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Lymphoma of mucosa-associated lymphoid tissue(MALT lymphoma) is the most common extranodal B cell tumor and accounts for 8% of non-Hodgkin’s lymphomas. Gastric MALT lymphoma is the best-studied example and is a prototypical neoplasm that occurs in the setting of chronic inflammation brought on by persistent infection or autoimmune disease. Cytogenetic abnormalities are commonly acquired during the course of disease and the most common is chromosomal translocation t(11;18)(q21;q21), which creates the API2-MALT1 fusion oncoprotein. t(11;18)-positive lymphomas can be clinically aggressive and have a higher rate of dissemination than t(11;18)-negative tumors. Many cancers, including MALT lymphomas, characteristically exhibit deregulated over-activation of cellular survival pathways, such as the nuclear factor-κB(NF-κB) pathway. Molecular characterization of API2-MALT1 has revealed it to be a potent activator of NF-κB, which is required for API2-MALT1-induced cellular transformation, however the mechanisms by which API2-MALT1 exerts these effects are only recently becoming apparent. The API2 moiety of the fusion binds tumor necrosis factor(TNF) receptor associated factor(TRAF) 2 and receptor interacting protein 1(RIP1), two proteins essential for TNF receptor induced NF-κB activation. By effectively mimicking ligand-bound TNF receptor, API2-MALT1 promotes TRAF2-dependent ubiquitination of RIP1, which then acts as a scaffold for nucleating and activating the canonical NF-κB machinery. Activation occurs, in part, through MALT1 moiety-dependent recruitment of TRAF6, which can directly modify NF-κB essential modulator, the principal downstream regulator of NF-κB. While theintrinsic MALT1 protease catalytic activity is dispensable for this canonical NF-κB signaling, it is critical for noncanonical NF-κB activation. In this regard, API2-MALT1 recognizes NF-κB inducing kinase(NIK), the essential upstream regulator of non-canonical NF-κB, and cleaves it to generate a stable, constitutively active fragment. Thus,
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篇名 API2-MALT1 oncoprotein promotes lymphomagenesis via unique program of substrate ubiquitination and proteolysis
来源期刊 世界生物化学杂志:英文版(电子版) 学科 医学
关键词 Oncogene Fusion ONCOPROTEIN Lymphoma CHROMOSOMAL translocation UBIQUITINATION Apoptosis Nuclear factor-κB CASPASES
年,卷(期) 2016,(1) 所属期刊栏目
研究方向 页码范围 128-137
页数 10页 分类号 R733.1
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Oncogene
Fusion
ONCOPROTEIN
Lymphoma
CHROMOSOMAL
translocation
UBIQUITINATION
Apoptosis
Nuclear
factor-κB
CASPASES
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世界生物化学杂志:英文版(电子版)
季刊
1949-8454
北京市朝阳区东四环中路62号楼远洋国际中
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391
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0
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