High-throughput mutagenesis reveals functional determinants for DNA targeting by activation-induced deaminase

被引:18
作者
Gajula, Kiran S. [1 ]
Huwe, Peter J. [2 ]
Mo, Charlie Y. [3 ]
Crawford, Daniel J. [1 ]
Stivers, James T. [4 ]
Radhakrishnan, Ravi [2 ]
Kohli, Rahul M. [1 ,3 ]
机构
[1] Univ Penn, Perelman Sch Med, Dept Med, Div Infect Dis, Philadelphia, PA 19104 USA
[2] Univ Penn, Dept Bioengn, Philadelphia, PA 19104 USA
[3] Univ Penn, Perelman Sch Med, Dept Biochem & Biophys, Philadelphia, PA 19104 USA
[4] Johns Hopkins Univ, Dept Pharmacol & Mol Sci, Sch Med, Baltimore, MD 21205 USA
基金
美国国家卫生研究院;
关键词
CLASS-SWITCH RECOMBINATION; MOLECULAR-DYNAMICS; SOMATIC HYPERMUTATION; CRYSTAL-STRUCTURE; CYTIDINE DEAMINASE; AID/APOBEC FAMILY; HIGH-RESOLUTION; AID; APOBEC3G; RESTRICTION;
D O I
10.1093/nar/gku689
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Antibody maturation is a critical immune process governed by the enzyme activation-induced deaminase (AID), a member of the AID/APOBEC DNA deaminase family. AID/APOBEC deaminases preferentially target cytosine within distinct preferred sequence motifs in DNA, with specificity largely conferred by a small 9-11 residue protein loop that differs among family members. Here, we aimed to determine the key functional characteristics of this protein loop in AID and to thereby inform our understanding of the mode of DNA engagement. To this end, we developed a methodology (Sat-Sel-Seq) that couples saturation mutagenesis at each position across the targeting loop, with iterative functional selection and next-generation sequencing. This high-throughput mutational analysis revealed dominant characteristics for residues within the loop and additionally yielded enzymatic variants that enhance deaminase activity. To rationalize these functional requirements, we performed molecular dynamics simulations that suggest that AID and its hyperactive variants can engage DNA in multiple specific modes. These findings align with AID's competing requirements for specificity and flexibility to efficiently drive antibody maturation. Beyond insights into the AID-DNA interface, our Sat-Sel-Seq approach also serves to further expand the repertoire of techniques for deep positional scanning and may find general utility for high-throughput analysis of protein function.
引用
收藏
页码:9964 / 9975
页数:12
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