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在酸性pH条件下,肽抗原与纯化的II类主要组织相容性糖蛋白的结合增强。

Enhanced binding of peptide antigen to purified class II major histocompatibility glycoproteins at acidic pH.

作者信息

Jensen P E

机构信息

Department of Pathology, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

J Exp Med. 1991 Nov 1;174(5):1111-20. doi: 10.1084/jem.174.5.1111.

Abstract

Helper T lymphocytes recognize peptide antigens stably associated with class II major histocompatibility complex (MHC) glycoproteins on the surface of antigen-presenting cells and serve to regulate a wide variety of immune responses. A previous study from our laboratory had demonstrated that the functional association of various peptide antigens with the antigen-presenting cell membrane was increased at pH 5 as compared to pH 7, consistent with the potential role of acidic endosomal compartments in antigen processing. The mechanism for this effect was not determined. In the present study, assays using purified class II glycoprotein were used to further define this mechanism. The potential requirement for pH-dependent interactions involving non-MHC membrane components was excluded in functional assays with purified class II reconstituted in artificial membranes containing only neutral phospholipids and cholesterol. The association of HEL(104-120) with I-Ed, and OVA(323-339) with I-Ad, was increased at pH 5, as measured by activation of specific T cell hybridomas. An enzyme immunoassay was developed to measure the binding of biotin-labeled peptides to purified class II in detergent micelles. The pH dependence of binding paralleled our previous functional results. Optimum binding of biotin-HEL(104-120) to I-Ed was observed at pH approximately 4.5, whereas maximum binding of biotin-Myo(106-118) to I-Ad occurred at pH approximately 5.5. The latter peptide also bound weakly to I-Ed, but with a pH dependence similar to that observed using HEL(104-120). Further experiments with biotin-HEL(104-120)/I-Ed indicated that both the apparent affinity and the apparent concentration of peptide-binding sites are increased as hydrogen ion concentration is increased from pH 7 to pH 5. The effect of pH in this range was largely reversible and was not associated with a change in peptide dissociation that could be measured with our assay system. Binding was not inhibited in the presence of 1.5 M NaCl, suggesting that electrostatic interactions between HEL(104-120) and I-Ed are not essential for binding. It is proposed that protonation of a critical group(s) in the class II molecule regulates its capacity to form stable complexes with peptide. However, this effect alone does not fully account for the rapid kinetics of peptide binding observed in experiments with intact antigen-presenting cells.

摘要

辅助性T淋巴细胞识别与抗原呈递细胞表面的II类主要组织相容性复合体(MHC)糖蛋白稳定结合的肽抗原,并有助于调节多种免疫反应。我们实验室之前的一项研究表明,与pH 7相比,各种肽抗原与抗原呈递细胞膜的功能关联在pH 5时有所增加,这与酸性内体区室在抗原加工中的潜在作用一致。但这种效应的机制尚未确定。在本研究中,使用纯化的II类糖蛋白进行测定以进一步确定该机制。在仅含有中性磷脂和胆固醇的人工膜中重构的纯化II类的功能测定中,排除了涉及非MHC膜成分的pH依赖性相互作用的潜在需求。通过特异性T细胞杂交瘤的激活测定,发现HEL(104 - 120)与I-Ed以及OVA(323 - 339)与I-Ad的结合在pH 5时增加。开发了一种酶免疫测定法来测量生物素标记的肽与去污剂胶束中纯化的II类的结合。结合的pH依赖性与我们之前的功能结果相似。生物素-HEL(104 - 120)与I-Ed的最佳结合在pH约4.5时观察到,而生物素-Myo(106 - 118)与I-Ad的最大结合在pH约5.5时出现。后一种肽也与I-Ed弱结合,但其pH依赖性与使用HEL(104 - 120)观察到的相似。使用生物素-HEL(104 - 120)/I-Ed的进一步实验表明,随着氢离子浓度从pH 7增加到pH 5,肽结合位点的表观亲和力和表观浓度均增加。在此范围内pH的影响在很大程度上是可逆的,并且与我们的测定系统可测量的肽解离变化无关。在1.5 M NaCl存在下结合未被抑制,这表明HEL(104 - 120)与I-Ed之间的静电相互作用对于结合不是必需的。有人提出,II类分子中关键基团的质子化调节其与肽形成稳定复合物的能力。然而,仅这种效应并不能完全解释在完整抗原呈递细胞实验中观察到的肽结合的快速动力学。

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