首页> 外文期刊>Molecular Immunology >Involvement of CD4 D3-D4 membrane proximal extracellular domain for the inhibitory effect of oxidative stress on activation-induced CD4 down-regulation and its possible role for T cell activation.
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Involvement of CD4 D3-D4 membrane proximal extracellular domain for the inhibitory effect of oxidative stress on activation-induced CD4 down-regulation and its possible role for T cell activation.

机译:CD4 D3-D4膜近端细胞外结构域参与氧化应激对激活诱导的CD4下调的抑制作用及其对T细胞激活的可能作用。

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摘要

During antigen presentation, CD4 functions to stabilize T cell receptor (TCR)-class II MHC interactions and coordinate Ag-induced T cell activation signals. These activation signals cause CD4 down-regulation, presumably acting to optimize T cell activation. We previously reported that oxidative stress interferes with activation-induced CD4 down-regulation in T cells. In this study, we have further investigated inhibition of CD4 down-regulation by oxidative stress and its role for T cell activation. A construct comprised of the mouse FcgammaRIIB extracellular domain and the transmembrane/cytoplasmic domains of human CD4 (FcgammaR/CD4) was expressed in a human T cell line. Oxidant actually potentiated down-regulation of the FcgammaR/CD4 chimera and induced Lck dissociation from both CD4 and FcgammaR/CD4, which is a crucial intracellular process for activation-induced CD4 down-regulation, suggesting a critical role of CD4 ectodomain in the inhibition of CD4 down-regulation by oxidative stress. Furthermore, insertion of CD4 D3-D4 membrane proximal extracellular region between FcgammaR extracellular domain and CD4 transmembrane/cytoplasmic domains in FcgammaR/CD4 chimera made this molecule behave like native CD4 molecule under oxidative stress condition. These data imply that the inhibitory effect of oxidative stress on CD4 down-regulation is executed via D3-D4 domain of CD4 ectodomain. As to its role for T cell activation, CD4 coaggregation with CD3 under the oxidative conditions enhanced activation signal induced by CD3 aggregation. Our results demonstrate that Ag-induced T cell activation which is normally concomitant with CD4 down-regulation may be disturbed through the aberrant regulation of CD4 expression by oxidative stress.
机译:在抗原呈递过程中,CD4起到稳定T细胞受体(TCR)II类MHC相互作用并协调Ag诱导的T细胞激活信号的作用。这些激活信号导致CD4下调,可能是为了优化T细胞激活。我们以前曾报道过氧化应激会干扰T细胞中激活诱导的CD4下调。在这项研究中,我们进一步研究了氧化应激对CD4下调的抑制及其对T细胞活化的作用。由人FcgammaRIIB细胞外结构域和人CD4的跨膜/胞质结构域(FcgammaR / CD4)组成的构建体在人T细胞系中表达。氧化剂实际上增强了FcgammaR / CD4嵌合体的下调并诱导了Lck从CD4和FcgammaR / CD4的解离,这是激活诱导的CD4下调的关键细胞内过程,提示CD4胞外域在抑制CD4的过程中起关键作用。 CD4被氧化应激下调。此外,在FcgammaR / CD4嵌合体中的FcgammaR细胞外结构域和CD4跨膜/胞质结构域之间插入CD4 D3-D4膜近端细胞外区域,使该分子在氧化应激条件下表现得像天然CD4分子。这些数据暗示氧化应激对CD4下调的抑制作用是通过CD4胞外域的D3-D4域执行的。至于其对T细胞活化的作用,在氧化条件下CD4与CD3的共聚集增强了由CD3聚集诱导的活化信号。我们的结果表明,通常由CD4下调引起的Ag诱导的T细胞活化可能受到氧化应激对CD4表达异常调节的干扰。

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