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功能分析人类血管肿瘤 FOS 变体确定一种新的降解机制和肿瘤发生的联系。

Functional analyses of a human vascular tumor FOS variant identify a novel degradation mechanism and a link to tumorigenesis.

机构信息

From the Departments of Pathology and.

Molecular Cell Biology, Leiden University Medical Center (LUMC), 2300 RC Leiden, The Netherlands.

出版信息

J Biol Chem. 2017 Dec 29;292(52):21282-21290. doi: 10.1074/jbc.C117.815845. Epub 2017 Nov 17.

DOI:10.1074/jbc.C117.815845
PMID:29150442
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5766951/
Abstract

Epithelioid hemangioma is a locally aggressive vascular neoplasm, found in bones and soft tissue, whose cause is currently unknown, but may involve oncogene activation. FOS is one of the earliest viral oncogenes to be characterized, and normal cellular FOS forms part of the activator protein 1 (AP-1) transcription factor complex, which plays a pivotal role in cell growth, differentiation, and survival as well as the DNA damage response. Despite this, a causal link between aberrant FOS function and naturally occurring tumors has not yet been established. Here, we describe a thorough molecular and biochemical analysis of a mutant FOS protein we identified in these vascular tumors. The mutant protein lacks a highly conserved helix consisting of the C-terminal four amino acids of FOS, which we show is indispensable for fast, ubiquitin-independent FOS degradation via the 20S proteasome. Our work reveals that FOS stimulates endothelial sprouting and that perturbation of normal FOS degradation could account for the abnormal vessel growth typical of epithelioid hemangioma. To the best of our knowledge, this is the first functional characterization of mutant FOS proteins found in tumors.

摘要

上皮样血管内皮细胞瘤是一种局部侵袭性的血管肿瘤,发生于骨骼和软组织,其病因目前尚不清楚,但可能涉及癌基因的激活。fos 是最早被鉴定的病毒癌基因之一,正常细胞 fos 是激活蛋白 1(AP-1)转录因子复合物的一部分,在细胞生长、分化和存活以及 DNA 损伤反应中起着关键作用。尽管如此,fos 功能异常与自然发生的肿瘤之间的因果关系尚未建立。在这里,我们描述了对在这些血管肿瘤中鉴定到的突变 fos 蛋白进行的全面分子和生化分析。突变蛋白缺失 fos 末端四个氨基酸组成的高度保守螺旋,我们证明这对于通过 20S 蛋白酶体快速、非泛素依赖的 fos 降解是必不可少的。我们的工作表明,fos 刺激内皮细胞发芽,而正常 fos 降解的破坏可能解释了上皮样血管内皮细胞瘤中典型的异常血管生长。据我们所知,这是首次对肿瘤中发现的突变 fos 蛋白进行功能表征。

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Functional analyses of a human vascular tumor FOS variant identify a novel degradation mechanism and a link to tumorigenesis.功能分析人类血管肿瘤 FOS 变体确定一种新的降解机制和肿瘤发生的联系。
J Biol Chem. 2017 Dec 29;292(52):21282-21290. doi: 10.1074/jbc.C117.815845. Epub 2017 Nov 17.
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