Combining mouse congenic strains and microarray gene expression analyses to study a complex trait: The NOD model of type 1 diabetes

Combining mouse congenic strains and microarray gene expression analyses to study a complex trait: The NOD model of type 1 diabetes
复制标题

DOI:
10.1101/gr.214102
复制
发表时间:
2002-02-01
期刊:
影响因子:
7
通讯作者:
Glynne, RJ
Glynne, RJ
中科院分区:
生物学1区
文献类型:
--
作者:
Eaves, IA;Wicker, LS;Glynne, RJ

文献摘要

被引文献

相似文献

Combining congenic mapping with microarray expression profiling offers an opportunity to establish functional links between genotype and phenotype for complex traits such as type 1 diabetes (TID). We used high-density oligonucleotide arrays to measure the relative expression levels of >39,000 genes and EST' in the NOD mouse (a murine model of TID and other autoimmune conditions), four NOD-derived diabetes-resistant congenic strains, and two nondiabetic control strains. We developed a simple, yet general, method for measuring differential expression that provides an objective assessment of significance and used it to identify >400 gene expression differences and eight new candidates for the ldd9.1 locus. We also discovered a potential early biomarker for autoimmune hemolytic anemia that is based on different levels of erythrocyte-specific transcripts in the spleen. Overall, however, our results suggest that the dramatic disease protection conferred by six Idd loci (Idd3, Idd5.1, Idd5.2, Idd9.1, Idd9.2, and Idd9.3) cannot be rationalized in terms of global effects on the noninduced immune system. They also illustrate the degree to which regulatory systems appear to be robust to genetic variation. These observations have important implications for the design of future microarray-based studies in TID and, more generally, for studies that aim to combine genome-wide expression profiling and congenic mapping.