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使用一种新型表位标签确定,Kb、Kd和Ld分子具有共同的与塔帕辛的依赖性。

Kb, Kd, and Ld molecules share common tapasin dependencies as determined using a novel epitope tag.

作者信息

Myers N B, Harris M R, Connolly J M, Lybarger L, Yu Y Y, Hansen T H

机构信息

Department of Genetics, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

J Immunol. 2000 Nov 15;165(10):5656-63. doi: 10.4049/jimmunol.165.10.5656.

Abstract

The endoplasmic reticulum protein tapasin is considered to be a class I-dedicated chaperone because it facilitates peptide loading by proposed mechanisms such as peptide editing, endoplasmic reticulum retention of nonpeptide-bound molecules, and/or localizing class I near the peptide source. Nonetheless, the primary functions of tapasin remain controversial as do the relative dependencies of different class I molecules on tapasin for optimal peptide loading and surface expression. Tapasin dependencies have been addressed in previous studies by transfecting different class I alleles into tapasin-deficient LCL721.220 cells and then monitoring surface expression and Ag presentation to T cells. Indeed, by these criteria, class I alleles have disparate tapasin-dependencies. In this study, we report a novel and more direct method of comparing tapasin dependency by monitoring the ratio of folded vs open forms of the different mouse class I heavy chains, L(d), K(d), and K(b). Furthermore, we determine the amount of de novo heavy chain synthesis required to attain comparable expression in the presence vs absence of tapasin. Our findings show that tapasin dramatically improves peptide loading of all three of these mouse molecules.

摘要

内质网蛋白塔帕辛被认为是一种专门针对I类分子的伴侣蛋白,因为它通过诸如肽编辑、将未结合肽的分子滞留在内质网以及/或者将I类分子定位在肽源附近等推测的机制来促进肽负载。尽管如此,塔帕辛的主要功能仍存在争议,不同I类分子对塔帕辛以实现最佳肽负载和表面表达的相对依赖性也存在争议。在先前的研究中,通过将不同的I类等位基因转染到缺乏塔帕辛的LCL721.220细胞中,然后监测表面表达以及向T细胞的抗原呈递,来探讨对塔帕辛的依赖性。实际上,根据这些标准,I类等位基因对塔帕辛的依赖性各不相同。在本研究中,我们报告了一种通过监测不同小鼠I类重链L(d)、K(d)和K(b)的折叠形式与开放形式的比例来比较对塔帕辛依赖性的新颖且更直接的方法。此外,我们确定了在有和没有塔帕辛的情况下达到可比表达所需的新生重链合成量。我们的研究结果表明,塔帕辛显著改善了所有这三种小鼠分子的肽负载。

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