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菠菜叶及其叶绿体的31P核磁共振研究。

31P NMR studies of spinach leaves and their chloroplasts.

作者信息

Bligny R, Gardestrom P, Roby C, Douce R

机构信息

Département de Recherche Fondamentale, Université Joseph Fourier, Grenoble, France.

出版信息

J Biol Chem. 1990 Jan 25;265(3):1319-26.

PMID:2153126
Abstract

An experimental arrangement is described which enables high quality 31P NMR spectra of compressed spinach leaf pieces to be continuously recorded in which all the resonances observed (cytoplasmic and vacuolar Pi, glycerate-3-P, nucleotides) were sharp and well resolved. 31P NMR spectra obtained from intact chloroplasts showed a distinct peak of stromal Pi. An upfield shift of the stromal Pi resonance was associated with a decrease in the external Pi and vice versa. Nucleotides were largely invisible to NMR in intact chloroplasts, whereas the same nucleotides reappeared in a typical 31P NMR spectrum of an acid extract of intact chloroplasts. Perfusion of compressed spinach leaf pieces with a medium containing Pi triggered a dramatic increase in the vacuolar Pi over 12 h. Addition of choline to the Pi-free perfusate of compressed leaf pieces resulted in a steady accumulation of phosphorylcholine in the cytoplasmic compartment at the expense of cytoplasmic Pi. When a threshold of cytoplasmic Pi concentration was attained, Pi was drawn from the vacuole to sustain choline phosphorylation. In spinach leaves, the vacuole represents a potentially large Pi reservoir, and cycling of Pi through vacuolar influx (energy dependent) and efflux pathways is an efficient system that may provide for control over the cytosolic-free Pi and phosphorylated intermediate concentrations. 31P NMR spectra of neutralized perchloric acid extracts of spinach leaves showed well defined multipeak resonances (quadruplet) of intracellular phytate. The question of cytosolic Pi concentration in green cells is discussed.

摘要

本文描述了一种实验装置,该装置能够连续记录压缩菠菜叶片的高质量31P NMR谱,其中观察到的所有共振峰(细胞质和液泡中的无机磷、3-磷酸甘油酸、核苷酸)都很尖锐且分辨率良好。从完整叶绿体获得的31P NMR谱显示出基质无机磷的明显峰。基质无机磷共振峰的上移与外部无机磷的减少相关,反之亦然。在完整叶绿体中,核苷酸在NMR中基本不可见,而相同的核苷酸在完整叶绿体酸提取物的典型31P NMR谱中重新出现。用含无机磷的培养基灌注压缩菠菜叶片12小时后,液泡无机磷急剧增加。向压缩叶片的无磷灌注液中添加胆碱会导致细胞质中磷酸胆碱的稳定积累,同时细胞质无机磷减少。当细胞质无机磷浓度达到阈值时,无机磷会从液泡中抽出以维持胆碱磷酸化。在菠菜叶片中,液泡是一个潜在的大无机磷库,无机磷通过液泡内流(能量依赖)和外流途径的循环是一个有效的系统,可能有助于控制细胞质游离无机磷和磷酸化中间产物的浓度。菠菜叶片中和后的高氯酸提取物的31P NMR谱显示出细胞内肌醇六磷酸的明确定义的多峰共振(四重峰)。本文还讨论了绿色细胞中细胞质无机磷浓度的问题。

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