Jima Dereje D, Shah Radhika N, Orcutt Timothy M, Joshi Deepa, Law J McHugh, Litman Gary W, Trede Nikolaus S, Yoder Jeffrey A
Department of Molecular Biomedical Sciences and Center for Comparative Medicine and Translational Research, College of Veterinary Medicine, North Carolina State University, 4700 Hillsborough St., Raleigh, NC 27606, USA.
Mol Immunol. 2009 Apr;46(7):1505-16. doi: 10.1016/j.molimm.2008.12.021. Epub 2009 Feb 5.
A recessive nonsense mutation in the zebrafish recombination activating gene 1 (rag1) gene results in defective V(D)J recombination; however, animals homozygous for this mutation (rag1(-/-)) are reportedly viable and fertile in standard, nonsterile aquarium conditions but display increased mortality after intraperitoneal injection with mycobacteria. Based on their survival in nonsterile environments, we hypothesized that the rag1(-/-) zebrafish may possess an "enhanced" innate immune response to compensate for the lack of an adaptive immune system. To test this hypothesis, microarray analyses were used to compare the expression profiles of the intestines and hematopoietic kidneys of rag1 deficient zebrafish to the expression profiles of control (heterozygous) siblings. The expression levels of 12 genes were significantly altered in the rag1(-/-) kidney including the up regulation of a putative interferon stimulated gene, and the down regulation of genes encoding fatty acid binding protein 10, keratin 5 and multiple heat shock proteins. The expression levels of 87 genes were shown to be significantly altered in the rag1(-/-) intestine; the majority of these differences reflect increased expression of innate immune genes, including those of the coagulation and complement pathways. Subsequent analyses of orthologous coagulation and complement genes in Rag1(-/-) mice indicate increased transcription of the complement C4 gene in the Rag1(-/-) intestine.
斑马鱼重组激活基因1(rag1)中的隐性无义突变会导致V(D)J重组缺陷;然而,据报道,该突变的纯合动物(rag1(-/-))在标准的非无菌水族箱条件下是存活且可育的,但在腹腔注射分枝杆菌后死亡率会增加。基于它们在非无菌环境中的存活情况,我们推测rag1(-/-)斑马鱼可能具有“增强的”先天免疫反应,以弥补适应性免疫系统的缺失。为了验证这一假设,我们使用微阵列分析来比较rag1缺陷斑马鱼的肠道和造血肾的表达谱与对照(杂合)同胞的表达谱。在rag1(-/-)肾脏中,12个基因的表达水平发生了显著变化,包括一个假定的干扰素刺激基因的上调,以及编码脂肪酸结合蛋白10、角蛋白5和多种热休克蛋白的基因的下调。在rag1(-/-)肠道中,87个基因的表达水平被证明发生了显著变化;这些差异大多反映了先天免疫基因的表达增加,包括凝血和补体途径的基因。随后对Rag1(-/-)小鼠中的直系同源凝血和补体基因的分析表明,Rag1(-/-)肠道中补体C4基因的转录增加。