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Tumorigenic transformation of human breast epithelial cells induced by mitochondrial DNA depletion

机译:线粒体DNA耗竭诱导人乳腺上皮细胞的致瘤转化

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摘要

Human mitochondrial DNA (mtDNA) encodes 13 proteins involved in oxidative phosphorylation (OXPHOS). In order to investigate the role of mitochondrial OXPHOS genes in breast tumorigenesis, we have developed a breast epithelial cell line devoid of mtDNA (ρ0 cells). Our analysis revealed that depletion of mtDNA in breast epithelial cells results in in vitro tumorigenic phenotype as well as breast tumorigenesis in a xenograft model. We identified two major gene networks which were differentially regulated between parental and ρ0 epithelial cells. The focal proteins in these networks include (i) FN1 (fibronectin) and (ii) p53. Bioinformatic analyses of FN1 network identified laminin, integrin and 3 of 6 members of peroxiredoxin whose expression were altered in ρ0 epithelial cells. In the p53 network, we identified SMC4 and WRN whose changes in expression suggest that this network may affect chromosomal stability. Consistent with above finding our study revealed an increase in DNA double strand breaks and unique chromosomal rearrangements in ρ0 breast epithelial cells. Additionally, we identified tight junction proteins claudin-1 and claudin-7 in p53 network. To determine the functional relevance of altered gene expression, we focused on detailed analyses of claudin-1 and -7 proteins in breast tumorigenesis. Our study determined that (i) claudin-1 and 7 were indeed downregulated in ρ0 breast epithelial cells, (ii) downregulation of claudin-1 or -7 led to neoplastic transformation of breast epithelial cells, and (iii) claudin-1 and -7 were also downregulated in primary breast tumors. Together, our study suggest that mtDNA encoded OXPHOS genes play a key role in transformation of breast epithelial cells and that multiple pathway involved in mitochondria-to-nucleus retrograde regulation contribute to transformation of breast epithelial cells.
机译:人线粒体DNA(mtDNA)编码13种参与氧化磷酸化(OXPHOS)的蛋白质。为了研究线粒体OXPHOS基因在乳腺肿瘤发生中的作用,我们开发了一种不含mtDNA(ρ 0 细胞)的乳腺上皮细胞系。我们的分析表明,乳腺癌上皮细胞中mtDNA的消耗会导致体外致瘤表型以及异种移植模型中的乳腺癌发生。我们确定了两个主要的基因网络,它们在亲代和ρ 0 上皮细胞之间有不同的调控。这些网络中的焦点蛋白包括(i)FN1(纤连蛋白)和(ii)p53。 FN1网络的生物信息学分析鉴定了层粘连蛋白,整联蛋白和过氧化物酶的6个成员中的3个,其表达在ρ 0 上皮细胞中发生了改变。在p53网络中,我们鉴定了SMC4和WRN,它们的表达变化表明该网络可能影响染色体的稳定性。与上述发现一致的是,我们的研究表明ρ 0 乳腺上皮细胞中DNA双链断裂的增加和独特的染色体重排。此外,我们在p53网络中发现紧密连接蛋白claudin-1和claudin-7。为了确定基因表达改变的功能相关性,我们集中于claudin-1和-7蛋白在乳腺肿瘤发生中的详细分析。我们的研究确定(i)ρ 0 乳腺上皮细胞中claudin-1和7确实被下调,(ii)claudin-1或-7的下调导致乳腺上皮细胞的肿瘤转化,以及(iii)在原发性乳腺肿瘤中claudin-1和-7也被下调。在一起,我们的研究表明,mtDNA编码的OXPHOS基因在乳腺上皮细胞的转化中起关键作用,而线粒体至细胞核逆行调控的多种途径有助于乳腺上皮细胞的转化。

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