The Impact of Sugar Conformation on the Single-Stranded DNA Selectivity of APOBEC3A and APOBEC3B Enzymes.

IF 3.5 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY ACS Chemical Biology Pub Date : 2025-01-17 Epub Date: 2024-12-16 DOI:10.1021/acschembio.4c00540
Mackenzie K Wyllie, Clare K Morris, Nicholas H Moeller, Henry A M Schares, Ramkumar Moorthy, Christopher A Belica, Michael J Grillo, Özlem Demir, Alex M Ayoub, Michael A Carpenter, Hideki Aihara, Reuben S Harris, Rommie E Amaro, Daniel A Harki
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Abstract

The APOBEC3 family of polynucleotide cytidine deaminases has diverse roles as viral restriction factors and oncogenic mutators. These enzymes convert cytidine to uridine in single-stranded (ss)DNA, inducing genomic mutations that promote drug resistance and tumor heterogeneity. Of the seven human APOBEC3 members, APOBEC3A (A3A) and APOBEC3B (A3B) are most implicated in driving pro-tumorigenic mutations. How these enzymes engage and selectively deaminate ssDNA over RNA is not well understood. We previously conducted molecular dynamics (MD) simulations that support the role of sugar conformation as a key molecular determinant in nucleic acid recognition by A3B. We hypothesize that A3A and A3B selectively deaminate substrates in the 2'-endo (DNA) conformation and show reduced activity for 3'-endo (RNA) conformation substrates. Consequently, we have characterized A3A- and A3B-binding and deaminase activity with chimeric oligonucleotides containing cytidine analogues that promote either the 2'-endo or 3'-endo conformation. Using fluorescence polarization and gel-based deamination assays, we determined that sugar conformation preferentially impacts the ability of these enzymes to deaminate substrates and less so binding to substrates. Using MD simulations, we identify specific active site interactions that promote selectivity based on the 2'-endo conformation. These findings help inform the biological functions of A3A and A3B in providing antiviral innate immunity and pathogenic functions in cancer.

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糖构象对 APOBEC3A 和 APOBEC3B 酶单链 DNA 选择性的影响
APOBEC3多核苷酸胞苷脱氨酶家族作为病毒限制因子和致癌突变因子具有多种作用。这些酶将单链DNA中的胞苷转化为尿苷,诱导促进耐药和肿瘤异质性的基因组突变。在人类APOBEC3的7个成员中,APOBEC3A (A3A)和APOBEC3B (A3B)与驱动致瘤前突变最相关。这些酶是如何参与并选择性地脱氨ssDNA而不是RNA的,目前还不清楚。我们之前进行了分子动力学(MD)模拟,支持糖构象作为A3B识别核酸的关键分子决定因素的作用。我们假设A3A和A3B选择性地对2'-endo (DNA)构象的底物进行脱氨,并对3'-endo (RNA)构象的底物表现出较低的活性。因此,我们已经用含有胞苷类似物的嵌合寡核苷酸表征了A3A-和a3b -结合和脱氨酶活性,这些核苷酸可以促进2'-末端或3'-末端构象。利用荧光偏振和凝胶脱氨实验,我们确定糖的构象优先影响这些酶对底物脱氨的能力,而对底物结合的影响较小。使用MD模拟,我们确定了特定的活性位点相互作用,促进了基于2'-末端构象的选择性。这些发现有助于了解A3A和A3B在提供抗病毒先天免疫和癌症致病功能方面的生物学功能。
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来源期刊
ACS Chemical Biology
ACS Chemical Biology 生物-生化与分子生物学
CiteScore
7.50
自引率
5.00%
发文量
353
审稿时长
3.3 months
期刊介绍: ACS Chemical Biology provides an international forum for the rapid communication of research that broadly embraces the interface between chemistry and biology. The journal also serves as a forum to facilitate the communication between biologists and chemists that will translate into new research opportunities and discoveries. Results will be published in which molecular reasoning has been used to probe questions through in vitro investigations, cell biological methods, or organismic studies. We welcome mechanistic studies on proteins, nucleic acids, sugars, lipids, and nonbiological polymers. The journal serves a large scientific community, exploring cellular function from both chemical and biological perspectives. It is understood that submitted work is based upon original results and has not been published previously.
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