Constitutive Fas ligand expression in several non-lymphoid mouse tissues: implications for immune-protection and cell turnover.

Behring Institute Mitteilungen Pub Date : 1996-10-01
L E French, J Tschopp
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Abstract

The cell surface receptor Fas (FasR, Apo-1, CD95) and its ligand (FasL) are mediators of apoptosis which have been shown to be implicated in peripheral deletion of autoimmune cells, activation-induced T cell death, and one of the two major cytolytic pathways mediated by CD8+ cytolytic T cells. Analysis of FasL expression during mouse embryogenesis and in adult tissues reveals that FasL, although initially thought to be restricted to lymphoid cells, is constitutively expressed in a wide array of non lymphoid tissues. FasL mRNA is detectable in mouse embryos from 16.5-d onwards in epithelial cells of the submaxillary gland, and neurons of the developing nervous system. In general, FasL mRNA was not detectable in characteristic sites of embryonic programmed cell death. In the adult mouse, by RNase protection analysis, FasL mRNA is detectable in all 20 tissues tested except for the heart and pancreas. Similar analysis performed simultaneously for Fas indicates that several tissues, including the thymus, lung, spleen, small intestine, liver, seminal vesicle, prostate and uterus co-express the two genes. Most tissues constitutively co-expressing Fas and FasL in the adult mouse are characterized by apoptotic cell turnover, and many of those expressing FasL are known to be immune-privileged. The pattern of FasL expression in mice suggests that FasL may be implicated in the regulation of physiological cell turnover, and the protection of tissues against potential lymphocyte mediated damage.

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组成型Fas配体在几种非淋巴小鼠组织中的表达:对免疫保护和细胞更新的影响。
细胞表面受体Fas (FasR, Apo-1, CD95)及其配体FasL是细胞凋亡的介质,已被证明与自身免疫细胞的外周缺失、激活诱导的T细胞死亡以及CD8+细胞溶解T细胞介导的两种主要细胞溶解途径之一有关。FasL在小鼠胚胎发育和成年组织中的表达分析表明,FasL虽然最初被认为局限于淋巴样细胞,但在广泛的非淋巴样组织中也有组成性表达。FasL mRNA可在小鼠胚胎16.5 d后的上颌下腺上皮细胞和发育中的神经系统神经元中检测到。一般来说,FasL mRNA在胚胎程序性细胞死亡的特征位点未检测到。在成年小鼠中,通过RNase保护分析,FasL mRNA在除心脏和胰腺外的所有20个测试组织中均可检测到。同时对Fas进行的类似分析表明,包括胸腺、肺、脾脏、小肠、肝脏、精囊、前列腺和子宫在内的几个组织共同表达这两个基因。在成年小鼠中,大多数组成型共表达Fas和FasL的组织都以凋亡细胞转换为特征,并且许多表达FasL的组织已知具有免疫特权。FasL在小鼠中的表达模式表明,FasL可能参与调节生理细胞周转,并保护组织免受潜在的淋巴细胞介导的损伤。
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