Zhang Yiyang, Wang Jun, Zhang Meng, Li Xiaoyun, Zhang Fan, Zhou Manlin, Yang Kun, Chen Weiji, Ding Haie, Tan Xiao, Zhang Qian, Qiao Zilin
Engineering Research Center of Key Technology and Industrialization of Cell-Based Vaccine, Ministry of Education, Northwest Minzu University, Lanzhou 730030, China.
Gansu Tech Innovation Center of Animal Cell, Biomedical Research Center, Northwest Minzu University, Lanzhou 730030, China.
Animals (Basel). 2024 Aug 21;14(16):2422. doi: 10.3390/ani14162422.
The aim of this study was to investigate the effects of hypoxia-induced phenotype, glucose metabolism, ROS levels, and the PDK1-mediated regulation of TGF-β/Smad signaling in yellow cattles, yaks, and those overexpressing PDK1 PASMCs using growth curves, flow cytometry, scratch experiments, glucose and lactic acid assays, RT-qPCR, and Western blotting. The results showed that hypoxia significantly promoted proliferation, migration, antiapoptosis, ROS levels, glucose consumption, and lactate production in yellow cattle PASMCs ( < 0.05), and the cells were dedifferentiated from the contractile phenotype; conversely, hypoxia had no significant effect on yak PASMCs ( > 0.05). PDK1 overexpression significantly promoted proliferation, antiapoptosis, glucose consumption, and lactate production in yak PASMCs under normoxia and hypoxia ( < 0.05), decreased their migration levels under hypoxia ( < 0.05), and dedifferentiated the contractile phenotype of the cells. Overexpression of PDK1 in yak PASMCs is detrimental to their adaptation to hypoxic environments. Yak PASMCs adapted to the effects of hypoxia on lung tissue by downregulating the expression of genes related to the PDK1 and TGF-β/Smad signaling pathways. Taken together, the regulation of PDK1-mediated TGF-β/Smad signaling may be involved in the process of yaks' adaptation to the hypoxic environment of the plateau, reflecting the good adaptive ability of yaks. The present study provides basic information to further elucidate the mechanism of PDK1-mediated TGF-β/Smad signaling induced by hypoxia in the lungs of yaks, as well as target genes for the treatment of plateau diseases in humans and animals.
本研究旨在通过生长曲线、流式细胞术、划痕实验、葡萄糖和乳酸检测、RT-qPCR以及蛋白质免疫印迹法,研究低氧对黄牛、牦牛以及过表达丙酮酸脱氢酶激酶1(PDK1)的肺动脉平滑肌细胞(PASMCs)的表型、葡萄糖代谢、活性氧(ROS)水平以及PDK1介导的转化生长因子-β(TGF-β)/Smad信号通路调控的影响。结果表明,低氧显著促进黄牛PASMCs的增殖、迁移、抗凋亡、ROS水平、葡萄糖消耗和乳酸生成(P<0.05),且细胞从收缩表型去分化;相反,低氧对牦牛PASMCs无显著影响(P>0.05)。在常氧和低氧条件下,PDK1过表达显著促进牦牛PASMCs的增殖、抗凋亡、葡萄糖消耗和乳酸生成(P<0.05),降低其在低氧条件下的迁移水平(P<0.05),并使细胞的收缩表型去分化。牦牛PASMCs中PDK1的过表达不利于其适应低氧环境。牦牛PASMCs通过下调与PDK1和TGF-β/Smad信号通路相关基因的表达来适应低氧对肺组织的影响。综上所述,PDK1介导的TGF-β/Smad信号通路的调控可能参与牦牛适应高原低氧环境的过程,反映了牦牛良好的适应能力。本研究为进一步阐明低氧诱导的PDK1介导的TGF-β/Smad信号通路在牦牛肺中的机制以及治疗人类和动物高原疾病的靶基因提供了基础信息。