Department of Biosciences, Section for Physiology and Cell Biology, University of Oslo, Oslo, Norway.
Department of Immunology, Institute of Clinical Medicine, University of Oslo, Oslo, Norway.
BMC Genomics. 2024 Jul 3;25(1):663. doi: 10.1186/s12864-024-10571-0.
The Atlantic cod is a prolific species in the Atlantic, despite its inconsistent specific antibody response. It presents a peculiar case within vertebrate immunology due to its distinct immune system, characterized by the absence of MHCII antigen presentation pathway, required for T cell-dependent antibody responses. Thorough characterisation of immunoglobulin loci and analysis of the antibody repertoire is necessary to further our understanding of the Atlantic cod's immune response on a molecular level.
A comprehensive search of the cod genome (gadmor3.0) identified the complete set of IgH genes organized into three sequential translocons on chromosome 2, while IgL genes were located on chromosomes 2 and 5. The Atlantic cod displayed a moderate germline V gene diversity, comprising four V gene families for both IgH and IgL, each with distinct chromosomal locations and organizational structures. 5'RACE sequencing revealed a diverse range of heavy chain CDR3 sequences and relatively limited CDR3 diversity in light chains. The analysis highlighted a differential impact of V-gene germline CDR3 length on receptor CDR3 length between heavy and light chains, underlining different recombination processes.
This study reveals that the Atlantic cod, despite its inconsistent antibody response, maintains a level of immunoglobulin diversity comparable to other fish species. The findings suggest that the extensive recent duplications of kappa light chain genes do not result in increased repertoire diversity. This research provides a comprehensive view of the Atlantic cod's immunoglobulin gene organization and repertoire, necessary for future studies of antibody responses at the molecular level.
尽管大西洋鳕鱼的特异性抗体反应不一致,但它在大西洋中是一种繁殖力很强的物种。由于其独特的免疫系统,它在脊椎动物免疫学中呈现出一个特殊的案例,其免疫系统缺乏 MHCII 抗原呈递途径,这是 T 细胞依赖性抗体反应所必需的。彻底描述免疫球蛋白基因座并分析抗体库对于进一步了解大西洋鳕鱼的免疫反应的分子水平是必要的。
对鳕鱼基因组(gadmor3.0)的全面搜索确定了完整的 IgH 基因集,这些基因集组织成染色体 2 上的三个连续易位,而 IgL 基因位于染色体 2 和 5 上。大西洋鳕鱼显示出适度的种系 V 基因多样性,包含四个用于 IgH 和 IgL 的 V 基因家族,每个家族都有独特的染色体位置和组织结构。5'RACE 测序揭示了广泛的重链 CDR3 序列和轻链相对有限的 CDR3 多样性。分析强调了 V 基因种系 CDR3 长度对重链和轻链受体 CDR3 长度的不同影响,突出了不同的重组过程。
这项研究表明,尽管大西洋鳕鱼的抗体反应不一致,但它保持了与其他鱼类相当的免疫球蛋白多样性水平。研究结果表明,κ 轻链基因的广泛近期重复并没有导致库多样性的增加。这项研究提供了大西洋鳕鱼免疫球蛋白基因组织和库的全面视图,这对于未来在分子水平上研究抗体反应是必要的。