Jones Katherine F M, Shehata Mohamed, Carpenter Michael A, Amaro Rommie E, Harki Daniel A
Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, United States.
Department of Chemistry and Biochemistry, University of California - San Diego, La Jolla, California 92093, United States.
ACS Med Chem Lett. 2023 Feb 14;14(3):338-343. doi: 10.1021/acsmedchemlett.2c00517. eCollection 2023 Mar 9.
APOBEC3A (A3A)-catalyzed DNA cytosine deamination is implicated in virus and cancer mutagenesis, and A3A is a target for small molecule drug discovery. The catalytic glutamic acid (E72) is frequently mutated in biochemical studies to characterize deamination-dependent versus deamination-independent A3A functions. Additionally, catalytically active A3A is toxic in bacterial expression systems, which adversely affects yield during recombinant A3A expression. Here, we demonstrate that mutating the catalytic glutamic acid to an isosteric glutamine (E72Q) significantly decreases the thermal stability of the protein, compared to the alanine-inactivating mutation (E72A). Differential scanning fluorimetry and mass spectrometry reveal that A3A E72Q is less thermally stable than A3A E72A or wild-type A3A. Strikingly, A3A E72Q is partially denatured at 37 °C and binds single-stranded DNA with significantly poorer affinity compared to A3A E72A. This study constitutes an important cautionary note on A3A protein design and informs that A3A E72A is the preferred catalytic inactivation mutation for most applications.
载脂蛋白B mRNA编辑酶催化多肽样3A(APOBEC3A,A3A)催化的DNA胞嘧啶脱氨基作用与病毒和癌症的诱变有关,并且A3A是小分子药物研发的一个靶点。在生化研究中,催化性谷氨酸(E72)经常发生突变,以表征依赖脱氨基作用与不依赖脱氨基作用的A3A功能。此外,具有催化活性的A3A在细菌表达系统中具有毒性,这对重组A3A表达过程中的产量产生不利影响。在此,我们证明,与使A3A失活的丙氨酸突变(E72A)相比,将催化性谷氨酸突变为等排谷氨酰胺(E72Q)会显著降低蛋白质的热稳定性。差示扫描荧光法和质谱分析表明,A3A E72Q的热稳定性低于A3A E72A或野生型A3A。引人注目的是,A3A E72Q在37℃时会部分变性,并且与A3A E72A相比,其与单链DNA结合的亲和力明显更差。这项研究对A3A蛋白质设计构成了一个重要的警示,并表明A3A E72A是大多数应用中首选的催化失活突变。