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蛋白质四级结构对抗抗原加工的影响。

Influence of protein-quaternary structure on antigen processing.

作者信息

Rouas N, Christophe S, Housseau F, Bellet D, Guillet J G, Bidart J M

机构信息

Laboratoire d'Immunologie des Tumeurs CNRS URA 1484, Faculté des Sciences Pharmaceutiques et Biologiques, Paris, France.

出版信息

J Immunol. 1993 Feb 1;150(3):782-92.

PMID:7678622
Abstract

T cell recognition of the quaternary structure of human chorionic gonadotropin (hCG), resulting from the association between its alpha (hCG-alpha) and beta (hCG-beta) subunits, was analyzed using hCG-alpha and hCG-beta T cell hybridomas produced in BALB/c mice. First, the fine specificity of these T cell hybridomas was determined, enabling us to divide hCG-alpha-specific T cell hybridomas into two groups. Group I recognized the hCG-alpha(61-81) region, and group II responded to the hCG-alpha(50-70) part of the molecule. Two groups of hCG-beta-specific T cell hybridomas, designated groups III and IV, were analyzed and found to respond to the C- and the N-terminal parts of the hCG-beta(1-22) peptide, respectively. Moreover, we observed that the nature of APC influenced Ag recognition by hCG-beta T cell hybridomas from group IV, but not by other selected T cell hybridomas. We then showed that recognition of the hCG alpha/beta dimer by alpha-specific T cell hybridomas was dramatically reduced compared to both free hCG-alpha and heat-dissociated hCG alpha/beta molecules. In contrast, hCG-beta hybridomas exhibited comparable responses to the free beta subunit and the hCG dimer. Experiments using a dimeric molecule assembled from the alpha-subunit of human follicle-stimulating hormone, which is identical to hCG-alpha, and the beta-subunit of human follicle-stimulating hormone, which is homologous to hCG-beta, confirmed that the three-dimensional structure of the complex rather than the primary structure of the beta-subunit plays a critical role in the processing pathway. Finally, kinetic experiments showed that the presentation of hCG-alpha T cell epitopes differed depending upon whether the alpha-subunit was in its free or combined form. In contrast, the kinetic expression of hCG-beta T cell epitopes appeared to be independent of the quaternary structure of hCG. Thus, conformational alterations resulting from the alpha/beta subunit association mainly influenced processing of the alpha-subunit in its complexed form, rather than processing of the combined beta-subunit. The effect of protein-quaternary structure on T cell recognition may represent a new element in our understanding of the processing and presentation of oligomeric molecules.

摘要

利用在BALB/c小鼠中产生的人绒毛膜促性腺激素α(hCG-α)和β(hCG-β)亚基的T细胞杂交瘤,分析了T细胞对人绒毛膜促性腺激素(hCG)四级结构的识别,该四级结构由其α亚基(hCG-α)和β亚基(hCG-β)之间的缔合产生。首先,确定了这些T细胞杂交瘤的精细特异性,使我们能够将hCG-α特异性T细胞杂交瘤分为两组。第一组识别hCG-α(61-81)区域,第二组对分子的hCG-α(50-70)部分有反应。对两组hCG-β特异性T细胞杂交瘤(分别命名为第三组和第四组)进行分析,发现它们分别对hCG-β(1-22)肽的C端和N端部分有反应。此外,我们观察到抗原呈递细胞的性质影响来自第四组的hCG-β T细胞杂交瘤对抗原的识别,但不影响其他选定的T细胞杂交瘤。然后我们表明,与游离的hCG-α和热解离的hCG α/β分子相比,α特异性T细胞杂交瘤对hCG α/β二聚体的识别显著降低。相反,hCG-β杂交瘤对游离β亚基和hCG二聚体表现出相当的反应。使用由与人促卵泡激素α亚基(与hCG-α相同)和与人促卵泡激素β亚基(与hCG-β同源)组装而成的二聚体分子进行的实验证实,复合物的三维结构而非β亚基的一级结构在加工途径中起关键作用。最后,动力学实验表明,hCG-α T细胞表位的呈递因α亚基是游离形式还是结合形式而异。相反,hCG-β T细胞表位的动力学表达似乎与hCG的四级结构无关。因此,α/β亚基缔合导致的构象改变主要影响其复合形式的α亚基的加工,而不是结合的β亚基的加工。蛋白质四级结构对T细胞识别的影响可能是我们理解寡聚分子加工和呈递的一个新因素。

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