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Rapid estimation of cytosolic ATP concentration from the ciliary beating frequency in the green alga

机译:绿藻中睫状搏动频率的胞质ATP浓度的快速估算

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摘要

Determination of cellular ATP levels, a key indicator of metabolic status, is essential for the quantitative analysis of metabolism. The biciliate green alga Chlamydomonas reinhardtii is an excellent experimental organism to study ATP production pathways, including photosynthesis and respiration, particularly because it can be cultured either photoautotrophically or heterotrophically. Additionally, its cellular ATP concentration, [ATP], is reflected in the beating of its cilia. However, the methods currently used for quantifying the cellular ATP levels are time consuming or invasive. In this study, we established a rapid method for estimating cytosolic [ATP] from the ciliary beating frequency in C. reinhardtii. Using an improved method of motility reactivation in demembranated cell models, we obtained calibration curves for [ATP]–ciliary beating frequency over a physiological range of ATP concentrations. These curves allowed rapid estimation of the cytosolic [ATP] in live wild-type cells to be ∼2.0 mM in the light and ∼1.5 mM in the dark: values comparable to those obtained by other methods. Furthermore, we used this method to assess the effects of genetic mutations or inhibitors of photosynthesis or respiration quantitatively and noninvasively. This sensor-free method is a convenient tool for quickly estimating cytosolic [ATP] and studying the mechanism of ATP production in C. reinhardtii or other ciliated organisms.
机译:细胞ATP水平的测定,代谢状态的关键指标,对于代谢的定量分析至关重要。偏偏绿藻衣原体Reinhardtii是一种优秀的实验生物,用于研究ATP生产途径,包括光合作用和呼吸,特别是因为它可以进行光学繁殖或异营性。另外,其细胞ATP浓度[ATP]反映在其纤毛的殴打中。然而,目前用于量化细胞ATP水平的方法是耗时或侵入性。在这项研究中,我们建立了一种快速估算C. Reinhardtii的睫状搏动频率的细胞溶质[ATP]的快速方法。使用脱模细胞模型中的动态再活化的改进方法,我们在ATP浓度的生理范围内获得了校准曲线的校准曲线。这些曲线允许快速估计在Live野生型电池中的细胞溶质[ATP]在光线中为2.0mm,暗中~1.5mm:与其他方法获得的值相当。此外,我们使用该方法来评估定量和非侵入性的基因突变或抑制剂的遗传突变或抑制剂的影响。这种无传感器方法是快速估计细胞溶质[ATP]的方便工具,并研究在C. Reinhardtii或其他纤毛生物中的ATP产量的机制。

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