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CD95-CD95配体:大脑能向免疫系统学习吗?

CD95-CD95L: can the brain learn from the immune system?

作者信息

Becher B, Barker P A, Owens T, Antel J P

机构信息

Neuroimmunology Unit, Montreal Neurological Institute, McGill University, Quebec, Canada.

出版信息

Trends Neurosci. 1998 Mar;21(3):114-7. doi: 10.1016/s0166-2236(97)01180-6.

Abstract

Members of the tumor necrosis factor/nerve growth factor receptor superfamily of cell-surface molecules can play the dual role of mediating either cytotoxicity or cell survival, both in the immune system and in the nervous system. A member of this superfamily, CD95 (also known as ApoI or Fas), was initially identified in the immune system and has been shown to mediate receptor-dependent programmed cell death and to be expressed in the nervous system. In neurodegenerative disorders, CD95-CD95 ligand expression on glial cells might precede receptor-mediated apoptosis by cells of the CNS. It is now being recognized that CD95 signaling by immune cells mediates effects other than apoptosis, such as cell survival and under inflammatory conditions expression of this protein promotes neural-immune interactions. Both neuroscientists and immunologists can contribute to defining the mechanisms underlying these divergent effects and utilize such knowledge to aid understanding of cell death and survival.

摘要

肿瘤坏死因子/神经生长因子受体超家族的细胞表面分子成员,在免疫系统和神经系统中都能发挥介导细胞毒性或细胞存活的双重作用。该超家族的一个成员CD95(也称为ApoI或Fas)最初在免疫系统中被鉴定出来,并已被证明能介导受体依赖性程序性细胞死亡,且在神经系统中表达。在神经退行性疾病中,胶质细胞上的CD95 - CD95配体表达可能先于中枢神经系统细胞的受体介导的凋亡。现在人们认识到,免疫细胞的CD95信号传导介导的作用不仅仅是凋亡,如细胞存活,而且在炎症条件下,这种蛋白质的表达会促进神经 - 免疫相互作用。神经科学家和免疫学家都可以为确定这些不同作用背后的机制做出贡献,并利用这些知识来帮助理解细胞死亡和存活。

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