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Direct Labeling of Polyphosphate at the Ultrastructural Level in Saccharomyces cerevisiae by Using the Affinity of the Polyphosphate Binding Domain of Escherichia coli Exopolyphosphatase

机译:通过使用大肠杆菌外多磷酸酶的多磷酸盐结合域的亲和力在酿酒酵母中的超微结构水平上直接标记多磷酸盐。

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摘要

Inorganic polyphosphate (polyP) is a linear polymer of orthophosphate and has many biological functions in prokaryotic and eukaryotic organisms. To investigate polyP localization, we developed a novel technique using the affinity of the recombinant polyphosphate binding domain (PPBD) of Escherichia coli exopolyphosphatase to polyP. An epitope-tagged PPBD was expressed and purified from E. coli. Equilibrium binding assay of PPBD revealed its high affinity for long-chain polyP and its weak affinity for short-chain polyP and nucleic acids. To directly demonstrate polyP localization in Saccharomyces cerevisiae on resin sections prepared by rapid freezing and freeze-substitution, specimens were labeled with PPBD containing an epitope tag and then the epitope tag was detected by an indirect immunocytochemical method. A goat anti-mouse immunoglobulin G antibody conjugated with Alexa 488 for laser confocal microscopy or with colloidal gold for transmission electron microscopy was used. When the S. cerevisiae was cultured in yeast extract-peptone-dextrose medium (10 mM phosphate) for 10 h, polyP was distributed in a dispersed fashion in vacuoles in successfully cryofixed cells. A few polyP signals of the labeling were sometimes observed in cytosol around vacuoles with electron microscopy. Under our experimental conditions, polyP granules were not observed. Therefore, it remains unclear whether the method can detect the granule form. The method directly demonstrated the localization of polyP at the electron microscopic level for the first time and enabled the visualization of polyP localization with much higher specificity and resolution than with other conventional methods.
机译:无机多磷酸盐(polyP)是正磷酸盐的线性聚合物,在原核和真核生物中具有许多生物学功能。为了研究polyP的定位,我们开发了一种利用大肠杆菌外多磷酸酶的重组多磷酸结合域(PPBD)对polyP的亲和力的新技术。表达表位标签的PPBD并从大肠杆菌中纯化。 PPBD的平衡结合测定显示其对长链polyP的高亲和力和对短链polyP和核酸的弱亲和力。为了在快速冷冻和冷冻替代制备的树脂切片上直接证明polyP定位在啤酒酵母中,用包含表位标签的PPBD标记标本,然后通过间接免疫细胞化学方法检测该表位标签。使用了与Alexa 488偶联的山羊抗小鼠免疫球蛋白G抗体用于激光共聚焦显微镜检查,或与胶体金偶联用于透射电子显微镜。当酿酒酵母在酵母提取物-蛋白-葡萄糖培养基(10 mM磷酸盐)中培养10小时时,polyP以分散的形式分布在成功冷冻固定的细胞中的液泡中。有时用电子显微镜在液泡周围的胞浆中观察到一些标记的polyP信号。在我们的实验条件下,未观察到polyP颗粒。因此,尚不清楚该方法是否可以检测颗粒形式。该方法首次直接在电子显微镜水平上证明了polyP的定位,并且能够以比其他常规方法更高的特异性和分辨率可视化polyP定位。

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