Tirosh R, Mishor T, Pinson A
Laboratory for Myocardial Research, Hebrew University-Hadassah Medical School, Jerusalem, Israel.
Mol Cell Biochem. 1996 Sep 20;162(2):159-63. doi: 10.1007/BF00227544.
Cultured cardiac myocytes were depleted of ATP by incubation with oligomycin (1 mg/ml). Then the ability of the cells to oxidize various substrates and to restore ATP levels was studied. Following ATP depletion, the cells were found to be able to oxidize glucose given alone, but not palmitate. However, with both substrates, palmitate was oxidized in the presence of glucose and ATP recovery was enhanced. Pyruvate had a minor effect on palmitate oxidation, while acetate given alone was oxidized, but did not enhance cellular ATP content. These results show that glucose is essential for restoration of mitochondrial function and the coupling between oxidation and ATP synthesis.
通过与寡霉素(1毫克/毫升)孵育使培养的心肌细胞中的ATP耗尽。然后研究细胞氧化各种底物并恢复ATP水平的能力。ATP耗尽后,发现细胞能够氧化单独给予的葡萄糖,但不能氧化棕榈酸酯。然而,对于这两种底物,在葡萄糖存在下棕榈酸酯被氧化,并且ATP的恢复增强。丙酮酸对棕榈酸酯氧化有轻微影响,而单独给予的乙酸盐被氧化,但没有提高细胞内ATP含量。这些结果表明,葡萄糖对于线粒体功能的恢复以及氧化与ATP合成之间的偶联至关重要。