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The role of ubiquitination in Cbl-mediated negative regulation of the Src-family and Syk/ZAP-70 tyrosine kinases.

机译:泛素化在Cbl介导的Src家族和Syk / ZAP-70酪氨酸激酶的负调控中的作用。

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摘要

The intensity of cellular activation in response to antigen receptor engagement determines the level and duration of the immune response. Suboptimal early signals can result in the failure to mount an immune response leading to increased susceptibility to infections. In contrast, too robust an early response can lead to uncontrolled lymphocyte activation and proliferation resulting in host tissue damage and/or autoimmunity. Therefore, understanding the regulatory mechanisms that determine the intensity of early signaling events initiated downstream of antigen receptors is a critical goal in immunology.; Activation of two distinct families of cytoplasmic protein tyrosine kinases, Src-family and Syk/ZAP-70 kinases, is the earliest biochemical response to antigen receptor engagement and is absolutely required for initiating cellular activation. While numerous studies have focused on identifying and characterizing the proteins that relay activation signals downstream of tyrosine kinases, less is known about mechanisms that lead to the downregulation and modulation of tyrosine kinases themselves. One evolutionarily conserved mechanism to regulate enzymatic function is through interactions with negative and positive regulatory proteins. Recent biochemical and genetic studies have identified the proto-oncogene product Cbl as a negative regulator of receptor tyrosine kinases. The following dissertation focuses on characterizing how Cbl regulates the Syk/ZAP-70 family of non-receptor tyrosine kinases and two related but functionally distinct members of Src-family kinases, Fyn and Lck. Specifically, this dissertation (1) identifies and characterizes the Cbl binding site in Syk; (2) demonstrates that Cbl functions as a negative regulator of Syk and ZAP-70 in a manner dependent on an intact tyrosine kinase binding and RING finger domains of Cbl; (3) identifies ubiquitination as the mechanism of this regulation; (4) demonstrates that Cb1 also negatively regulates the Src-family kinases Fyn and (5) Lck by enhancing their degradation via ubiquitination; and (6) characterizes the ubiquitin ligase activity of Cbl as a novel biochemical mechanism to negatively regulate antigen receptor signal transduction.
机译:响应抗原受体参与的细胞活化强度决定了免疫反应的水平和持续时间。次优信号不足​​会导致无法建立免疫反应,从而导致感染的易感性增加。相反,太强的早期反应会导致不受控制的淋巴细胞活化和增殖,从而导致宿主组织损伤和/或自身免疫。因此,了解决定抗原受体下游启动的早期信号事件强度的调节机制是免疫学的关键目标。两个不同的胞质蛋白酪氨酸激酶家族Src家族和Syk / ZAP-70激酶的激活是对抗原受体参与的最早生化反应,并且是启动细胞激活所绝对需要的。尽管许多研究集中于鉴定和表征在酪氨酸激酶下游传递激活信号的蛋白质,但对于导致酪氨酸激酶自身下调和调节的机制了解甚少。调节酶功能的一种进化上保守的机制是通过与负和正调节蛋白相互作用。最近的生化和遗传研究已将原癌基因产物Cbl鉴定为受体酪氨酸激酶的负调节剂。以下论文着重介绍了Cbl如何调控Syk / ZAP-70非受体酪氨酸激酶家族以及Src家族激酶的两个相关但功能不同的成员Fyn和Lck。具体而言,本文(1)鉴定并表征了Syk中的Cbl结合位点; (2)证明Cbl以依赖于完整的酪氨酸激酶结合和Cbl的RING指域的方式充当Syk和ZAP-70的负调节剂; (3)确定泛素化是本法规的机制; (4)证明Cb1还通过泛素化增强它们的降解而对Src家族激酶Fyn和(5)Lck产生负调控; (6)将Cbl的泛素连接酶活性表征为一种负调控抗原受体信号转导的新生化机制。

著录项

  • 作者

    Rao, Navin Leslie.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Health Sciences Immunology.; Biology Cell.; Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 预防医学、卫生学;细胞生物学;肿瘤学;
  • 关键词

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