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将EB病毒潜伏膜蛋白1(LMP1)跨膜结构域与CD40胞质结构域融合,在组成性激活表皮生长因子受体表达、核因子-κB和应激激活蛋白激酶方面与LMP1相似。

A fusion of the EBV latent membrane protein-1 (LMP1) transmembrane domains to the CD40 cytoplasmic domain is similar to LMP1 in constitutive activation of epidermal growth factor receptor expression, nuclear factor-kappa B, and stress-activated protein kinase.

作者信息

Hatzivassiliou E, Miller W E, Raab-Traub N, Kieff E, Mosialos G

机构信息

Department of Microbiology, Harvard Medical School, Brigham and Women's Hospital, Boston, MA 02115, USA.

出版信息

J Immunol. 1998 Feb 1;160(3):1116-21.

PMID:9570524
Abstract

The EBV latent infection transforming protein, LMP1, has six hydrophobic transmembrane domains that enable it to aggregate in the plasma membrane and a 200-amino acid carboxyl-terminal cytoplasmic domain (CT) that activates nuclear factor-kappaB and induces many of the phenotypic changes in B lymphocytes that accompany CD40 activation. Since the phenotypic effects of LMP1 are similar to those of activated CD40, we now compare signaling from the LMP1 CT with that from the CD40 CT fused to the LMP1 transmembrane domains. The LMPCD40 chimera was similar to LMP1 in nuclear factor-kappaB activation and in up-regulation of epidermal growth factor receptor expression. CD40 ligation was known to activate the stress-activated protein kinase, and both LMPCD40 and LMP1 are now shown to induce stress-activated protein kinase activity in the absence of ligand. Deletion of the first four transmembrane domains of LMP1 abrogated LMP1 aggregation in the plasma membrane and nearly abolished signaling from LMP1 or the LMPCD40 chimera. These results highlight the role of LMP1 as a constitutively active receptor similar to CD40 and provide a novel approach for the generation of ligand-independent receptors.

摘要

EB病毒潜伏感染转化蛋白LMP1有六个疏水跨膜结构域,使其能够在质膜中聚集,还有一个200个氨基酸的羧基末端胞质结构域(CT),可激活核因子-κB并诱导B淋巴细胞中许多伴随CD40激活的表型变化。由于LMP1的表型效应与活化的CD40相似,我们现在比较LMP1 CT与融合到LMP1跨膜结构域的CD40 CT的信号传导。LMPCD40嵌合体在核因子-κB激活和表皮生长因子受体表达上调方面与LMP1相似。已知CD40连接可激活应激激活蛋白激酶,现在发现LMPCD40和LMP1在无配体情况下均可诱导应激激活蛋白激酶活性。删除LMP1的前四个跨膜结构域可消除LMP1在质膜中的聚集,并几乎消除LMP1或LMPCD40嵌合体的信号传导。这些结果突出了LMP1作为类似于CD40的组成型活性受体的作用,并为生成不依赖配体的受体提供了一种新方法。

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