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Smad7转录本的差异表达可识别介导V型胶原诱导的肺移植耐受的CD4+CD45RChigh调节性T细胞。

Differential expression of Smad7 transcripts identifies the CD4+CD45RChigh regulatory T cells that mediate type V collagen-induced tolerance to lung allografts.

作者信息

Mizobuchi Teruaki, Yasufuku Kazuhiro, Zheng Yan, Haque M Azizul, Heidler Kathleen M, Woods Kena, Smith Gerald N, Cummings Oscar W, Fujisawa Takehiko, Blum Janice S, Wilkes David S

机构信息

Department of Thoracic Surgery, Graduate School of Medicine, Chiba University, Chiba, Japan.

出版信息

J Immunol. 2003 Aug 1;171(3):1140-7. doi: 10.4049/jimmunol.171.3.1140.

Abstract

Regulatory T cells (Tregs) induced by oral tolerance may suppress immunity by production of TGF-beta that could also enhance Treg activity. However, all cells that are phenotypically Tregs in rats (CD4(+)CD45RC(high)-RC(high)) may not have regulatory function. Because Smad7 expression in T cells is associated with inflammation and autoimmunity, then lack of Smad7 may identify those cells that function as Tregs. We reported that feeding type V collagen (col(V)) to WKY rats (RT1(l)) induces oral tolerance to lung allografts (F344-RT1(lvl)) by T cells that produce TGF-beta. The purpose of the current study was to identify the Tregs that mediate col(V)-induced tolerance, and determine Smad7 expression in these cells. RC(high) cells from tolerant rats were unresponsive to allogeneic stimulation and abrogated rejection after adoptive transfer. In contrast, CD4(+)CD45RC(low) (RC(low)) cells from tolerant rats and RC(high) or RC(low) cells from normal rats or untreated allograft recipients proliferated vigorously in response to donor Ags, and did not suppress rejection after adoptive transfer. TGF-beta enhanced proliferation in response to col(V) presented to tolerant RC(high), but not other cells. In contrast to other cells, only RC(high) cells from tolerant rats did not express Smad7. Collectively, these data show that the Tregs that mediate col(V)-induced tolerance to lung allografts do not express SMAD7 and, therefore, are permissive to TGF-beta-mediated signaling.

摘要

口服耐受诱导的调节性T细胞(Tregs)可能通过产生转化生长因子-β(TGF-β)来抑制免疫,而TGF-β也可增强Treg活性。然而,大鼠中所有表型为Tregs的细胞(CD4(+)CD45RC(high)-RC(high))可能并不都具有调节功能。由于T细胞中Smad7的表达与炎症和自身免疫相关,因此缺乏Smad7可能有助于识别那些发挥Tregs功能的细胞。我们报道,给WKY大鼠(RT1(l))喂食V型胶原蛋白(col(V))可通过产生TGF-β的T细胞诱导对肺同种异体移植物(F344-RT1(lvl))的口服耐受。本研究的目的是鉴定介导col(V)诱导的耐受的Tregs,并确定这些细胞中Smad7的表达。来自耐受大鼠的RC(high)细胞对同种异体刺激无反应,在过继转移后可消除排斥反应。相比之下,来自耐受大鼠的CD4(+)CD45RC(low)(RC(low))细胞以及来自正常大鼠或未经处理的同种异体移植受体的RC(high)或RC(low)细胞在接触供体抗原后会强烈增殖,过继转移后不能抑制排斥反应。TGF-β增强了对呈递给耐受RC(high)细胞的col(V)的反应性增殖,但对其他细胞无此作用。与其他细胞不同,只有来自耐受大鼠的RC(high)细胞不表达Smad7。总的来说,这些数据表明,介导col(V)诱导的对肺同种异体移植耐受的Tregs不表达SMAD7,因此对TGF-β介导的信号传导敏感。

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