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T细胞发育过程中对CD3ε的特定要求。

Specific requirement for CD3epsilon in T cell development.

作者信息

DeJarnette J B, Sommers C L, Huang K, Woodside K J, Emmons R, Katz K, Shores E W, Love P E

机构信息

Laboratory of Mammalian Genes and Development, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Dec 8;95(25):14909-14. doi: 10.1073/pnas.95.25.14909.

Abstract

T cell antigen receptor (TCR) and pre-TCR complexes are composed of clonotypic heterodimers in association with dimers of signal transducing invariant subunits (CD3gamma, -delta, -epsilon, and zeta). The role of individual invariant subunits in T cell development has been investigated by generating gene-specific mutations in mice. Mutation of CD3gamma, -delta, or zeta results in an incomplete block in development, characterized by reduced numbers of mature T cells that express low levels of TCR. In contrast, mature T cells are absent from CD3epsilon-/- mice, and thymocyte development is arrested at the early CD4(-)CD8(-) stage. Although these results suggest that CD3epsilon is essential for pre-TCR and TCR expression/function, their interpretation is complicated by the fact that expression of the CD3gamma and CD3delta genes also is reduced in CD3epsilon-/- mice. Thus, it is unclear whether the phenotype of CD3epsilon-/- mice reflects the collective effects of CD3gamma, -delta, and -epsilon deficiency. By removing the selectable marker (PGK-NEO) from the targeted CD3epsilon gene via Cre/loxP-mediated recombination, we generated mice that lack CD3epsilon yet retain normal expression of the closely linked CD3gamma and CD3delta genes. These (CD3epsilonDelta/Delta) mice exhibited an early arrest in T cell development, similar to that of CD3epsilon-/- mice. Moreover, the developmental defect could be rescued by expression of a CD3epsilon transgene. These results identify an essential role for CD3epsilon in T cell development not shared by the CD3gamma, CD3delta, or zeta-family proteins and provide further evidence that PGK-NEO can influence the expression of genes in its proximity.

摘要

T细胞抗原受体(TCR)和前TCR复合物由克隆型异二聚体与信号转导恒定亚基(CD3γ、δ、ε和ζ)的二聚体组成。通过在小鼠中产生基因特异性突变,研究了单个恒定亚基在T细胞发育中的作用。CD3γ、δ或ζ的突变导致发育不完全受阻,其特征是表达低水平TCR的成熟T细胞数量减少。相比之下,CD3ε基因敲除小鼠中没有成熟T细胞,胸腺细胞发育在早期CD4(-)CD8(-)阶段停滞。尽管这些结果表明CD3ε对于前TCR和TCR的表达/功能至关重要,但由于CD3γ和CD3δ基因在CD3ε基因敲除小鼠中的表达也降低,使得对这些结果的解释变得复杂。因此,尚不清楚CD3ε基因敲除小鼠的表型是否反映了CD3γ、δ和ε缺陷的综合影响。通过Cre/loxP介导的重组从靶向的CD3ε基因中去除选择标记(PGK-NEO),我们培育出了缺乏CD3ε但保留紧密连锁的CD3γ和CD3δ基因正常表达的小鼠。这些(CD3εΔ/Δ)小鼠在T细胞发育中表现出早期停滞,类似于CD3ε基因敲除小鼠。此外,通过表达CD3ε转基因可以挽救发育缺陷。这些结果确定了CD3ε在T细胞发育中的关键作用,这是CD3γ、CD3δ或ζ家族蛋白所不具备的,并进一步证明PGK-NEO可以影响其附近基因的表达。

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Specific requirement for CD3epsilon in T cell development.T细胞发育过程中对CD3ε的特定要求。
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