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通过肽段第4位的基于电荷的相互作用驱动人类白细胞抗原I类分子的抗原呈递多样性。

Charge-based interactions through peptide position 4 drive diversity of antigen presentation by human leukocyte antigen class I molecules.

作者信息

Jackson Kyle R, Antunes Dinler A, Talukder Amjad H, Maleki Ariana R, Amagai Kano, Salmon Avery, Katailiha Arjun S, Chiu Yulun, Fasoulis Romanos, Rigo Maurício Menegatti, Abella Jayvee R, Melendez Brenda D, Li Fenge, Sun Yimo, Sonnemann Heather M, Belousov Vladislav, Frenkel Felix, Justesen Sune, Makaju Aman, Liu Yang, Horn David, Lopez-Ferrer Daniel, Huhmer Andreas F, Hwu Patrick, Roszik Jason, Hawke David, Kavraki Lydia E, Lizée Gregory

机构信息

University of Texas MD Anderson Cancer Center, UTHealth Graduate School of Biomedical Sciences, Houston, TX, USA.

Department of Biology and Biochemistry, University of Houston, Houston, TX, USA.

出版信息

PNAS Nexus. 2022 Jul 27;1(3):pgac124. doi: 10.1093/pnasnexus/pgac124. eCollection 2022 Jul.

Abstract

Human leukocyte antigen class I (HLA-I) molecules bind and present peptides at the cell surface to facilitate the induction of appropriate CD8+ T cell-mediated immune responses to pathogen- and self-derived proteins. The HLA-I peptide-binding cleft contains dominant anchor sites in the B and F pockets that interact primarily with amino acids at peptide position 2 and the C-terminus, respectively. Nonpocket peptide-HLA interactions also contribute to peptide binding and stability, but these secondary interactions are thought to be unique to individual HLA allotypes or to specific peptide antigens. Here, we show that two positively charged residues located near the top of peptide-binding cleft facilitate interactions with negatively charged residues at position 4 of presented peptides, which occur at elevated frequencies across most HLA-I allotypes. Loss of these interactions was shown to impair HLA-I/peptide binding and complex stability, as demonstrated by both in vitro and in silico experiments. Furthermore, mutation of these Arginine-65 (R65) and/or Lysine-66 (K66) residues in HLA-A02:01 and A24:02 significantly reduced HLA-I cell surface expression while also reducing the diversity of the presented peptide repertoire by up to 5-fold. The impact of the R65 mutation demonstrates that nonpocket HLA-I/peptide interactions can constitute anchor motifs that exert an unexpectedly broad influence on HLA-I-mediated antigen presentation. These findings provide fundamental insights into peptide antigen binding that could broadly inform epitope discovery in the context of viral vaccine development and cancer immunotherapy.

摘要

人类白细胞抗原 I 类(HLA-I)分子在细胞表面结合并呈递肽段,以促进对病原体衍生和自身蛋白质产生适当的 CD8 + T 细胞介导的免疫反应。HLA-I 肽结合裂隙在 B 和 F 口袋中含有主要的锚定位点,分别主要与肽段第 2 位的氨基酸和 C 末端相互作用。非口袋区域的肽 - HLA 相互作用也有助于肽段结合和稳定性,但这些二级相互作用被认为是个别 HLA 同种异型或特定肽抗原所特有的。在这里,我们表明位于肽结合裂隙顶部附近的两个带正电荷的残基促进了与所呈递肽段第 4 位带负电荷残基的相互作用,这种情况在大多数 HLA-I 同种异型中以较高频率出现。体外和计算机模拟实验均表明,这些相互作用的丧失会损害 HLA-I/肽段结合和复合物稳定性。此外,HLA-A02:01 和 A24:02 中这些精氨酸 - 65(R65)和/或赖氨酸 - 66(K66)残基的突变显著降低了 HLA-I 在细胞表面的表达,同时也使所呈递肽库的多样性降低了多达 5 倍。R65 突变的影响表明,非口袋区域的 HLA-I/肽段相互作用可以构成锚定基序,对 HLA-I 介导的抗原呈递产生意想不到的广泛影响。这些发现为肽抗原结合提供了基本见解,可广泛为病毒疫苗开发和癌症免疫治疗背景下的表位发现提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38f2/9896900/efb8c3d57ac0/pgac124fig1.jpg

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