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II类限制性抗原呈递和SDS稳定二聚体形成中DM的需求取决于等位基因和物种。

The requirement for DM in class II-restricted antigen presentation and SDS-stable dimer formation is allele and species dependent.

作者信息

Stebbins C C, Loss G E, Elias C G, Chervonsky A, Sant A J

机构信息

Department of Pathology, University of Chicago, Illinois 60637.

出版信息

J Exp Med. 1995 Jan 1;181(1):223-34. doi: 10.1084/jem.181.1.223.

Abstract

Recently several cell lines have been identified with mutations in a major histocompatibility complex (MHC)-linked protein that lead to defects in class II-restricted antigen presentation and a defect in the formation of class II SDS-stable dimers. The defect in these cells has recently been shown to result from the inability to express the MHC-encoded nonclassical class II molecule called DM. To further examine the role of DM in class II-restricted antigen presentation, we asked if this defect would equally affect different allelic and species variants of class II molecules. To investigate this, we transfected the parent cell lines T1 and 8.1.6 and their respective antigen presentation mutants T2 and 9.5.3 with the genes encoding I-Ad and examined the derived transfectants for their ability to present antigen, the conformation of I-Ad at the cell surface, association of I-Ad with invariant chain (Ii), and the ability to form I-Ad SDS-stable dimers. The lack of functional DM expression did not affect any of the anti-I-Ad monoclonal antibody (mAb) epitopes tested or the ability of I-Ad to associate and dissociate with Ii. Surprisingly, these studies also revealed that the antigen presentation defect observed for DR in the 9.5.3 cells did not compromise I-Ad-restricted antigen presentation. In addition, we found that the level of SDS-stable dimer formation did not correlate with antigen presentation capacity for I-Ad and that the amount of SDS-stable I-Ad dimer depends on the cellular context in which the class II molecule is expressed. Our results suggest that the ability to form SDS-stable dimer is not strictly correlated with class II-restricted antigen presentation. Finally, when two allelic forms of murine class II molecules were compared in the defective T2 cell line, it was found that I-Ak but not I-Ad forms SDS-stable dimers equivalent to that seen in the parental cell lines. Overall, our results suggest that DM may modulate rather than play a requisite role in I-Ad-restricted antigen presentation and SDS-stable dimer formation and that dependency on DM may be allele or species specific.

摘要

最近,已鉴定出几种细胞系,它们在主要组织相容性复合体(MHC)相关蛋白中发生了突变,这些突变导致II类限制性抗原呈递缺陷以及II类SDS稳定二聚体形成缺陷。最近发现,这些细胞中的缺陷是由于无法表达MHC编码的名为DM的非经典II类分子所致。为了进一步研究DM在II类限制性抗原呈递中的作用,我们询问这种缺陷是否会同样影响II类分子的不同等位基因和物种变体。为了研究这一点,我们用编码I-Ad的基因转染了亲本细胞系T1和8.1.6及其各自的抗原呈递突变体T2和9.5.3,并检查了衍生的转染子呈递抗原的能力、细胞表面I-Ad的构象、I-Ad与恒定链(Ii)的结合以及形成I-Ad SDS稳定二聚体的能力。缺乏功能性DM表达并不影响所测试的任何抗I-Ad单克隆抗体(mAb)表位,也不影响I-Ad与Ii结合和解离的能力。令人惊讶的是,这些研究还表明,在9.5.3细胞中观察到的DR抗原呈递缺陷并未损害I-Ad限制性抗原呈递。此外,我们发现SDS稳定二聚体形成水平与I-Ad的抗原呈递能力无关,并且SDS稳定的I-Ad二聚体的量取决于II类分子表达的细胞环境。我们的结果表明,形成SDS稳定二聚体的能力与II类限制性抗原呈递并不严格相关。最后,当在缺陷的T2细胞系中比较两种小鼠II类分子的等位基因形式时,发现I-Ak而不是I-Ad形成了与亲本细胞系中所见相当的SDS稳定二聚体。总体而言,我们的结果表明,DM可能在I-Ad限制性抗原呈递和SDS稳定二聚体形成中起调节作用而非必需作用,并且对DM的依赖性可能是等位基因或物种特异性的。

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