Zhu Ying, Huang Chang-Xin, Zhang Le, Wang Ze-Fang, Zhao Dong-Li, Ding Fei, Zhang Si-Yu, Li Yong-Qiang, Chen Ling-Zhi
Department of Oncology, The First Affiliated Hospital of Zhejiang Chinese Medical University Hangzhou 310000, Zhejiang, China.
Department of Oncology, The Affiliated Hospital of Hangzhou Normal University Hangzhou 310000, Zhejiang, China.
Am J Transl Res. 2022 Jul 15;14(7):5164-5177. eCollection 2022.
This study aims to investigate the use of single residue substitution to promote the formation of pi-stacking interactions between peptides and Human leukocyte antigen (HLA)-A*2402 molecules to improve the affinity of peptides and HLA molecules, as well as the level of cytotoxic T lymphocyte (CTL) cells activated by peptides-HLA (p-HLA) complex.
Molecular docking and molecular dynamics simulation were used to simulate and analyze the interactions and binding free energies between HLA-A2402-restricted antigen peptides and HLA molecules, before and after the single residue substitution. HLA-A2402 restricted antigen peptides before and after the single residue replacement were loaded into dendritic cells (DCs) in vitro, and further Enzyme-Linked ImmunoSpot (ELispot) test was carried out to evaluate the effect of modified antigen peptides on the immune activation of CTL cells.
After replacing the antigen peptides with a single residue, some of them could promote the formation of pi-stacking interaction. The binding free energy between the modified antigen peptides and HLA-A*2402, as well as the level of immune activation of CTL cells were mostly higher than before, especially after the replacement of the 9th residue of the polypeptide, such as C9F and C9W. There was a significant negative correlation between the level of activated CTL cells by modified antigen peptides and the total interaction amount of hydrogen bonds and salt bridges.
Promoting the formation of pi-stacking interaction between antigen peptides and HLA-A*2402 molecules could increase the total binding free energy of p-HLA complex and the level of CTL cells activation. In addition, the amount of hydrogen bonds and salt bridges between peptides and HLA could reduce the level of immune activation. All the characteristics above can improve the immunogenicities of the weak antigens.
本研究旨在探讨通过单残基取代促进肽与人类白细胞抗原(HLA)-A*2402分子之间形成π-堆积相互作用,以提高肽与HLA分子的亲和力,以及肽-HLA(p-HLA)复合物激活细胞毒性T淋巴细胞(CTL)细胞的水平。
采用分子对接和分子动力学模拟,对单残基取代前后HLA-A2402限制性抗原肽与HLA分子之间的相互作用和结合自由能进行模拟分析。将单残基替换前后的HLA-A2402限制性抗原肽体外负载到树突状细胞(DCs)中,并进一步进行酶联免疫斑点(ELispot)试验,以评估修饰后的抗原肽对CTL细胞免疫激活的影响。
单残基取代抗原肽后,部分肽可促进π-堆积相互作用的形成。修饰后的抗原肽与HLA-A*2402之间的结合自由能以及CTL细胞的免疫激活水平大多高于替换前,尤其是多肽第9位残基替换后,如C9F和C9W。修饰后的抗原肽激活的CTL细胞水平与氢键和盐桥的总相互作用量之间存在显著负相关关系。
促进抗原肽与HLA-A*2402分子之间形成π-堆积相互作用可增加p-HLA复合物的总结合自由能以及CTL细胞的激活水平。此外,肽与HLA之间的氢键和盐桥数量可降低免疫激活水平。上述所有特性均可提高弱抗原的免疫原性。