Digging deeper into the immunopeptidome: characterization of post-translationally modified peptides presented by MHC I.

Kiran K Mangalaparthi, Anil K Madugundu, Zachary C Ryan, Kishore Garapati, Jane A Peterson, Gourav Dey, Amol Prakash, Akhilesh Pandey
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引用次数: 6

Abstract

Peptides presented by MHC molecules on the cell surface, or the immunopeptidome, play an important role in the adaptive arm of the immune response. Antigen processing for MHC class I molecules is a ubiquitous pathway present in all nucleated cells which generates and presents peptides of both self and non-self-origin. Peptides with post-translational modifications represent one category of peptides presented by MHC class I molecules. However, owing to the complexity of self-peptides presented by cells, the diversity of peptides with post-translational modifications is not well-studied. In this study, we carried out MHC Class I immunopeptidomics analysis of Loucy T-cell leukemia and A375 malignant melanoma cell line to characterize the diversity of post-translational modifications of MHC class I-bound peptides. Using high resolution mass spectrometry, we identified 25,761 MHC-bound peptides across both cell lines using Bolt and Sequest search engines. The enrichment method was highly specific as ~ 90% of the peptides were of typical length (8-12 amino acids long) and the motifs were expected based on previously reported motifs for MHC I alleles. Among the MHC-bound peptides, we identified phosphorylation as a major post-translational modification followed by deamidation. We observed site-specific localization of these post-translational modifications, at position P4 for phosphorylated peptides and position P3 for deamidated peptides. We identified a smaller number of peptides with acetylated and methylated lysine, possibly due to very low stoichiometric levels of these PTMs compared to phosphorylation and deamidation. Using PEAKS de novo sequencing algorithm, we identified spliced peptides that accounted for ~ 5-7% of MHC-bound peptides that were otherwise similar in their features as normal MHC-bound peptides. We validated the identity of several post-translationally modified peptides and spliced peptides through mass spectrometric analysis of synthetic peptides. Our study confirms post-translationally modified peptides to be present at low stoichiometric levels along with unusual spliced peptides through unbiased identification using high resolution mass spectrometry.

Supplementary information: The online version contains supplementary material available at 10.1007/s42485-021-00066-x.

Abstract Image

Abstract Image

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深入挖掘免疫肽穹窿:MHC I呈现的翻译后修饰肽的表征。
由MHC分子呈递到细胞表面的肽,或称免疫肽穹窿,在免疫应答的适应性臂中起着重要作用。MHC I类分子的抗原加工是存在于所有有核细胞中的普遍途径,它产生和呈递自身和非自身来源的肽。翻译后修饰肽是一类由MHC I类分子呈现的肽。然而,由于细胞呈现的自肽的复杂性,翻译后修饰肽的多样性尚未得到很好的研究。在这项研究中,我们对Loucy t细胞白血病和A375恶性黑色素瘤细胞系进行了MHC I类免疫肽组学分析,以表征MHC I类结合肽翻译后修饰的多样性。使用高分辨率质谱,我们通过Bolt和Sequest搜索引擎在两个细胞系中鉴定了25,761个mhc结合肽。富集方法具有很高的特异性,约90%的肽为典型长度(8-12个氨基酸长),并且根据先前报道的MHC I等位基因的基序进行预测。在mhc结合的肽中,我们确定磷酸化是翻译后的主要修饰,然后是脱酰胺。我们观察到这些翻译后修饰的位点特异性定位,磷酸化肽在P4位置,脱酰胺肽在P3位置。我们发现了较少数量的乙酰化和甲基化赖氨酸肽,可能是由于与磷酸化和脱酰胺相比,这些PTMs的化学计量水平非常低。使用峰值从头测序算法,我们鉴定了占mhc结合肽约5-7%的剪接肽,这些剪接肽在其他方面与正常mhc结合肽相似。我们通过对合成肽的质谱分析验证了几种翻译后修饰肽和剪接肽的身份。我们的研究证实了翻译后修饰肽存在于低化学计量水平,以及不寻常的剪接肽通过无偏鉴定使用高分辨率质谱。补充信息:在线版本包含补充资料,提供地址为10.1007/s42485-021-00066-x。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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