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Differentially expressed genes in aortic smooth muscle cells from atherosclerosis-susceptible and atherosclerosis-resistant pigeons

机译:易患动脉粥样硬化和抗动脉粥样硬化的鸽子在主动脉平滑肌细胞中差异表达的基因

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Susceptibility to spontaneous atherosclerosis in the White Carneau (WC-As) pigeon shows autosomal recessive inheritance. Aortic smooth muscle cells (SMC) cultured from susceptible WC-As and resistant Show Racer (SR-Ar) pigeons exhibit developmental and degenerative features corresponding to the respective SMC at atherosclerosis-prone sites in vivo. We used representational difference analysis to identify differentially expressed genes between WC-As and SR-Ar aortic SMC. Total RNA was extracted from cultured primary SMC of each breed, converted to double-stranded cDNA, followed by direct comparison in reciprocal representational difference analysis experiments. Difference products were cloned, sequenced, and identified by BLAST against the chicken genome. Six putative biochemical pathways were distinctly different between breeds with genes involved in energy metabolism and contractility exhibiting the most striking disparity. Genes associated with glycolysis and a synthetic SMC phenotype were expressed in WC-As cells. In contrast, SR-Ar cells expressed genes indicative of oxidative phosphorylation and a contractile SMC phenotype. In WC-As cells, the alternatives of insufficient ATP production limiting contractile function or the lack of functional contractile elements downregulating ATP synthesis cannot be distinguished due to the compressed in vitro versus in vivo developmental time frame. However, the genetic potential for effectively coupling energy production to muscle contraction present in the resistant SR-Ar was lacking in the susceptible WC-As.
机译:White Carneau(WC-As)鸽子对自发性动脉粥样硬化的易感性显示常染色体隐性遗传。从易感的WC-As和抗性Show Racer(SR-Ar)鸽子培养的主动脉平滑肌细胞(SMC)在体内容易发生动脉粥样硬化的部位表现出与各个SMC相对应的发育和变性特征。我们使用代表性差异分析来鉴定WC-As和SR-Ar主动脉SMC之间差异表达的基因。从每个品种的培养原代SMC中提取总RNA,将其转换为双链cDNA,然后在相互代表性差异分析实验中进行直接比较。通过针对鸡基因组的BLAST克隆,测序和鉴定差异产物。品种之间的六个推定的生化途径明显不同,涉及能量代谢和收缩力的基因表现出最显着的差异。与糖酵解和合成SMC表型有关的基因在WC-As细胞中表达。相反,SR-Ar细胞表达指示氧化磷酸化和收缩SMC表型的基因。在WC-As细胞中,由于受压缩的体外与体内发育时间框架的关系,无法区分出不足的ATP产生限制收缩功能的功能或缺少下调ATP合成的功能性收缩元件的替代方法。但是,在易感的WC-As中缺乏有效地将能量产生与抗性SR-Ar中存在的肌肉收缩耦合的遗传潜力。

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