通过使用基因靶向突变小鼠,深入了解T细胞的个体发生和激活。

Journal of inflammation Pub Date : 1995-01-01
T W Mak
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引用次数: 0

摘要

T淋巴细胞通过其T细胞抗原受体(TcR)的α链和β链识别与主要组织相容性复合物产物结合的肽。T细胞与靶细胞或抗原呈递细胞之间的相互作用也由一系列其他辅助细胞表面蛋白辅助。这些辅助分子中最具特征的可能是CD4和CD8,它们分别在辅助t细胞和细胞毒性t细胞谱系上差异表达。当这些细胞表面蛋白与配体结合后,一系列信号通过相关蛋白激酶(如淋巴细胞特异性酪氨酸激酶)在胞浆内转导。另一个重要的信号传导成分是细胞表面酪氨酸磷酸酶CD45,它通过选择性剪接在各种造血和淋巴细胞上以不同的亚型发生。尽管TcR的复杂性,通过这些受体产生的信号被认为不足以完全激活T淋巴细胞。许多研究者认为,CD28分子和TcR的侧枝(共刺激)信号通路促进了T淋巴细胞的完全活化。此外,免疫应答受许多细胞因子和可溶性因子的调节。最后,在一个非常基本的水平上,转录因子,如那些参与控制干扰素产生的转录因子,在t细胞发育和免疫反应中是重要的。为了更好地了解这些分子在T淋巴细胞功能和个体发育中的作用,我们产生了一系列突变小鼠,这些突变小鼠编码这些分子的基因被破坏。下面的讨论报告了在这些突变动物身上观察到的一些发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gaining insights into the ontogeny and activation of T cells through the use of gene-targeted mutant mice.

T lymphocytes recognize peptides bound to major histocompatibility complex products through the alpha- and beta-chains of their T-cell antigen receptors (TcR). The interaction between T cells and target cells or antigen-presenting cells is also assisted by a series of other accessory cell surface proteins. Probably most characterized of these accessory molecules are CD4 and CD8, which are differentially expressed on helper and cytotoxic T-cell lineages, respectively. Upon engagement of ligands by these cell surface proteins, a series of signals are transduced intracytoplasmically via associated protein kinases, such as the lymphocyte-specific tyrosine kinase lck. Another component important to signaling is the cell surface tyrosine phosphatase CD45, which through alternative splicing occurs in different isoforms on various hematopoietic and lymphopoietic cells. Despite the complexity of the TcR, signals generated via these receptors are thought to be insufficient to fully activate T lymphocytes. Many investigators believe that collateral (costimulatory) signaling of the CD28 molecule and the TcR facilitates complete activation of T lymphocytes. In addition, immune responses are regulated by a number of cytokines and soluble factors. Finally, at a very basic level, transcriptional factors, such as those involved in controlling interferon production, are important in T-cell development and immune responses. In an attempt to better understand the roles of these molecules in T lymphocyte function and ontogeny, we generated a series of mutant mice with disruptions in the genes coding for these molecules. The following discussion reports on some of the findings observed with these mutant animals.

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