Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73104, USA.
Nucleic Acids Res. 2022 Nov 11;50(20):11696-11711. doi: 10.1093/nar/gkac1038.
In the adaptive immune system, V(D)J recombination initiates the production of a diverse antigen receptor repertoire in developing B and T cells. Recombination activating proteins, RAG1 and RAG2 (RAG1/2), catalyze V(D)J recombination by cleaving adjacent to recombination signal sequences (RSSs) that flank antigen receptor gene segments. Previous studies defined the consensus RSS as containing conserved heptamer and nonamer sequences separated by a less conserved 12 or 23 base-pair spacer sequence. However, many RSSs deviate from the consensus sequence. Here, we developed a cell-based, massively parallel assay to evaluate V(D)J recombination activity on thousands of RSSs where the 12-RSS heptamer and adjoining spacer region contained randomized sequences. While the consensus heptamer sequence (CACAGTG) was marginally preferred, V(D)J recombination was highly active on a wide range of non-consensus sequences. Select purine/pyrimidine motifs that may accommodate heptamer unwinding in the RAG1/2 active site were generally preferred. In addition, while different coding flanks and nonamer sequences affected recombination efficiency, the relative dependency on the purine/pyrimidine motifs in the RSS heptamer remained unchanged. Our results suggest RAG1/2 specificity for RSS heptamers is primarily dictated by DNA structural features dependent on purine/pyrimidine pattern, and to a lesser extent, RAG:RSS base-specific interactions.
在适应性免疫系统中,V(D)J 重组启动了发育中的 B 和 T 细胞中多样化抗原受体库的产生。重组激活蛋白 RAG1 和 RAG2(RAG1/2)通过切割侧翼抗原受体基因片段的重组信号序列(RSS)来催化 V(D)J 重组。先前的研究将保守的七聚体和非七聚体序列定义为 RSS 的共识,它们由不太保守的 12 或 23 个碱基对间隔序列隔开。然而,许多 RSS 偏离了共识序列。在这里,我们开发了一种基于细胞的、大规模平行的测定法,用于评估数千个 RSS 上的 V(D)J 重组活性,其中 12-RSS 七聚体和相邻的间隔区包含随机序列。虽然保守的七聚体序列(CACAGTG)略有偏好,但 V(D)J 重组在广泛的非共识序列上具有高度活性。可能容纳 RAG1/2 活性部位七聚体解旋的选择嘌呤/嘧啶基序通常是首选的。此外,虽然不同的编码侧翼和非七聚体序列影响重组效率,但 RSS 七聚体中嘌呤/嘧啶基序的相对依赖性保持不变。我们的结果表明,RAG1/2 对 RSS 七聚体的特异性主要由依赖嘌呤/嘧啶模式的 DNA 结构特征决定,在较小程度上由 RAG:RSS 碱基特异性相互作用决定。