Koenig Patrick, Lee Chingwei V, Walters Benjamin T, Janakiraman Vasantharajan, Stinson Jeremy, Patapoff Thomas W, Fuh Germaine
Department of Antibody Engineering, Genentech Research and Early Development, Genentech, Inc., South San Francisco, CA 94080;
Department of Antibody Engineering, Genentech Research and Early Development, Genentech, Inc., South San Francisco, CA 94080.
Proc Natl Acad Sci U S A. 2017 Jan 24;114(4):E486-E495. doi: 10.1073/pnas.1613231114. Epub 2017 Jan 5.
Somatic mutations within the antibody variable domains are critical to the immense capacity of the immune repertoire. Here, via a deep mutational scan, we dissect how mutations at all positions of the variable domains of a high-affinity anti-VEGF antibody G6.31 impact its antigen-binding function. The resulting mutational landscape demonstrates that large portions of antibody variable domain positions are open to mutation, and that beneficial mutations can be found throughout the variable domains. We determine the role of one antigen-distal light chain position 83, demonstrating that mutation at this site optimizes both antigen affinity and thermostability by modulating the interdomain conformational dynamics of the antigen-binding fragment. Furthermore, by analyzing a large number of human antibody sequences and structures, we demonstrate that somatic mutations occur frequently at position 83, with corresponding domain conformations observed for G6.31. Therefore, the modulation of interdomain dynamics represents an important mechanism during antibody maturation in vivo.
抗体可变区内的体细胞突变对于免疫库的巨大容量至关重要。在此,我们通过深度突变扫描,剖析了高亲和力抗VEGF抗体G6.31可变区所有位置的突变如何影响其抗原结合功能。所得的突变图谱表明,抗体可变区的大部分位置都易于发生突变,并且在整个可变区内都能发现有益突变。我们确定了一个远离抗原的轻链位置83的作用,证明该位点的突变通过调节抗原结合片段的结构域间构象动力学来优化抗原亲和力和热稳定性。此外,通过分析大量人类抗体序列和结构,我们证明位置83处频繁发生体细胞突变,并观察到与G6.31相应的结构域构象。因此,结构域间动力学的调节是体内抗体成熟过程中的一种重要机制。