首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Non-invasive In-cell Determination of Free Cytosolic [NAD+]/[NADH] Ratios Using Hyperpolarized Glucose Show Large Variations in Metabolic Phenotypes
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Non-invasive In-cell Determination of Free Cytosolic [NAD+]/[NADH] Ratios Using Hyperpolarized Glucose Show Large Variations in Metabolic Phenotypes

机译:使用超极化葡萄糖的非侵入性细胞内游离胞液[NAD +] / [NADH]比值测定在代谢表型上显示出较大的差异

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摘要

Accumulating evidence suggest that the pyridine nucleotide NAD has far wider biological functions than its classical role in energy metabolism. NAD is used by hundreds of enzymes that catalyze substrate oxidation and, as such, it plays a key role in various biological processes such as aging, cell death, and oxidative stress. It has been suggested that changes in the ratio of free cytosolic [NAD+]/[NADH] reflects metabolic alterations leading to, or correlating with, pathological states. We have designed an isotopically labeled metabolic bioprobe of free cytosolic [NAD+]/[NADH] by combining a magnetic enhancement technique (hyperpolarization) with cellular glycolytic activity. The bioprobe reports free cytosolic [NAD+]/[NADH] ratios based on dynamically measured in-cell [pyruvate]/[lactate] ratios. We demonstrate its utility in breast and prostate cancer cells. The free cytosolic [NAD+]/[NADH] ratio determined in prostate cancer cells was 4 times higher than in breast cancer cells. This higher ratio reflects a distinct metabolic phenotype of prostate cancer cells consistent with previously reported alterations in the energy metabolism of these cells. As a reporter on free cytosolic [NAD+]/[NADH] ratio, the bioprobe will enable better understanding of the origin of diverse pathological states of the cell as well as monitor cellular consequences of diseases and/or treatments.
机译:越来越多的证据表明,吡啶核苷酸NAD具有比其在能量代谢中的经典作用更广泛的生物学功能。 NAD被数百种催化底物氧化的酶所使用,因此,它在各种生物过程(例如衰老,细胞死亡和氧化应激)中起关键作用。有人提出,游离胞质[NAD + ] / [NADH]的比例变化反映了导致病理状态或与病理状态相关的代谢变化。我们通过结合磁性增强技术(超极化)和细胞糖酵解活性,设计了一种同位素标记的游离胞质[NAD + ] / [NADH]代谢生物探针。该生物探针报告了基于动态测量的细胞内[丙酮酸] / [乳酸]比率的游离胞质[NAD + ] / [NADH]比率。我们证明了其在乳腺癌和前列腺癌细胞中的效用。在前列腺癌细胞中测定的游离胞质[NAD + ] / [NADH]比是乳腺癌细胞的4倍。较高的比率反映了前列腺癌细胞的独特代谢表型,这与先前报道的这些细胞的能量代谢变化相一致。作为游离胞质[NAD + ] / [NADH]比的报告者,该生物探针将使人们能够更好地了解细胞的各种病理状态,并监测疾病和/或治疗。

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