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对小鼠TAP转运体底物特异性的详细分析。

A detailed analysis of the murine TAP transporter substrate specificity.

作者信息

Burgevin Anne, Saveanu Loredana, Kim Yohan, Barilleau Emilie, Kotturi Maya, Sette Alessandro, van Endert Peter, Peters Bjoern

机构信息

Institut National de la Santé et de la Recherche Médicale, Paris, France.

出版信息

PLoS One. 2008 Jun 11;3(6):e2402. doi: 10.1371/journal.pone.0002402.

Abstract

BACKGROUND

The transporter associated with antigen processing (TAP) supplies cytosolic peptides into the endoplasmic reticulum for binding to major histocompatibility complex (MHC) class I molecules. Its specificity therefore influences the repertoire of peptides presented by MHC molecules. Compared to human TAP, murine TAP's binding specificity has not been characterized as well, even though murine systems are widely used for basic studies of antigen processing and presentation.

METHODOLOGY/PRINCIPAL FINDINGS: We performed a detailed experimental analysis of murine TAP binding specificity by measuring the binding affinities of 323 peptides. Based on this experimental data, a computational model of murine TAP specificity was constructed. The model was compared to previously generated data on human and murine TAP specificities. In addition, the murine TAP specificities for known epitopes and random peptides were predicted and compared to assess the impact of murine TAP selectivity on epitope selection.

CONCLUSIONS/SIGNIFICANCE: Comparisons to a previously constructed model of human TAP specificity confirms the well-established differences for peptide substrates with positively charged C-termini. In addition these comparisons show that several residues at the N-terminus of peptides which strongly influence binding to human TAP showed little effect on binding to murine TAP, and that the overall influence of the aminoterminal residues on peptide affinity for murine TAP is much lower than for the human transporter. Murine TAP also partly prefers different hydrophobic amino acids than human TAP in the carboxyterminal position. These species-dependent differences in specificity determined in vitro are shown to correlate with the epitope repertoire recognized in vivo. The quantitative model of binding specificity of murine TAP developed herein should be useful for interpreting epitope mapping and immunogenicity data obtained in humanized mouse models.

摘要

背景

抗原加工相关转运体(TAP)将胞质肽转运至内质网,以便与主要组织相容性复合体(MHC)I类分子结合。因此,其特异性会影响MHC分子所呈递肽段的种类。尽管小鼠系统广泛用于抗原加工与呈递的基础研究,但与人类TAP相比,小鼠TAP的结合特异性尚未得到充分表征。

方法/主要发现:我们通过测量323种肽段的结合亲和力,对小鼠TAP的结合特异性进行了详细的实验分析。基于这些实验数据,构建了小鼠TAP特异性的计算模型。将该模型与先前生成的关于人类和小鼠TAP特异性的数据进行了比较。此外,对已知表位和随机肽段的小鼠TAP特异性进行了预测和比较,以评估小鼠TAP选择性对表位选择的影响。

结论/意义:与先前构建的人类TAP特异性模型进行比较,证实了带正电荷C末端的肽底物存在公认的差异。此外,这些比较表明,对人类TAP结合有强烈影响的肽段N末端的几个残基对小鼠TAP结合的影响很小,并且氨基末端残基对小鼠TAP肽亲和力的总体影响远低于人类转运体。在羧基末端位置,小鼠TAP也部分偏好与人类TAP不同的疏水氨基酸。体外确定的这些物种特异性差异与体内识别的表位种类相关。本文建立的小鼠TAP结合特异性定量模型应有助于解释在人源化小鼠模型中获得的表位图谱和免疫原性数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f27/2408963/787a894bee5b/pone.0002402.g001.jpg

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