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使用PANDORA预测II类主要组织相容性复合体中的反向结合肽构象。

Predicting reverse-bound peptide conformations in MHC Class II with PANDORA.

作者信息

Rademaker Daniel T, Parizi Farzaneh M, van Vreeswijk Marieke, Eerden Sanna, Marzella Dario F, Xue Li C

机构信息

Biosystems Data Analysis, University of Amsterdam, Amsterdam, Netherlands.

van' t Hoff Institute for Molecular Sciences, HIMS-Biocat, University of Amsterdam, Amsterdam, Netherlands.

出版信息

Front Immunol. 2025 Mar 24;16:1525576. doi: 10.3389/fimmu.2025.1525576. eCollection 2025.

Abstract

Recent discoveries have transformed our understanding of peptide binding in Major Histocompatibility Complex (MHC) molecules, showing that peptides, for some MHC class II alleles, can bind in a reverse orientation (C-terminus to N-terminus) and can still effectively activate CD4+ T cells. These finding challenges established concepts of immune recognition and suggests new pathways for therapeutic intervention, such as vaccine design. We present an updated version of PANDORA, which, to the best of our knowledge, is the first tool capable of modeling reversed-bound peptides. Modeling these peptides presents a unique challenge due to the limited structural data available for these orientations in existing databases. PANDORA has overcome this challenge through integrative modeling using algorithmically reversed peptides as templates. We have validated the new PANDORA feature through two targeted experiments, achieving an average backbone binding-core L-RMSD value of 0.63 Å. Notably, it maintained low RMSD values even when using templates from different alleles and peptide sequences. Our results suggest that PANDORA will be an invaluable resource for the immunology community, aiding in the development of targeted immunotherapies and vaccine design.

摘要

最近的发现改变了我们对主要组织相容性复合体(MHC)分子中肽结合的理解,表明对于某些MHC II类等位基因,肽可以以反向(C端到N端)结合,并且仍然可以有效地激活CD4+ T细胞。这些发现挑战了既定的免疫识别概念,并为治疗干预(如疫苗设计)提出了新途径。我们展示了PANDORA的更新版本,据我们所知,它是第一个能够对反向结合肽进行建模的工具。由于现有数据库中这些方向的结构数据有限,对这些肽进行建模提出了独特的挑战。PANDORA通过使用算法反向肽作为模板进行整合建模克服了这一挑战。我们通过两项有针对性的实验验证了PANDORA的新功能,主干结合核心L-RMSD值平均为0.63 Å。值得注意的是,即使使用来自不同等位基因和肽序列的模板,它也保持了较低的RMSD值。我们的结果表明,PANDORA将成为免疫学界的宝贵资源,有助于靶向免疫疗法的开发和疫苗设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebdf/11973093/0f9c78fefca9/fimmu-16-1525576-g001.jpg

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