和FcγRIIb - I232T突变体的脂质纳米环境、FcγRIIb胞外域的取向及其对IgG配体的可及性。与先前提出的模型相反,我们的模拟表明FcγRIIb不倾向于富含胆固醇或鞘脂的脂质环境。有趣的是,在受体的2 - 3 nm环境内,所有研究的FcγRIIb变体周围的胆固醇都减少了,这与用于受体功能模型的脂筏术语的使用相矛盾。相反,该受体与具有多不饱和脂肪酰链的脂质以及胞质膜小叶内的(多)阴离子脂质相互作用。我们还发现FcγRIIb单体采用的构象不适合与其IgG配体结合,这与在原代免疫细胞实验中未检测到单体IgG的结合一致。然而,我们的结果表明多价IgG复合物可能会使FcγRIIb稳定在具有结合能力的构象中。我们认为膜内受体复合物形成的差异是FcγRIIb - I232T变体膜定位或聚集改变以及抑制功能改变的一个合理原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b692/10197649/4308a0cbfbd3/nihpp-2023.05.09.540011v1-f0003.jpg

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