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利用细胞能量预算平台对转化细胞进行比较生物能量评估。

Comparative bioenergetic assessment of transformed cells using a cell energy budget platform.

机构信息

Biochemistry Department, University College Cork, Cavanagh Pharmacy Building, College Road, Cork, Ireland.

出版信息

Integr Biol (Camb). 2011 Nov;3(11):1135-42. doi: 10.1039/c1ib00050k. Epub 2011 Oct 17.

Abstract

The aberrant expression and functional activity of proteins involved in ATP production pathways may cause a crisis in energy generation for cells and compromise their survival under stressful conditions such as excitation, starvation, pharmacological treatment or disease states. Under resting conditions such defects are often compensated for, and therefore masked by, alternative pathways which have significant spare capacity. Here we present a multiplexed 'cell energy budget' platform which facilitates metabolic assessment and cross-comparison of different cells and the identification of genes directly or indirectly involved in ATP production. Long-decay emitting O(2) and pH sensitive probes and time-resolved fluorometry are used to measure changes in cellular O(2) consumption, glycolytic and total extracellular acidification (ECA), along with the measurement of total ATP and protein content in multiple samples. To assess the extent of spare capacity in the main energy pathways, the cells are also analysed following double-treatment with carbonyl cyanide p-(trifluoromethoxy)phenylhydrazone and oligomycin. The four-parametric platform operating in a high throughput format has been validated with two panels of transformed cells: mouse embryonic fibroblasts (MEFs) lacking the Krebs cycle enzyme fumarate hydratase (Fh1) and HeLa cells with reduced expression of pyrimidine nucleotide carrier 1. In both cases, a marked reduction in both respiration and spare respiratory capacity was observed, accompanied by a compensatory activation of glycolysis and consequent maintenance of total ATP levels. At the same time, in Fh1-deficient MEFs the contribution of non-glycolytic pathways to the ECA did not change.

摘要

涉及 ATP 产生途径的蛋白质的异常表达和功能活性可能导致细胞能量产生危机,并在应激条件下(如兴奋、饥饿、药物治疗或疾病状态)危及细胞存活。在休息条件下,这些缺陷通常会被替代途径所补偿,因此被掩盖,而替代途径具有很大的备用能力。在这里,我们提出了一种多重“细胞能量预算”平台,该平台有助于代谢评估和不同细胞的交叉比较,并确定直接或间接参与 ATP 产生的基因。长寿命发射的 O(2) 和 pH 敏感探针以及时间分辨荧光法用于测量细胞 O(2)消耗、糖酵解和总细胞外酸化 (ECA) 的变化,同时测量多个样本中的总 ATP 和蛋白质含量。为了评估主要能量途径备用能力的程度,还在用羰基氰化物 p-(三氟甲氧基)苯腙和寡霉素进行双重处理后分析细胞。以高通量格式运行的四参数平台已用两组转化细胞进行了验证:缺乏三羧酸循环酶延胡索酸水合酶 (Fh1) 的小鼠胚胎成纤维细胞 (MEF) 和嘧啶核苷酸载体 1 表达降低的 HeLa 细胞。在这两种情况下,都观察到呼吸作用和备用呼吸能力明显降低,伴随着糖酵解的代偿性激活和总 ATP 水平的维持。同时,在 Fh1 缺陷的 MEF 中,非糖酵解途径对 ECA 的贡献没有改变。

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