Hoolehan Walker, Harris Justin C, Rodgers Karla K
Department of Biochemistry and Molecular Biology, Department of Microbiology and Immunology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, United States.
ACS Omega. 2023 Sep 15;8(38):34206-34214. doi: 10.1021/acsomega.3c05601. eCollection 2023 Sep 26.
Antigen receptor (AgR) diversity is central to the ability of adaptive immunity in jawed vertebrates to protect against pathogenic agents. The production of highly diverse AgR repertoires is initiated during B and T cell lymphopoiesis by V(D)J recombination, which assembles the receptor genes from component gene segments in a cut-and-paste recombination reaction. Recombination activating proteins, RAG1 and RAG2 (RAG1/2), catalyze V(D)J recombination by cleaving adjacent to recombination signal sequences (RSSs) that flank AgR 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, and the molecular mechanism for semiselective V(D)J recombination specificity is unknown. The modulation of chromatin structure during V(D)J recombination is essential in the formation of diverse AgRs in adaptive immunity while also reducing the likelihood for off-target recombination events that can result in chromosomal aberrations and genomic instability. Here we review what is presently known regarding mechanisms that facilitate assembly of RAG1/2 with RSSs, the ensuing conformational changes required for DNA cleavage activity, and how the readout of the RSS sequence affects reaction efficiency.
抗原受体(AgR)多样性对于有颌脊椎动物适应性免疫抵御病原体的能力至关重要。在B细胞和T细胞淋巴细胞生成过程中,通过V(D)J重组启动高度多样化的AgR库的产生,V(D)J重组在一种剪切粘贴式重组反应中从组成基因片段组装受体基因。重组激活蛋白RAG1和RAG2(RAG1/2)通过在侧翼为AgR基因片段的重组信号序列(RSS)相邻处切割来催化V(D)J重组。先前的研究将共有RSS定义为包含由不太保守的12或23个碱基对间隔序列分隔的保守七聚体和九聚体序列。然而,许多RSS偏离共有序列,并且半选择性V(D)J重组特异性的分子机制尚不清楚。V(D)J重组过程中染色质结构的调节对于适应性免疫中多样化AgR的形成至关重要,同时也降低了可能导致染色体畸变和基因组不稳定的脱靶重组事件的可能性。在这里,我们综述了目前已知的关于促进RAG1/2与RSS组装的机制、DNA切割活性所需的后续构象变化,以及RSS序列的解读如何影响反应效率的相关内容。