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Biotinylation of glycan chains in β2 glycoprotein I induces dimerization of the molecule and its detection by the human autoimmune anti-cardiolipin antibody EY2C9

机译:β2糖蛋白I中糖链的生物素化可诱导分子二聚化,并通过人自身免疫性抗心磷脂抗体EY2C9检测

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摘要

Binding of β2GPI (β2 glycoprotein I), a human plasma protein, to AnPLs (anionic phospholipids) plays a key role in the formation of antiphospholipid antibodies involved in autoimmune diseases like antiphospholipid syndrome or systemic lupus erythematosus. We recently showed that binding of β2GPI to AnPLs was enhanced by biotinylation of its glycan chains with biotin-hydrazide. In the present study, we investigated why this chemical modification of β2GPI increased both its affinity for AnPLs and its recognition by anti-cardiolipin antibodies. Electrophoretic analysis showed that: (i) high molecular mass β2GPI (dimers and other oligomers) covalently coupled by imine bonds, were present in variable amounts in oxidized β2GPI and in β2GPI-bh (β2GPI-biotin-hydrazide), but were absent in native β2GPI; (ii) binding of β2GPI-bh to phosphatidylserine-coated microtitre plates generated high molecular mass polymers in a time-dependent manner. Native β2GPI did not polymerize in these conditions. These polymers did not bind more strongly to AnPLs than the monomer β2GPI. However, in solution at 1 μM β2GPI-bh essentially appeared as a dimer as revealed by light-scattering analysis. SPR (surface plasmon resonance) analysis showed that the increased affinity of β2GPI-bh for AnPL monolayers was due to a lower dissociation rate constant compared with native β2GPI. Finally, the monoclonal human aCL (auto-immune anti-cardiolipin antibody) EY2C9 bound to β2GPI-bh but did not bind to monomeric native and oxidized β2GPI. It is likely that the dimeric quaternary structure of β2GPI-bh is in fact responsible for the appearance of the epitopes targeted by the EY2C9 antibody.
机译:人血浆蛋白β2GPI(β2糖蛋白I)与AnPLs(阴离子磷脂)的结合在涉及自身免疫性疾病(如抗磷脂综合征或系统性红斑狼疮)的抗磷脂抗体的形成中起着关键作用。我们最近表明,β2GPI与AnPLs的结合通过其糖链与生物素酰肼的生物素化而增强。在本研究中,我们研究了β2GPI的这种化学修饰为何同时增加了其对AnPL的亲和力和抗心磷脂抗体的识别力。电泳分析表明:(i)通过亚胺键共价偶联的高分子量β2GPI(二聚体和其他低聚物)在氧化的β2GPI和β2GPI-bh(β2GPI-生物素酰肼)中以可变的量存在,但在天然存在的情况下不存在β2GPI; (ii)β2GPI-bh与磷脂酰丝氨酸包被的微量滴定板的结合以时间依赖性方式产生了高分子聚合物。天然β2GPI在这些条件下不会聚合。这些聚合物对AnPL的结合没有比单体β2GPI更牢固。但是,在1μM的溶液中,β2GPI-bh基本上表现为二聚体,如通过光散射分析所揭示的那样。 SPR(表面等离子体共振)分析表明,β2GPI-bh对AnPL单层的亲和力增加是由于其离解速率常数低于天然β2GPI。最后,单克隆人aCL(自身免疫抗心磷脂抗体)EY2C9与β2GPI-bh结合,但不与天然和氧化的单体β2GPI结合。实际上,β2GPI-bh的二聚体四元结构负责EY2C9抗体靶向的表位的出现。

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