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ISG15 and Protein ISGylation in Cancer

ISG15 and Protein ISGylation in Cancer
癌症中的 ISG15 和蛋白质 ISG 化
批准号:
10590733
负责人:
DONG-ER ZHANG
金额:
$40.51万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
未结题
起止时间:
2013-03-01 至 2025-02-28

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Title: ISG15 and protein ISGylation in cancer Summary The long-term goal of this study is to understand the role of ISG15-related protein posttranslational modification (ISGylation, a ubiquitin-like modification) in cancer development and prognosis. In recent years our knowledge about type I interferon (IFN) signaling in cancer has expanded rapidly. It is now recognized that IFN plays important roles during cancer development and in the efficacy of cancer therapies. The bioactivity of IFN relies on the expression of many IFN-stimulated genes (ISGs). However, the functions of different ISGs associated with the effect of IFN in cancer remain largely unknown. ISG15 is one of the major ISGs. Its expression is strongly upregulated by IFN and by any cellular stress that promotes IFN production. Furthermore, most of the enzymes involved in protein ISGylation are also encoded by ISGs. Therefore, protein ISGylation is tightly regulated by IFN signaling. Since ISG15 is not found in simple eukaryotic organisms, such as yeast and nematodes, it is likely involved in specialized functions in complex organisms, such as human and mouse. Our lab is among a few pioneer groups that identified key enzymes, protein targets, and biochemical effects of protein ISGylation. Furthermore, we generated the ISG15 E1 enzyme,Uba7, knockout and ISG15 deconjugating enzyme, Usp18, knockout mouse models, which lack protein ISGylation and accumulate ISGylated proteins, respectively. ISG15 expression is upregulated in many human cancers. More importantly, expression of UBA7 is associated with favorable patient survival in multiple types of human cancer. During the previous funding period, we discovered that Uba7-mediated protein ISGylation had a previously unrecognized function in the fine tuning of IFN-related tumor-immune crosstalk by facilitating expression of key cytokines and chemokines. Based on current knowledge and our preliminary data, we hypothesize that protein ISGylation contributes to IFN-mediated chromatin remodeling, restriction of cancer cell stemness, and efficacy of cancer therapies. To test this hypothesis, we will perform the following studies: Aim 1. Examine protein ISGylation in IFN-mediated chromatin remodeling; Aim 2. Analyze protein ISGylation in IFN-mediated restriction of cancer stem cells; Aim 3. Investigate the cancer therapeutic potential of blocking the ISG15-deconjugating enzyme activity of Usp18.
期刊论文(6)
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会议论文
DOI: 10.7554/elife.58825
发表时间: 2020-09-18
期刊: eLife
影响因子: 7.7
作者: [Mudla A, Jiang Y, Arimoto KI, Xu B, Rajesh A, Ryan AP, Wang W, Daugherty MD, Zhang DE, Hao N]
通讯作者: Hao N
DOI: 10.1038/nsmb.3378
发表时间: 2017-03
期刊: Nature structural & molecular biology
影响因子: 16.8
作者: [Arimoto KI, Löchte S, Stoner SA, Burkart C, Zhang Y, Miyauchi S, Wilmes S, Fan JB, Heinisch JJ, Li Z, Yan M, Pellegrini S, Colland F, Piehler J, Zhang DE]
通讯作者: Zhang DE
Plakophilin-2 induced EGFR phosphorylation: a focus on the intracellular activators of EGFR.
Plakophilin-2 诱导 EGFR 磷酸化:聚焦 EGFR 细胞内激活剂。
DOI: 10.14800/rci.485
发表时间: 2014
期刊: Receptors & clinical investigation
影响因子: --
作者: [Arimoto,Kei-Ichiro, Weng,Stephanie, Zhang,Dong-Er]
通讯作者: Zhang,Dong-Er
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