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首页> 外文期刊>Current Signal Transduction Therapy >T-Cell Zeta Chain Expression, Phosphorylation and Degradation and their Role in T-Cell Signal Transduction and Immune Response Regulation in Health And Disease
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T-Cell Zeta Chain Expression, Phosphorylation and Degradation and their Role in T-Cell Signal Transduction and Immune Response Regulation in Health And Disease

机译:T细胞Zeta链的表达,磷酸化和降解及其在健康和疾病中T细胞信号转导和免疫应答调节中的作用

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摘要

T-cell zeta chain expression, phosphorylation and degradation and their role in T-cell signal transduction and immune response regulation in health and disease.nnZeta chain is a stable constituent of the antigen specific T-cell receptor and its phosphorylation is one of the earliest and key events in the T-cell signal transduction. Zeta chain phosphorylation is strictly controlled by the action of sarcomafamily kinases and also by phosphatases, indicating its crucial role in antigen specific T-cell activation. Furthermore, after its phosphorylation and T-cell activation, ζ-chain is ubiquitylated and degraded, a fact suggesting that its level on T-cell surface is also under control and contribute to the regulation of an initiated immune response.nnZeta chain expression and/or phosphorylation seems to be of great importance in many clinical conditions from the pathogenesis of various types of cancer to the immunosuppressive state in dialysis patients. Its levels are also affected by chronic inflammation.nnIn addition to its role in the antigen specific signal transduction, ζ-chain is present only in T-cells and natural killer cells, making it a possible target for immunotherapeutic applications. The recent discovery of specific inhibitors of ζ-chain phosphorylation opens new horizons for future research and for possible therapeutic interventions in various clinical conditions.
机译:T细胞Zeta链的表达,磷酸化和降解及其在健康和疾病中T细胞信号转导和免疫应答调节中的作用。nnZeta链是抗原特异性T细胞受体的稳定成分,其磷酸化是最早的之一和T细胞信号转导中的关键事件。 Zeta链的磷酸化受到肉瘤家族激酶和磷酸酶的严格控制,表明其在抗原特异性T细胞活化中的关键作用。此外,在其磷酸化和T细胞活化后,ζ链被泛素化并降解,这一事实表明其在T细胞表面的水平也处于控制之下,并有助于调节启动的免疫应答。nnZeta链表达和/从各种癌症的发病机理到透析患者的免疫抑制状态,磷酸化或磷酸化在许多临床条件下似乎都非常重要。它的水平也受慢性炎症的影响。除了其在抗原特异性信号转导中的作用外,ζ链仅存在于T细胞和自然杀伤细胞中,使其成为免疫治疗应用的可能靶标。 ζ链磷酸化特异性抑制剂的最新发现为未来的研究以及在各种临床条件下可能的治疗性干预开辟了新的前景。

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