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Protease activity of the API2–MALT1 fusion oncoprotein in MALT lymphoma development and treatment

机译:API2-MALT1融合癌蛋白在MALT淋巴瘤发生和治疗中的蛋白酶活性

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摘要

Gastric mucosa-associated lymphoid tissue (MALT) lymphoma is a prototypical cancer that occurs in the setting of chronic inflammation and an important model for understanding how deregulated NF-κB transcriptional activity contributes to malignancy. Most gastric MALT lymphomas require ongoing antigenic stimulation for continued tumor growth, and Stage I disease is usually cured by eradicating the causative microorganism, Helicobacter pylori, with antibiotics. However, in a subset of MALT lymphomas, chromosomal translocations are acquired that render the lymphoma antigen-independent. The recurrent translocation t(11;18)(q21;q21) is associated with failure to respond to antibiotic therapy and increased rate of dissemination. This translocation creates the API2–MALT1 fusion oncoprotein, which comprises the amino terminus of inhibitor of apoptosis 2 (API2 or cIAP2) fused to the carboxy terminus of MALT1. A common characteristic of chromosomal translocations in MALT lymphoma, including t(11;18), is that genes involved in the regulation of the NF-κB transcription factor are targeted by the translocations, and these genetic perturbations thereby result in deregulated, constitutive NF-κB stimulation. In the last decade, great insights into the roles of API2 and MALT1 in NF-κB signaling have been made. For example, recent pivotal studies have uncovered the long sought-after proteolytic activity of MALT1 and have demonstrated its critical involvement in the survival of certain lymphomas. Here, we review the current understanding of the role of MALT1 in normal lymphocyte function and lymphomagenesis. We then highlight our recent work that has revealed an intriguing link between the proteolytic activity of the API2–MALT1 fusion and its ability to influence lymphomagenesis by cleaving a key NF-κB regulatory protein, NF-κB-inducing kinase.
机译:胃粘膜相关淋巴样组织(MALT)淋巴瘤是一种典型的癌症,发生在慢性炎症的环境中,并且是了解失调的NF-κB转录活性如何导致恶性肿瘤的重要模型。大多数胃MALT淋巴瘤需要持续的抗原刺激才能使肿瘤持续生长,并且通常通过用抗生素根除病原微生物幽门螺杆菌来治愈I期疾病。但是,在一部分MALT淋巴瘤中,获得了染色体易位,从而使淋巴瘤不依赖抗原。复发性易位t(11; 18)(q21; q21)与对抗生素治疗的反应失败以及传播速度增加有关。这种易位产生了API2-MALT1融合癌蛋白,它包含与MALT1羧基末端融合的凋亡抑制因子2(API2或cIAP2)的氨基末端。 MALT淋巴瘤中包括t(11; 18)在内的染色体易位的一个共同特征是,与NF-κB转录因子调控有关的基因被易位,而这些遗传扰动导致NF-κB失控,组成型κB刺激。在过去的十年中,人们对API2和MALT1在NF-κB信号传导中的作用有了深入的了解。例如,最近的关键研究发现了MALT1长期以来广受追捧的蛋白水解活性,并证明了其在某些淋巴瘤的存活中的关键作用。在这里,我们回顾了目前对MALT1在正常淋巴细胞功能和淋巴瘤发生中的作用的理解。然后,我们重点介绍了我们最近的工作,该工作揭示了API2-MALT1融合蛋白的蛋白水解活性与其通过裂解关键的NF-κB调节蛋白NF-κB诱导激酶影响淋巴瘤发生的能力之间的联系。

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