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肿瘤坏死因子诱导人中性粒细胞选择性脱落其p75受体。

Tumor necrosis factor induces a selective shedding of its p75 receptor from human neutrophils.

作者信息

Porteu F, Hieblot C

机构信息

Institut National de la Santé et de la Recherche Médicale U90, Hôpital Necker, Paris, France.

出版信息

J Biol Chem. 1994 Jan 28;269(4):2834-40.

PMID:8300617
Abstract

The effect of tumor necrosis factor alpha (TNF) on the expression of its specific receptors (p55 TNF-R and p75 TNF-R) on the surface of human neutrophils (PMN) and mononuclear cells (MNC) was investigated and compared to the effect of various agonists. PMN and MNC express both p55 and p75 TNF-R on their membranes. Within minutes of incubation with chemotactic factors or calcium ionophore A23187, both types of TNF-R were down-regulated from the surface on both cell populations. At the same time, soluble forms of these TNF-R appeared in supernatants, in amounts proportional to the extent of down-regulation induced by each stimulus, suggesting that shedding is the major mechanism leading to loss of p55 and p75 TNF-R upon activation with these agonists. Likewise, TNF induced 60-80% and 73-90% decreases in PMN surface p55 TNF-R and p75 TNF-R, respectively. However, modulation of the two types of TNF-R by TNF proceeded through different mechanisms. TNF induced a selective shedding of the p75 TNF-R since, by both enzyme-linked immunosorbent assay and Western blot analysis, only the p75 TNF-R was detected in supernatants of cells stimulated with TNF. Down-modulation of surface p55 TNF-R most probably resulted from TNF-induced receptor internalization, since 125I-TNF bound to PMN p55 TNF-R was rapidly internalized with a t1/2 = 5 min and preincubation of PMN with TNF inhibited by 68 +/- 6% the release of p55 TNF-R triggered upon subsequent treatment with A23187. The apparently unique property of TNF to induce a differential modulation of the two types of TNF-R at the surface of PMN and MNC might play an important role in the control of peripheral blood cell responses to TNF.

摘要

研究了肿瘤坏死因子α(TNF)对人中性粒细胞(PMN)和单核细胞(MNC)表面其特异性受体(p55 TNF-R和p75 TNF-R)表达的影响,并与各种激动剂的作用进行了比较。PMN和MNC在其细胞膜上均表达p55和p75 TNF-R。在用趋化因子或钙离子载体A23187孵育数分钟内,两种类型的TNF-R均从这两种细胞群体的表面下调。同时,这些TNF-R的可溶性形式出现在上清液中,其含量与每种刺激诱导的下调程度成比例,这表明脱落是在用这些激动剂激活后导致p55和p75 TNF-R丢失的主要机制。同样,TNF分别使PMN表面的p55 TNF-R和p75 TNF-R减少60 - 80%和73 - 90%。然而,TNF对两种类型TNF-R的调节通过不同机制进行。TNF诱导p75 TNF-R的选择性脱落,因为通过酶联免疫吸附测定和蛋白质印迹分析,仅在TNF刺激的细胞上清液中检测到p75 TNF-R。表面p55 TNF-R的下调很可能是由TNF诱导的受体内化引起的,因为与PMN p55 TNF-R结合的125I-TNF以t1/2 = 5分钟的速度迅速内化,并且用TNF预孵育PMN可抑制随后用A23187处理引发的p55 TNF-R释放的68 +/- 6%。TNF在PMN和MNC表面诱导两种类型TNF-R的差异调节这一明显独特的特性可能在控制外周血细胞对TNF的反应中起重要作用。

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