Department of Rheumatology and Inflammation Research, University of Gothenburg, Gothenburg, Sweden.
PLoS One. 2013 Apr 30;8(4):e62851. doi: 10.1371/journal.pone.0062851. Print 2013.
CD23, the low affinity receptor for immunoglobulin E (IgE), has been proposed to play a critical role in the regulation of IgE production, based on altered IgE levels in CD23-deficient mice and transgenic mouse models, as well as in mouse strains with mutations in the CD23 gene, e.g. 129 substrains. Here, we have investigated a mouse line termed LxT1 that expresses reduced CD23 surface levels on B cells, and its influence on natural IgE production. Extensive phenotypic analysis showed that CD23 surface expression was reduced in LxT1 compared to the control, without affecting B cell development in general. This CD23(low) surface level in LxT1 mice is not as a result of reduced CD23 mRNA expression levels or intracellular accumulation, but linked to a recessive locus, a 129-derived region spanning 28 Mb on chromosome 8, which includes the CD23 gene. Sequence analysis confirmed five mutations within the CD23 coding region in LxT1 mice, the same as those present in New Zealand Black (NZB) and 129 mice. However, this CD23(low) phenotype was not observed in all 129 substrains despite carrying these same CD23 mutations in the coding region. Moreover, serum IgE levels in LxT1 mice are as low as those in the C57BL/6 (B6) strain, and much lower than those in 129 substrains. These data indicate that the CD23 surface level and serum IgE level are uncoupled and that neither is directly regulated by the mutations within the CD23 coding region. This study suggests that caution should be taken when interpreting the immunological data derived from mice with different genetic background, especially if the gene of interest is thought to influence CD23 surface expression or serum IgE level.
CD23 是免疫球蛋白 E(IgE)的低亲和力受体,基于 CD23 缺陷小鼠和转基因小鼠模型以及 CD23 基因发生突变的小鼠品系(例如 129 亚系)中 IgE 水平的改变,人们提出它在 IgE 产生的调节中发挥关键作用。在这里,我们研究了一种称为 LxT1 的小鼠品系,其 B 细胞表面的 CD23 表达水平降低,并研究了其对天然 IgE 产生的影响。广泛的表型分析表明,与对照相比,LxT1 中的 CD23 表面表达降低,而总体上不影响 B 细胞发育。LxT1 小鼠中 CD23(low)表面水平的降低不是由于 CD23 mRNA 表达水平或细胞内积累减少所致,而是与一个隐性基因座有关,该基因座跨越 8 号染色体上的 28 Mb,包含 CD23 基因。序列分析证实 LxT1 小鼠的 CD23 编码区存在五个突变,与新西兰黑(NZB)和 129 小鼠中的突变相同。然而,尽管在编码区携带相同的 CD23 突变,但并非所有 129 亚系都观察到这种 CD23(low)表型。此外,LxT1 小鼠的血清 IgE 水平与 C57BL/6(B6)品系一样低,远低于 129 亚系。这些数据表明,CD23 表面水平和血清 IgE 水平是解耦的,并且它们都不是由 CD23 编码区中的突变直接调节的。本研究表明,在解释来自具有不同遗传背景的小鼠的免疫学数据时应谨慎,特别是如果感兴趣的基因被认为会影响 CD23 表面表达或血清 IgE 水平。