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Cbl 执行 Vav1 的依赖性和 T 细胞发育的受限途径。

Cbl enforces Vav1 dependence and a restricted pathway of T cell development.

机构信息

Experimental Immunology Branch, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, United States of America.

出版信息

PLoS One. 2011 Apr 7;6(4):e18542. doi: 10.1371/journal.pone.0018542.

Abstract

Extensive studies of pre-TCR- and TCR-dependent signaling have led to characterization of a pathway deemed essential for efficient T cell development, and comprised of a cascade of sequential events involving phosphorylation of Lck and ZAP-70, followed by phosphorylation of LAT and SLP-76, and subsequent additional downstream events. Of interest, however, reports from our lab as well as others have indicated that the requirements for ZAP-70, LAT, and SLP-76 are partially reversed by inactivation of c-Cbl (Cbl), an E3 ubiquitin ligase that targets multiple molecules for ubiquitination and degradation. Analysis of signaling events in these Cbl knockout models, including the recently reported analysis of SLP-76 transgenes defective in interaction with Vav1, suggested that activation of Vav1 might be a critical event in alternative pathways of T cell development. To extend the analysis of signaling requirements for thymic development, we have therefore assessed the effect of Cbl inactivation on the T cell developmental defects that occur in Vav1-deficient mice. The defects in Vav1-deficient thymic development, including a marked defect in DN3-DN4 transition, were completely reversed by Cbl inactivation, accompanied by enhanced phosphorylation of PLC-γ1 and ERKs in response to pre-TCR/TCR cross-linking of Vav1⁻/⁻Cbl⁻/⁻ DP thymocytes. Taken together, these results suggest a substantially modified paradigm for pre-TCR/TCR signaling and T cell development. The observed consensus pathways of T cell development, including requirements for ZAP-70, LAT, SLP-76, and Vav1, appear to reflect the restriction by Cbl of an otherwise much broader set of molecular pathways capable of mediating T cell development.

摘要

对 pre-TCR 和 TCR 依赖性信号的广泛研究导致了一条途径的特征描述,该途径被认为是有效 T 细胞发育所必需的,并且由一系列连续事件组成,涉及 Lck 和 ZAP-70 的磷酸化,随后是 LAT 和 SLP-76 的磷酸化,以及随后的其他下游事件。然而,有趣的是,我们实验室以及其他实验室的报告表明,ZAP-70、LAT 和 SLP-76 的需求部分被 Cbl(Cbl)的失活逆转,Cbl 是一种 E3 泛素连接酶,可靶向多种分子进行泛素化和降解。在这些 Cbl 敲除模型中分析信号事件,包括最近报道的 SLP-76 转基因与 Vav1 相互作用缺陷的分析,表明 Vav1 的激活可能是 T 细胞发育替代途径的关键事件。为了扩展对胸腺发育信号要求的分析,因此,我们评估了 Cbl 失活对 Vav1 缺陷型小鼠中发生的 T 细胞发育缺陷的影响。Vav1 缺陷型胸腺发育中的缺陷,包括 DN3-DN4 过渡的明显缺陷,完全被 Cbl 失活逆转,伴随着 PLC-γ1 和 ERKs 的磷酸化增强,以响应 Vav1⁻/⁻Cbl⁻/⁻DP 胸腺细胞的 pre-TCR/TCR 交联。总之,这些结果表明,pre-TCR/TCR 信号和 T 细胞发育的模型发生了实质性的改变。观察到的 T 细胞发育的共识途径,包括对 ZAP-70、LAT、SLP-76 和 Vav1 的需求,似乎反映了 Cbl 对能够介导 T 细胞发育的更广泛的分子途径的限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a1d/3072394/04842bc57655/pone.0018542.g001.jpg

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