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定量分析 Myc 在 T 细胞激活过程中如何控制 T 细胞蛋白质组和代谢途径。

Quantitative analysis of how Myc controls T cell proteomes and metabolic pathways during T cell activation.

机构信息

Cell Signalling and Immunology Division, School of Life Sciences, University of Dundee, Dundee, United Kingdom.

出版信息

Elife. 2020 Feb 5;9:e53725. doi: 10.7554/eLife.53725.

Abstract

T cell expansion and differentiation are critically dependent on the transcription factor c-Myc (Myc). Herein we use quantitative mass-spectrometry to reveal how Myc controls antigen receptor driven cell growth and proteome restructuring in murine T cells. Analysis of copy numbers per cell of >7000 proteins provides new understanding of the selective role of Myc in controlling the protein machinery that govern T cell fate. The data identify both Myc dependent and independent metabolic processes in immune activated T cells. We uncover that a primary function of Myc is to control expression of multiple amino acid transporters and that loss of a single Myc-controlled amino acid transporter effectively phenocopies the impact of Myc deletion. This study provides a comprehensive map of how Myc selectively shapes T cell phenotypes, revealing that Myc induction of amino acid transport is pivotal for subsequent bioenergetic and biosynthetic programs and licences T cell receptor driven proteome reprogramming.

摘要

T 细胞的扩增和分化严重依赖于转录因子 c-Myc(Myc)。在这里,我们使用定量质谱法来揭示 Myc 如何控制抗原受体驱动的细胞生长和小鼠 T 细胞的蛋白质组重构。对超过 7000 种蛋白质的每个细胞的拷贝数进行分析,为 Myc 控制决定 T 细胞命运的蛋白质机制的选择性作用提供了新的认识。数据识别了免疫激活 T 细胞中 Myc 依赖和非依赖的代谢过程。我们发现 Myc 的一个主要功能是控制多种氨基酸转运蛋白的表达,而单个 Myc 控制的氨基酸转运蛋白的缺失有效地模拟了 Myc 缺失的影响。这项研究提供了一个全面的图谱,说明了 Myc 如何选择性地塑造 T 细胞表型,揭示了 Myc 诱导氨基酸转运对于随后的生物能量和生物合成程序以及 T 细胞受体驱动的蛋白质组重编程至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd8f/7056270/07d7c73cdeea/elife-53725-fig1.jpg

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