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Genes from Chagas Susceptibility Loci That Are Differentially Expressed in T. cruzi-Resistant Mice Are Candidates Accounting for Impaired Immunity

机译:美洲锥虫抗药性小鼠中差异表达的南美锥虫敏感性基因的候选基因是免疫力受损的原因

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摘要

Variation between inbred mice of susceptibility to experimental Trypanosoma cruzi infection has frequently been described, but the immunogenetic background is poorly understood. The outcross of the susceptible parental mouse strains C57BL/6 (B6) and DBA/2 (D2), B6D2F1 (F1) mice, is highly resistant to this parasite. In the present study we show by quantitative PCR that the increase of tissue parasitism during the early phase of infection is comparable up to day 11 between susceptible B6 and resistant F1 mice. A reduction of splenic parasite burdens occurs thereafter in both strains but is comparatively retarded in susceptible mice. Splenic microarchitecture is progressively disrupted with loss of follicles and B lymphocytes in B6 mice, but not in F1 mice. By genotyping of additional backcross offspring we corroborate our earlier findings that susceptibility maps to three loci on Chromosomes 5, 13 and 17. Analysis of gene expression of spleen cells from infected B6 and F1 mice with microarrays identifies about 0.3% of transcripts that are differentially expressed. Assuming that differential susceptibility is mediated by altered gene expression, we propose that the following differentially expressed transcripts from these loci are strong candidates for the observed phenotypic variation: H2-Eα, H2-D1, Ng23, Msh5 and Tubb5 from Chromosome 17; and Cxcl11, Bmp2k and Spp1 from Chromosome 5. Our results indicate that innate mechanisms are not of primary relevance to resistance of F1 mice to T. cruzi infection, and that differential susceptibility to experimental infection with this protozoan pathogen is not paralleled by extensive variation of the transcriptome.
机译:经常描述近亲小鼠对实验性克氏锥虫感染的易感性,但对免疫遗传背景了解甚少。易感亲代小鼠品系C57BL / 6(B6)和DBA / 2(D2),B6D2F1(F1)小鼠的异种对这种寄生虫具有高度抗性。在本研究中,我们通过定量PCR显示,在感染的早期阶段,在敏感的B6小鼠和抗性F1小鼠之间,在感染初期的组织寄生虫的增加是可比的。此后在两种品系中均降低了脾脏寄生虫负担,但在易感小鼠中相对较慢。脾脏微结构在B6小鼠中因卵泡和B淋巴细胞的丢失而逐渐破坏,但在F1小鼠中则没有。通过对其他回交后代的基因分型,我们证实了先前的发现,即易感性映射至染色体5、13和17上的三个基因座。用微阵列分析感染B6和F1小鼠脾细胞的基因表达后,发现约0.3%的转录本差异表达。假设差异敏感性是由基因表达的改变介导的,我们提出以下来自这些基因座的差异表达转录本是观察到的表型变异的强候选者:来自染色体17的H2-Eα,H2-D1,Ng23,Msh5和Tubb5;以及来自染色体5的Cxcl11,Bmp2k和Spp1。我们的结果表明,先天机制与F1小鼠对克氏锥虫感染的抗性没有主要关系,并且这种原生动物病原体对实验性感染的不同易感性没有与之相似。转录组。

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