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Regulation of activation-induced cytidine deaminase DNA deamination activity in B-cells by Ser~(38) phosphorylation

机译:通过Ser〜(38)磷酸化调节B细胞中B细胞中的胞苷脱氨酶DNA脱氨基肽活性

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Human and mouse Ig genes are diversified in mature B-cells by distinct processes known as Ig heavy-chain CSR (class switch recombination) and Ig variable-region exon SHM (somatic hypermutation). These DNA-modification processes are initiated by AID (activation-induced cytidine deaminase), a DNA cytidine deaminase predominantly expressed in activated B-cells. AID is post-transcriptionally regulated via multiple mechanisms, including microRNA regulation, nucleocytoplasmic shuttling, ubiquitination and phosphorylation. Among these regulatory processes, AID phosphorylation at Ser~(38) has been a focus of particularly intense study and debate. In the present paper, we discuss recent biochemical and mouse genetic studies that begin to elucidate the functional significance of AID Ser~(38) phosphorylation in the context of the evolution of this mode of AID regulation and the potential roles that it may play in activated B-cells during a normal immune response.
机译:人和小鼠IG基因通过称为IG重链CSR(类开关重组)和IG可变区外显子SHM(体细胞高原)的不同方法在成熟的B细胞中多样化。这些DNA改性方法通过助剂(活化诱导的胞苷脱氨酶)引发,DNA胞苷脱氨酶主要在活化的B细胞中表达。辅助通过多种机制转录后调节,包括MicroRNA调节,核细胞间穿梭,泛素化和磷酸化。在这些监管过程中,SER〜(38)的援助磷酸化是特别激烈的研究和辩论的重点。在本文中,我们讨论最近的生化和小鼠遗传研究,开始阐明援助Ser〜(38)磷酸化在这种援助调节模式和可能在激活的潜在作用的范围内磷酸化的功能意义B细胞在正常免疫应答期间。

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