t细胞受体亚型。

L K Clayton, A Lerner, A C Diener, R E Hussey, S Koyasu, E L Reinherz
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引用次数: 0

摘要

早期对缺乏t细胞受体(TCR)亚基CD3 -eta的t细胞杂交瘤的研究表明,CD3 -eta异二聚体的存在与导致磷脂酰肌醇(PI)周转的信号传导以及激活诱导的细胞死亡之间存在相关性。CD3 -eta的克隆现已允许对CD3 -zeta-、CD3 -zeta-和CD3 -eta-含tcr的信号转导特性进行彻底和直接的分析。我们发现所有形式的TCR都能够转导导致PI周转、Ca2+动员、IL-2产生和细胞周期阻滞的信号。CD3 zeta和CD3 eta利用相同的启动子产生两种产物的协调表达,因此在胸腺细胞亚群中不太可能限制CD3 eta的表达。采用抗CD3 - eta特异性单克隆抗体(MAb)的免疫组织化学方法显示,成年小鼠胸腺切片未检测到染色,这意味着充其量是低水平的构成性CD3 - eta表达。相比之下,CD3 eta的表达在使用Thy-1启动子构建的CD3 eta转基因小鼠的大多数皮质胸腺细胞中很容易检测到。然而,CD3 eta转基因小鼠体内的过表达并不会导致体内负选择增加,这与体外研究结果一致,即细胞死亡的诱导并不严格依赖于CD3 eta。尽管早期有报道检测到人CD3 eta蛋白,但我们在人胸腺或T细胞中没有发现CD3 eta信息。克隆人类cd3eta -eta基因组位点表明,小鼠与人类基因组序列的同源性约为70%,对应于小鼠cd3eta特异性外显子。然而,DNA序列的翻译不会产生同源氨基酸序列。因此,在人类中似乎不存在CD3 - eta蛋白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
T-cell-receptor isoforms.

Early work on T-cell hybridomas lacking the T-cell-receptor (TCR) sub-unit CD3 eta had suggested a correlation between the presence of CD3 zeta-eta heterodimers and signalling leading to phosphatidyl-inositol (PI) turnover as well as activation-induced cell death. The cloning of CD3 eta has now allowed thorough and direct analysis of the signal transduction properties of CD3 zeta-zeta-, CD3 zeta-eta- and CD3 eta-eta-containing TCRs. We have found that all forms of the TCR are capable of transducing signals leading to PI turnover, Ca2+ mobilization, IL-2 production and cell-cycle arrest. CD3 zeta and CD3 eta utilize the same promoter which yields coordinate expression of both products, so that restricted CD3 eta expression in a sub-population of thymocytes is unlikely. Immunohistochemical methods employing an anti-CD3 eta-specific monoclonal antibody (MAb) show no detectable staining of thymic sections from adult mice, implying at best a low level of constitutive CD3 eta expression. In contrast, CD3 eta expression is readily detected in the majority of cortical thymocytes of CD3 eta transgenic mice using a Thy-1 promoter construct. However, over-expression of CD3 eta in mice transgenic for this polypeptide does not result in increased negative selection in vivo, consistent with the in vitro findings that induction of cell death is not strictly dependent on CD3 eta. Despite earlier reports of the detection of human CD3 eta protein, we find no CD3 eta message in human thymus or T cells. Cloning of the human CD zeta-eta genomic locus has demonstrated approximately 70% homology between the mouse and human genomic sequence, corresponding to the mouse CD3 eta-specific exon. However, translation of the DNA sequence does not result in a homologous amino acid sequence. Thus, there does not appear to be a CD3 eta protein in humans.

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