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调节性T细胞的激酶组分析:深入探究复杂的细胞内网络

Kinome Profiling of Regulatory T Cells: A Closer Look into a Complex Intracellular Network.

作者信息

Tuettenberg Andrea, Hahn Susanne A, Mazur Johanna, Gerhold-Ay Aslihan, Scholma Jetse, Marg Iris, Ulges Alexander, Satoh Kazuki, Bopp Tobias, Joore Jos, Jonuleit Helmut

机构信息

Department of Dermatology, University Medical Center Mainz, Johannes Gutenberg-University, Mainz, Germany.

Institute of Medical Biostatistics, Epidemiology and Informatics (IMBEI), University Medical Center Mainz, Johannes Gutenberg-University, Mainz, Germany.

出版信息

PLoS One. 2016 Feb 16;11(2):e0149193. doi: 10.1371/journal.pone.0149193. eCollection 2016.

Abstract

Regulatory T cells (Treg) are essential for T cell homeostasis and maintenance of peripheral tolerance. They prevent activation of auto-reactive T effector cells (Teff) in the context of autoimmunity and allergy. Otherwise, Treg also inhibit effective immune responses against tumors. Besides a number of Treg-associated molecules such as Foxp3, CTLA-4 or GARP, known to play critical roles in Treg differentiation, activation and function, the involvement of additional regulatory elements is suggested. Herein, kinase activities seem to play an important role in Treg fine tuning. Nevertheless, our knowledge regarding the complex intracellular signaling pathways controlling phenotype and function of Treg is still limited and based on single kinase cascades so far. To gain a more comprehensive insight into the pathways determining Treg function we performed kinome profiling using a phosphorylation-based kinome array in human Treg at different activation stages compared to Teff. Here we have determined intriguing quantitative differences in both populations. Resting and activated Treg showed an altered pattern of CD28-dependent kinases as well as of those involved in cell cycle progression. Additionally, significant up-regulation of distinct kinases such as EGFR or CK2 in activated Treg but not in Teff not only resemble data we obtained in previous studies in the murine system but also suggest that those specific molecular activation patterns can be used for definition of the activation and functional state of human Treg. Taken together, detailed investigation of kinome profiles opens the possibility to identify novel molecular mechanisms for a better understanding of Treg biology but also for development of effective immunotherapies against unwanted T cell responses in allergy, autoimmunity and cancer.

摘要

调节性T细胞(Treg)对于T细胞稳态和外周耐受的维持至关重要。它们可防止自身免疫和过敏情况下自身反应性T效应细胞(Teff)的激活。此外,Treg还会抑制针对肿瘤的有效免疫反应。除了一些已知在Treg分化、激活和功能中起关键作用的与Treg相关的分子,如Foxp3、CTLA-4或GARP外,还提示有其他调节元件的参与。在此,激酶活性似乎在Treg的精细调节中发挥重要作用。然而,我们目前对于控制Treg表型和功能的复杂细胞内信号通路的了解仍然有限,且目前仅基于单个激酶级联反应。为了更全面地了解决定Treg功能的信号通路,我们使用基于磷酸化的激酶组芯片,对处于不同激活阶段的人Treg与Teff进行了激酶组分析。在此,我们确定了这两个群体中有趣的定量差异。静息和激活的Treg显示出CD28依赖性激酶以及参与细胞周期进程的激酶的模式改变。此外,激活的Treg中而非Teff中某些特定激酶(如EGFR或CK2)的显著上调,不仅与我们之前在小鼠系统研究中获得的数据相似,还表明这些特定的分子激活模式可用于定义人Treg的激活和功能状态。综上所述,对激酶组谱的详细研究为更好地理解Treg生物学以及开发针对过敏、自身免疫和癌症中不必要T细胞反应的有效免疫疗法,提供了识别新分子机制的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbf8/4755507/ae75f8b1e683/pone.0149193.g001.jpg

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