Department of Life Science and Chemistry, Jacobs University Bremen, Bremen, Germany; Department of Physics, Faculty of Science, Ain Shams University, Cairo, Egypt.
Eur J Immunol. 2015 Apr;45(4):1248-57. doi: 10.1002/eji.201445307. Epub 2015 Feb 14.
The human MHC class I protein HLA-B27:05 is statistically associated with ankylosing spondylitis, unlike HLA-B27:09, which differs in a single amino acid in the F pocket of the peptide-binding groove. To understand how this unique amino acid difference leads to a different behavior of the proteins in the cell, we have investigated the conformational stability of both proteins using a combination of in silico and experimental approaches. Here, we show that the binding site of B27:05 is conformationally disordered in the absence of peptide due to a charge repulsion at the bottom of the F pocket. In agreement with this, B27:05 requires the chaperone protein tapasin to a greater extent than the conformationally stable B*27:09 in order to remain structured and to bind peptide. Taken together, our data demonstrate a method to predict tapasin dependence and physiological behavior from the sequence and crystal structure of a particular class I allotype. Also watch the Video Abstract.
人类 MHC Ⅰ类蛋白 HLA-B27:05 与强直性脊柱炎呈统计学关联,而 HLA-B27:09 则不同,其在肽结合槽的 F 口袋中仅存在一个氨基酸的差异。为了了解这种独特的氨基酸差异如何导致细胞中蛋白质表现出不同的行为,我们使用计算和实验相结合的方法研究了这两种蛋白质的构象稳定性。在这里,我们表明,由于 F 口袋底部的电荷排斥,B27:05 的结合位点在没有肽的情况下构象无序。与此一致的是,B27:05 比构象稳定的 B*27:09 更需要伴侣蛋白 tapasin 才能保持结构并结合肽。总之,我们的数据证明了一种从特定 I 类同种型的序列和晶体结构预测 tapasin 依赖性和生理行为的方法。也可观看视频摘要。