Department of Biology, College of Charleston, 66 George Street, Charleston, SC 29424, USA.
Mol Immunol. 2011 Sep;48(15-16):2220-3. doi: 10.1016/j.molimm.2011.06.441. Epub 2011 Aug 4.
The zebrafish is an emerging model for comparative immunology and biomedical research. In contrast to the five heavy chain isotype system of mice and human (IgD, IgM, IgA, IgG, IgE), zebrafish harbor gene segments for IgD, IgM, and novel heavy chain isotype called IgZ/T which appears restricted to bony fishes. The purpose of this study was to design and validate a suite of quantitative real time RT-PCR protocols to measure IgH expression in a vertebrate model which has considerable promise for modeling both pathogenic infection and chronic conditions leading to immune dysfunction. Specific primers were designed and following verification of their specificty, relative expression levels of IgD, IgM, and IgZ/T were measured in triplicate for zebrafish raised under standard laboratory conditions. During embryonic stages, low levels of each heavy chain isotype (IgH) were detected with each increasing steadily between 2 and 17 weeks post fertilization. Overall IgM>IgZ>IgD throughout zebrafish development with the copy number of IgM being several fold higher than that of IgD or IgZ/T. IgD exon usage was also characterized, as its extremely long size and presence of a stop codon in the second IgD exon in zebrafish, raised questions as to how this antibody might be expressed. Zebrafish IgD was found to be a chimeric immunoglobulin, with the third IgD exon spliced to the first IgM constant exon thereby circumventing the first and second IgD exons. Collectively, the qRT-PCR results represent the first comparative profile of IgD, IgM, IgZ/T expression over the lifespan of any fish species and the primers and assay parameters reported should prove useful in enabling researchers to rapidly quantify changes in IgH expression in zebrafish models of disease where altered IgH expression is manifested.
斑马鱼是比较免疫学和生物医学研究的新兴模式生物。与小鼠和人类的五种重链同种型系统(IgD、IgM、IgA、IgG、IgE)相比,斑马鱼拥有 IgD、IgM 和新型重链同种型 IgZ/T 的基因片段,而 IgZ/T 似乎仅存在于硬骨鱼类中。本研究旨在设计和验证一套定量实时 RT-PCR 方案,以测量脊椎动物模型中的 IgH 表达,该模型在模拟致病感染和导致免疫功能障碍的慢性疾病方面具有相当大的潜力。设计了特异性引物,并在验证其特异性后,在标准实验室条件下饲养的斑马鱼中重复测量了 IgD、IgM 和 IgZ/T 的相对表达水平。在胚胎期,检测到每种重链同种型(IgH)的低水平,在受精后 2 至 17 周之间每种水平都在稳步增加。在整个斑马鱼发育过程中,IgM>IgZ>IgD,IgM 的拷贝数比 IgD 或 IgZ/T 高几个数量级。还对 IgD 外显子的使用情况进行了表征,由于其非常长的大小和在斑马鱼中第二个 IgD 外显子中存在终止密码子,这引发了关于这种抗体如何表达的问题。发现斑马鱼 IgD 是一种嵌合免疫球蛋白,第三个 IgD 外显子拼接至第一个 IgM 恒定外显子,从而绕过了第一个和第二个 IgD 外显子。总的来说,qRT-PCR 结果代表了任何鱼类物种一生中 IgD、IgM、IgZ/T 表达的首次比较概况,所报道的引物和检测参数应该有助于研究人员在斑马鱼疾病模型中快速量化 IgH 表达的变化,在这些模型中,IgH 表达的改变表现出来。