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Functional characterization of a BCL10 isoform in the rainbow trout Oncorhynchus mykiss

机译:虹鳟Onkihynchus mykiss中BCL10亚型的功能表征

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The complexes formed by BCL10, MALT1 and members of the family of CARMA proteins have recently been the focus of much attention because they represent a key mechanism for regulating activation of the transcription factor NF-@kB. Here, we report the functional characterization of a novel isoform of BCL10 in the trout Oncorhynchus mykiss, which we named tBCL10. tBCL10 dimerizes, binds to components of the CBM complex and forms cytoplasmic filaments. Functionally, tBCL10 activates NF-@kB transcription factor and is inhibited by the deubiquitinating enzyme A20. Finally, depletion experiments indicate that tBCL10 can functionally replace the human protein. This work demonstrates the evolutionary conservation of the mechanism of NF-@kB activation through the CBM complex, and indicates that the rainbow trout O. mykiss can serve as a model organism to study this pathway.
机译:最近,由BCL10,MALT1和CARMA蛋白家族成员形成的复合物成为人们关注的焦点,因为它们代表了调节转录因子NF-kB激活的关键机制。在这里,我们报告了鳟鱼Oncorhynchus mykiss中一种新型的BCL10亚型的功能特性,我们将其命名为tBCL10。 tBCL10二聚化,结合CBM复合物的成分并形成细胞质细丝。在功能上,tBCL10激活NF-kB转录因子,并被去泛素化酶A20抑制。最后,耗竭实验表明tBCL10可以在功能上替代人类蛋白质。这项工作证明了通过CBM复合物的NF-kB激活机制的进化保守性,并表明虹鳟O. mykiss可以作为模型生物来研究该途径。

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