Department of Biochemistry, Molecular Biology & Biophysics, Institute for Molecular Virology, Center for Genome Engineering, University of Minnesota, 321 Church Street SE, Minneapolis, Minnesota 55455, United States.
ACS Chem Biol. 2012 Mar 16;7(3):506-17. doi: 10.1021/cb200440y. Epub 2012 Jan 17.
APOBEC3G is a single-stranded DNA cytosine deaminase that comprises part of the innate immune response to viruses and transposons. Although APOBEC3G is the prototype for understanding the larger mammalian polynucleotide deaminase family, no specific chemical inhibitors exist to modulate its activity. High-throughput screening identified 34 compounds that inhibit APOBEC3G catalytic activity. Twenty of 34 small molecules contained catechol moieties, which are known to be sulfhydryl reactive following oxidation to the orthoquinone. Located proximal to the active site, C321 was identified as the binding site for the inhibitors by a combination of mutational screening, structural analysis, and mass spectrometry. Bulkier substitutions C321-to-L, F, Y, or W mimicked chemical inhibition. A strong specificity for APOBEC3G was evident, as most compounds failed to inhibit the related APOBEC3A enzyme or the unrelated enzymes E. coli uracil DNA glycosylase, HIV-1 RNase H, or HIV-1 integrase. Partial, but not complete, sensitivity could be conferred to APOBEC3A by introducing the entire C321 loop from APOBEC3G. Thus, a structural model is presented in which the mechanism of inhibition is both specific and competitive, by binding a pocket adjacent to the APOBEC3G active site, reacting with C321, and blocking access to substrate DNA cytosines.
APOBEC3G 是一种单链 DNA 胞嘧啶脱氨酶,构成了先天免疫系统对病毒和转座子的反应的一部分。虽然 APOBEC3G 是理解更大的哺乳动物多核苷酸脱氨酶家族的原型,但没有专门的化学抑制剂来调节其活性。高通量筛选鉴定出 34 种抑制 APOBEC3G 催化活性的化合物。在 34 种小分子中,有 20 种含有儿茶酚部分,这些儿茶酚在氧化为邻苯醌后已知具有巯基反应性。C321 位于活性位点附近,通过突变筛选、结构分析和质谱分析的组合确定为抑制剂的结合位点。C321 到 L、F、Y 或 W 的较大取代物模拟了化学抑制。对 APOBEC3G 的特异性很强,因为大多数化合物不能抑制相关的 APOBEC3A 酶或不相关的酶大肠杆菌尿嘧啶 DNA 糖基化酶、HIV-1 RNase H 或 HIV-1 整合酶。通过引入 APOBEC3G 整个 C321 环,可以使 APOBEC3A 部分而非完全敏感。因此,提出了一个结构模型,其中抑制机制既具有特异性又具有竞争性,通过结合邻近 APOBEC3G 活性位点的口袋,与 C321 反应,并阻止底物 DNA 胞嘧啶的进入。