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Fas/Apo-1(CD95)可溶性变体共有的N端结构域可在体外防止细胞死亡。

An N-terminal domain shared by Fas/Apo-1 (CD95) soluble variants prevents cell death in vitro.

作者信息

Papoff G, Cascino I, Eramo A, Starace G, Lynch D H, Ruberti G

机构信息

Department of Immunobiology, Institute of Cell Biology, National Research Council, Rome, Italy.

出版信息

J Immunol. 1996 Jun 15;156(12):4622-30.

PMID:8648105
Abstract

Fas/Apo-1 molecule, also designated as CD95, is a member of the TNF receptor family. Fas cross-linking by its natural ligand or by agonistic mAbs results in rapid induction of apoptosis in susceptible cells. in addition to the Fas full-length mRNA, human activated PBMC and tumor cell lines express several mRNA Fas variants that derive from alternative splicing of the primary transcript. All five variants identified, two of which are newly described here, code for soluble proteins that, with the exception of FasTMDel, are truncated in the extracytoplasmic region and possess short C-terminal amino acid sequences corresponding to a different reading frame. We have identified Abs that recognize all splicing variants and established a sandwich ELISA by which the soluble Fas molecules could be detected in culture supernatants of transfected cell lines and in PBMC following T cell activation. Next, we have studied in detail the functional role of these variants by apoptosis inhibition studies. We found that all soluble proteins block the apoptosis induced by either an agonistic Ab or, more importantly, by the natural Fas ligand in Fas-positive sensitive cell lines. interestingly, this functional property can be assigned to the first 49 amino acids of the mature protein that is the only region shared by the five soluble Fas molecules.

摘要

Fas/Apo-1分子,也被称为CD95,是肿瘤坏死因子受体家族的一员。Fas通过其天然配体或激动性单克隆抗体进行交联,会导致易感细胞中迅速诱导凋亡。除了Fas全长mRNA外,人活化的外周血单个核细胞(PBMC)和肿瘤细胞系还表达几种源自初级转录本可变剪接的mRNA Fas变体。已鉴定出的所有五种变体中,有两种是本文新描述的,它们编码可溶性蛋白,除了FasTMDel外,这些可溶性蛋白在胞外区域被截断,并拥有对应于不同阅读框的短C末端氨基酸序列。我们鉴定出了能识别所有剪接变体的抗体,并建立了一种夹心酶联免疫吸附测定法(ELISA),通过该方法可在转染细胞系的培养上清液以及T细胞活化后的PBMC中检测可溶性Fas分子。接下来,我们通过凋亡抑制研究详细探讨了这些变体的功能作用。我们发现,所有可溶性蛋白都能阻断由激动性抗体或更重要的是由天然Fas配体在Fas阳性敏感细胞系中诱导的凋亡。有趣的是,这种功能特性可归因于成熟蛋白的前49个氨基酸,这是五个可溶性Fas分子唯一共有的区域。

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