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Holding All the CARDs: How MALT1 Controls CARMA/CARD-Dependent Signaling

机译:持有所有卡:MALT1如何控制依赖CARMA / CARD的信号

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摘要

The scaffold proteins CARMA1-3 (encoded by the genes CARD11, -14 and -10) and CARD9 play major roles in signaling downstream of receptors with immunoreceptor tyrosine activation motifs (ITAMs), G-protein coupled receptors (GPCR) and receptor tyrosine kinases (RTK). These receptors trigger the formation of oligomeric CARMA/CARD-BCL10-MALT1 (CBM) complexes via kinases of the PKC family. The CBM in turn regulates gene expression by the activation of NF-κB and AP-1 transcription factors and controls transcript stability. The paracaspase MALT1 is the only CBM component having an enzymatic (proteolytic) activity and has therefore recently gained attention as a potential drug target. Here we review recent advances in the understanding of the molecular function of the protease MALT1 and summarize how MALT1 scaffold and protease function contribute to the transmission of CBM signals. Finally, we will highlight how dysregulation of MALT1 function can cause pathologies such as immunodeficiency, autoimmunity, psoriasis, and cancer.
机译:支架蛋白CARMA1-3(由CARD11,-14和-10基因编码)和CARD9在具有免疫受体酪氨酸激活基序(ITAM),G蛋白偶联受体(GPCR)和受体酪氨酸激酶的受体下游信号传导中起主要作用(RTK)。这些受体通过PKC家族的激酶触发寡聚CARMA / CARD-BCL10-MALT1(CBM)复合物的形成。 CBM通过激活NF-κB和AP-1转录因子调节基因表达,并控制转录本的稳定性。对半胱天冬酶MALT1是唯一具有酶促(蛋白水解)活性的CBM成分,因此最近已成为潜在的药物靶点而引起关注。在这里,我们审查了解蛋白酶MALT1的分子功能的最新进展,并总结MALT1支架和蛋白酶功能如何有助于CBM信号的传输。最后,我们将重点介绍MALT1功能失调如何导致诸如免疫缺陷,自身免疫,牛皮癣和癌症的病理。

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