Chambers Joseph E, Jessop Catherine E, Bulleid Neil J
Faculty of Life Sciences, Michael Smith Building, University of Manchester, Manchester M13 9PT, United Kingdom.
J Biol Chem. 2008 Jan 25;283(4):1862-9. doi: 10.1074/jbc.M708196200. Epub 2007 Nov 26.
The assembly and peptide loading of major histocompatibility complex Class I molecules within the endoplasmic reticulum are essential for antigen presentation at the cell surface and are facilitated by the peptide-loading complex. The formation of a mixed disulfide between the heavy chain of Class I and components of the loading complex (ERp57, protein disulfide isomerase, and tapasin) suggests that these molecules are involved in the redox regulation of components during assembly and peptide loading. We demonstrate here that a disulfide formed between heavy chain and tapasin can occur between cysteine residues located in the cytosolic regions of these proteins following translation of heavy chain in an in vitro translation system. The formation of this disulfide occurs after assembly into the loading complex and is coincident with the stabilization of the alpha2 disulfide bond within the peptide binding grove. A ternary complex between heavy chain, ERp57, and tapasin was observed and shown to be stabilized by a disulfide between both tapasinheavy chain and tapasin-ERp57. No disulfides were observed between ERp57 and heavy chain within the loading complex. The results provide a detailed evaluation of the various transient disulfides formed within the peptide-loading complex during biosynthesis. In addition, the absence of the disulfide between tapasin and heavy chain in TAP-deficient cells indicates that a change in the spatial organization of tapasin and heavy chain occurs following assembly into the loading complex.
内质网中主要组织相容性复合体I类分子的组装和肽负载对于细胞表面的抗原呈递至关重要,并且由肽负载复合体促进。I类重链与负载复合体的组分(内质网蛋白57、蛋白二硫键异构酶和塔帕辛)之间形成混合二硫键,表明这些分子在组装和肽负载过程中参与了组分的氧化还原调节。我们在此证明,在体外翻译系统中重链翻译后,重链与塔帕辛之间形成的二硫键可发生在这些蛋白质胞质区域的半胱氨酸残基之间。这种二硫键的形成发生在组装到负载复合体之后,并且与肽结合槽内α2二硫键的稳定同时发生。观察到重链、内质网蛋白57和塔帕辛之间形成三元复合体,并显示通过塔帕辛-重链和塔帕辛-内质网蛋白57之间的二硫键得以稳定。在负载复合体内未观察到内质网蛋白57与重链之间形成二硫键。这些结果对生物合成过程中肽负载复合体内形成的各种瞬时二硫键进行了详细评估。此外,TAP缺陷细胞中塔帕辛与重链之间不存在二硫键,这表明组装到负载复合体后,塔帕辛和重链的空间组织发生了变化。