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首页> 外文期刊>The Journal of biological chemistry >Phosphorylation Directly Regulates the Intrinsic DNA Cytidine Deaminase Activity of Activation-induced Deaminase and APOBEC3G Protein
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Phosphorylation Directly Regulates the Intrinsic DNA Cytidine Deaminase Activity of Activation-induced Deaminase and APOBEC3G Protein

机译:磷酸化直接调节活化诱导的脱氨酶和apobec3G蛋白的内在DNA细胞苷脱氨酶活性

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The beneficial effects of DNA cytidine deamination by activation-induced deaminase (AID; antibody gene diversification) and APOBEC3G (retrovirus restriction) are tempered by probable contributions to carcinogenesis. Multiple regulatory mechanisms serve to minimize this detrimental outcome. Here, we show that phosphorylation of a conserved threonine attenuates the intrinsic activity of activation-induced deaminase (Thr-27) and APOBEC3G (Thr-218). Phospho-null alanine mutants maintain intrinsic DNA deaminase activity, whereas phospho-mimetic glutamate mutants are inactive. The phospho-mimetic variants fail to mediate isotype switching in activated mouse splenic B lymphocytes or suppress HIV-1 replication in human T cells. Our data combine to suggest a model in which this critical threonine acts as a phospho-switch that fine-tunes the adaptive and innate immune responses and helps protect mammalian genomic DNA from procarcinogenic lesions.
机译:DNA胞嘧啶脱胺通过活化诱导的脱氨酶(AID;抗体基因多样化)和apobec3G(逆转录病毒限制)的有益效果被致癌发生的可能贡献。多种监管机制有助于最小化这种有害结果。在这里,我们表明保守的苏氨酸的磷酸化衰减活化诱导的脱氨酶(Thr-27)和Apobec3G(Thr-218)的内在活性。磷酸镍丙氨酸突变体维持内在DNA脱氨酶活性,而磷酸磷酰胺突变体是无活性的。磷酸模拟物变体未能在活化的小鼠脾脏B淋巴细胞中介导同胞型切换或抑制人T细胞中的HIV-1复制。我们的数据结合起来建议该临界苏氨酸作为磷酸切换的模型,可微调适应性和先天免疫应答,有助于保护哺乳动物基因组DNA免受促进病变。

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