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首页> 外文期刊>Biochemistry >Assembly and dissociation of human leukocyte antigen (HLA)-A2 studied by real-time fluorescence resonance energy transfer.
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Assembly and dissociation of human leukocyte antigen (HLA)-A2 studied by real-time fluorescence resonance energy transfer.

机译:通过实时荧光共振能量转移研究了人类白细胞抗原(HLA)-A2的组装和解离。

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摘要

Class I major histocompatibility complex (MHC) heterodimer, composed of human leukocyte antigen (HLA)-A2 heavy chain and human beta(2)-microglobulin (beta(2)m), was produced by denaturation and gel filtration of the recombinant water-soluble HLA-A2/beta(2)m/peptide ternary complex in 8 M urea Tris-HCl buffer, followed by refolding of the separated chains without peptide. Peptide affinity and kinetics of the ternary complex formation and dissociation were investigated in real time by monitoring the fluorescence resonance energy transfer (FRET) from intrinsic HLA-A2 heavy-chain tryptophans to a dansyl fluorophore conjugated to the bound peptide. Peptide binding to the heterodimer was a second order process with rate constants linearly dependent upon temperature in Arrhenius coordinates over 0-20 degrees C. The binding rate constant of pRT6C-dansyl [ILKEPC(dansyl)HGV] at 37 degrees C evaluated by extrapolation of the Arrhenius plot was (2.0 +/- 0.5) x 10(6) M(-1) s(-1). Association of the heavy chain with beta(2)m was a first order process, apparently controlled by a conformational transition in the heavy chain. One of these conformations bound to beta(2)m to form the heavy chain/beta(2)m heterodimer whereas the second conformer oligomerized. Peptide dissociation from the ternary complex was a first-order reaction over the temperature range 20-37 degrees C, suggesting that the ternary complex also exists in two conformations. Taken together, the present data suggest that association of beta(2)m changes the HLA-A2 heavy-chain conformation thereby promoting peptide binding. Peptide dissociation from the ternary complex induces dissociation of the heavy-chain/beta(2)m heterodimer thereby causing oligomerization of the heavy chain. The lability of the HLA-A2/beta(2)m heterodimer and the strong tendency of the "free" heavy chain to oligomerize may provide an efficient mechanism for control of antigen presentation under physiological conditions by reducing the direct loading of HLA with exogenous peptide at the cell surface.
机译:I类主要组织相容性复合物(MHC)异二聚体是通过变性和凝胶过滤重组水的方法产生的,该复合物由人白细胞抗原(HLA)-A2重链和人β(2)-微球蛋白(beta(2)m)组成。溶于8 M尿素Tris-HCl缓冲液中的HLA-A2 /β(2)m /肽三元复合物,然后将没有肽的分离链重新折叠。通过监测从固有HLA-A2重链色氨酸到结合至结合肽的丹磺酰荧光团的荧光共振能量转移(FRET),实时研究了三元复合物形成和解离的肽亲和力和动力学。肽与异二聚体的结合是一个二级过程,其速率常数在0-20摄氏度之间线性依赖于Arrhenius坐标中的温度。pRT6C-丹磺酰基[ILKEPC(dansyl)HGV]在37摄氏度的结合速率常数通过外推法估算Arrhenius图为(2.0 +/- 0.5)x 10(6)M(-1)s(-1)。重链与beta(2)m的缔合是一个一级过程,显然受重链构象转变控制。这些构象之一与β(2)m结合形成重链/β(2)m异二聚体,而第二种构象异构体低聚。肽从三元复合物中解离是在20-37摄氏度的温度范围内的一级反应,这表明三元复合物也以两种构象存在。综上所述,本数据表明,β(2)m的缔合改变了HLA-A2重链构象,从而促进了肽的结合。从三元复合物中的肽解离诱导重链/β(2)m异二聚体解离,从而引起重链的寡聚。 HLA-A2 /β(2)m异二聚体的不稳定性和“自由”重链寡聚的强烈趋势可能通过减少外源肽对HLA的直接负载而为生理条件下抗原呈递提供了有效的控制机制在细胞表面。

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