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天然异天冬酰基化蛋白修饰 ZAP70 改变狼疮患者 T 细胞反应。

Natural isoaspartyl protein modification of ZAP70 alters T cell responses in lupus.

机构信息

Section of Rheumatology, Allergy and Immunology, Department of Internal Medicine, Yale University, New Haven, CT, USA.

Keck MS & Proteomics Resource, WM Keck Foundation Biotechnology Resource Laboratory, New Haven, CT, USA.

出版信息

Autoimmunity. 2023 Dec;56(1):2282945. doi: 10.1080/08916934.2023.2282945. Epub 2023 Nov 23.

Abstract

Protein posttranslational modifications (PTMs) arise in a number of normal cellular biological pathways and in response to pathology caused by inflammation and/or infection. Indeed, a number of PTMs have been identified and linked to specific autoimmune responses and metabolic pathways. One particular PTM, termed isoaspartyl (isoAsp or isoD) modification, is among the most common spontaneous PTM occurring at physiological pH and temperature. Herein, we demonstrate that isoAsp modifications arise within the ZAP70 protein tyrosine kinase upon T-cell antigen receptor (TCR) engagement. The enzyme protein -isoaspartate -methyltransferase (PCMT1, or PIMT, EC 2.1.1.77) evolved to repair isoaspartyl modifications in cells. In this regard, we observe that increased levels of isoAsp modification that arise under oxidative stress are correlated with reduced PIMT activity in patients with systemic lupus erythematosus (SLE). PIMT deficiency leads to T cell hyper-proliferation and hyper-phosphorylation through ZAP70 signaling. We demonstrate that inducing the overexpression of PIMT can correct the hyper-responsive phenotype in lupus T cells. Our studies reveal a phenotypic role of isoAsp modification and phosphorylation of ZAP70 in lupus T cell autoimmunity and provide a potential therapeutic target through the repair of isoAsp modification.

摘要

蛋白质翻译后修饰(PTMs)在许多正常的细胞生物学途径中产生,并对炎症和/或感染引起的病理学作出反应。事实上,已经鉴定出许多 PTMs 与特定的自身免疫反应和代谢途径有关。一种特殊的 PTM,称为异天冬氨酸(isoAsp 或 isoD)修饰,是在生理 pH 和温度下最常见的自发 PTM 之一。在这里,我们证明 ZAP70 蛋白酪氨酸激酶在 T 细胞抗原受体(TCR)结合后会发生异天冬氨酸修饰。酶蛋白 -isoaspartate -methyltransferase(PCMT1,或 PIMT,EC 2.1.1.77)进化为修复细胞中的异天冬氨酸修饰。在这方面,我们观察到氧化应激下产生的异天冬氨酸修饰水平增加与系统性红斑狼疮(SLE)患者中 PIMT 活性降低有关。PIMT 缺乏会通过 ZAP70 信号导致 T 细胞过度增殖和过度磷酸化。我们证明诱导 PIMT 的过表达可以纠正狼疮 T 细胞的高反应表型。我们的研究揭示了异天冬氨酸修饰和 ZAP70 磷酸化在狼疮 T 细胞自身免疫中的表型作用,并通过修复异天冬氨酸修饰提供了一个潜在的治疗靶点。

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