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全基因组筛选鉴定出调节免疫不同小鼠体内结核分枝杆菌适应性的宿主基因座。

Genome-wide screen identifies host loci that modulate Mycobacterium tuberculosis fitness in immunodivergent mice.

机构信息

Department of Molecular Genetics and Microbiology, Duke University, Durham, NC 27710, USA.

University Program in Genetics and Genomics, Duke University, Durham, NC 27710, USA.

出版信息

G3 (Bethesda). 2023 Aug 30;13(9). doi: 10.1093/g3journal/jkad147.

Abstract

Genetic differences among mammalian hosts and among strains of Mycobacterium tuberculosis (Mtb) are well-established determinants of tuberculosis (TB) patient outcomes. The advent of recombinant inbred mouse panels and next-generation transposon mutagenesis and sequencing approaches has enabled dissection of complex host-pathogen interactions. To identify host and pathogen genetic determinants of Mtb pathogenesis, we infected members of the highly diverse BXD family of strains with a comprehensive library of Mtb transposon mutants (TnSeq). Members of the BXD family segregate for Mtb-resistant C57BL/6J (B6 or B) and Mtb-susceptible DBA/2J (D2 or D) haplotypes. The survival of each bacterial mutant was quantified within each BXD host, and we identified those bacterial genes that were differentially required for Mtb fitness across BXD genotypes. Mutants that varied in survival among the host family of strains were leveraged as reporters of "endophenotypes," each bacterial fitness profile directly probing specific components of the infection microenvironment. We conducted quantitative trait loci (QTL) mapping of these bacterial fitness endophenotypes and identified 140 host-pathogen QTL (hpQTL). We located a QTL hotspot on chromosome 6 (75.97-88.58 Mb) associated with the genetic requirement of multiple Mtb genes: Rv0127 (mak), Rv0359 (rip2), Rv0955 (perM), and Rv3849 (espR). Together, this screen reinforces the utility of bacterial mutant libraries as precise reporters of the host immunological microenvironment during infection and highlights specific host-pathogen genetic interactions for further investigation. To enable downstream follow-up for both bacterial and mammalian genetic research communities, all bacterial fitness profiles have been deposited into GeneNetwork.org and added into the comprehensive collection of TnSeq libraries in MtbTnDB.

摘要

哺乳动物宿主之间以及结核分枝杆菌(Mtb)菌株之间的遗传差异是结核病(TB)患者结局的既定决定因素。重组近交系小鼠品系和下一代转座子诱变和测序方法的出现,使复杂的宿主-病原体相互作用得以解析。为了确定 Mtb 发病机制的宿主和病原体遗传决定因素,我们用 Mtb 转座子突变体(TnSeq)的综合文库感染了高度多样化的 BXD 菌株家族的成员。BXD 家族的成员分离出对 Mtb 有抗性的 C57BL/6J(B6 或 B)和对 Mtb 敏感的 DBA/2J(D2 或 D)单倍型。每个 BXD 宿主内都定量了每个细菌突变体的存活情况,我们确定了那些在 BXD 基因型中对 Mtb 适应性不同的细菌基因。在菌株家族的宿主中生存能力不同的突变体被用作“内表型”的报告者,每个细菌适应性谱直接探测感染微环境的特定成分。我们对这些细菌适应性内表型进行了数量性状位点(QTL)作图,并鉴定出 140 个宿主-病原体 QTL(hpQTL)。我们在染色体 6 上(75.97-88.58 Mb)定位了一个 QTL 热点,与多个 Mtb 基因的遗传要求相关:Rv0127(mak)、Rv0359(rip2)、Rv0955(perM)和 Rv3849(espR)。总的来说,这项筛选强调了细菌突变体文库作为感染期间宿主免疫微环境的精确报告者的效用,并突出了特定的宿主-病原体遗传相互作用,以供进一步研究。为了使细菌和哺乳动物遗传研究界都能进行后续研究,所有细菌适应性谱都已存入 GeneNetwork.org,并添加到 MtbTnDB 中的综合 TnSeq 文库中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/273d/10468300/8f95b95dd7cd/jkad147f1.jpg

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