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转录组分析比较具有极端总肺活量的小鼠品系,确定了新的候选基因与肺功能相关。

Transcriptomic analysis comparing mouse strains with extreme total lung capacities identifies novel candidate genes for pulmonary function.

机构信息

SRM Research Institute, SRM University, Chennai, 603203, India.

Institute of Experimental Genetics, Helmholtz Zentrum Muenchen, German Research Center for Environmental Health, 85764, Neuherberg, Munich, Germany.

出版信息

Respir Res. 2017 Aug 9;18(1):152. doi: 10.1186/s12931-017-0629-3.

Abstract

BACKGROUND

Failure to attain peak lung function by early adulthood is a risk factor for chronic lung diseases. Previously, we reported that C3H/HeJ mice have about twice total lung capacity (TLC) compared to JF1/MsJ mice. We identified seven lung function quantitative trait loci (QTL: Lfnq1-Lfnq7) in backcross/intercross mice derived from these inbred strains. We further demonstrated, superoxide dismutase 3, extracellular (Sod3), Kit oncogene (Kit) and secreted phosphoprotein 1 (Spp1) located on these Lfnqs as lung function determinants. Emanating from the concept of early origin of lung disease, we sought to identify novel candidate genes for pulmonary function by investigating lung transcriptome in C3H/HeJ and JF1/MsJ mice at the completion of embryonic development, bulk alveolar formation and maturity.

METHODS

Design-based stereological analysis was performed to study lung structure in C3H/HeJ and JF1/MsJ mice. Microarray was used for lung transcriptomic analysis [embryonic day 18, postnatal days 28, 70]. Quantitative real time polymerase chain reaction (qRT-PCR), western blot and immunohistochemical analysis were used to confirm selected differences.

RESULTS

Stereological analysis revealed decreased alveolar number density, elastin to collagen ratio and increased mean alveolar volume in C3H/HeJ mice compared to JF1/MsJ. Gene ontology term "extracellular region" was enriched among the decreased JF1/MsJ transcripts. Candidate genes identified using the expression-QTL strategy include: ATP-binding cassette, sub-family G (WHITE), member 1 (Abcg1), formyl peptide receptor 1 (Fpr1), gamma-aminobutyric acid (GABA) B receptor, 1 (Gabbr1); histocompatibility 2 genes: class II antigen E beta (H2-Eb1), D region locus 1 (H2-D1), and Q region locus 4 (H2-Q4); leucine rich repeat containing 6 (testis) (Lrrc6), radial spoke head 1 homolog (Rsph1), and surfactant associated 2 (Sfta2). Noteworthy genes selected as candidates for their consistent expression include: Wnt inhibitor factor 1 (Wif1), follistatin (Fst), chitinase-like 1 (Chil1), and Chil3.

CONCLUSIONS

Comparison of late embryonic, adolescent and adult lung transcript profiles between mouse strains with extreme TLCs lead to the identification of candidate genes for pulmonary function that has not been reported earlier. Further mechanistic investigations are warranted to elucidate their mode of action in determining lung function.

摘要

背景

成年早期未能达到峰值肺功能是慢性肺部疾病的一个风险因素。此前,我们报道过 C3H/HeJ 小鼠的总肺活量(TLC)大约是 JF1/MsJ 小鼠的两倍。我们在这两个近交系的回交/杂交小鼠中鉴定了七个肺功能数量性状基因座(Lfnq1-Lfnq7)。我们进一步证明,超氧化物歧化酶 3、细胞外(Sod3)、Kit 原癌基因(Kit)和分泌磷蛋白 1(Spp1)位于这些 Lfnqs 上,是肺功能的决定因素。从肺部疾病起源的概念出发,我们试图通过研究胚胎发育完成时、大量肺泡形成和成熟时 C3H/HeJ 和 JF1/MsJ 小鼠的肺转录组,来确定肺功能的新候选基因。

方法

设计基础的体视学分析用于研究 C3H/HeJ 和 JF1/MsJ 小鼠的肺结构。微阵列用于肺转录组分析[胚胎第 18 天、出生后第 28 天、第 70 天]。实时定量聚合酶链反应(qRT-PCR)、western blot 和免疫组织化学分析用于确认选定的差异。

结果

体视学分析显示,与 JF1/MsJ 相比,C3H/HeJ 小鼠的肺泡数量密度、弹性蛋白与胶原蛋白比值降低,平均肺泡体积增加。在表达 QTL 策略中确定的候选基因包括:ATP 结合盒亚家族 G(WHITE)成员 1(Abcg1)、甲酰肽受体 1(Fpr1)、γ-氨基丁酸(GABA)B 受体 1(Gabbr1);组织相容性 2 基因:Ⅱ类抗原 E 亚基(H2-Eb1)、D 区基因座 1(H2-D1)和 Q 区基因座 4(H2-Q4);富含亮氨酸重复 6(睾丸)(Lrrc6)、辐射环头 1 同源物(Rsph1)和表面活性剂相关蛋白 2(Sfta2)。作为候选基因选择的显著基因包括:Wnt 抑制剂因子 1(Wif1)、卵泡抑素(Fst)、几丁质样蛋白 1(Chil1)和 Chil3。

结论

在具有极端 TLC 的小鼠品系之间比较晚期胚胎、青少年和成年肺转录谱,确定了以前未报道过的肺功能候选基因。进一步的机制研究是阐明其在决定肺功能中的作用模式的必要条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9941/5551015/18e382580e8b/12931_2017_629_Fig4_HTML.jpg

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