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用[2-¹³C]丙氨酸探究代谢区室化:使用低温探头提高¹³C NMR灵敏度检测到神经胶质代谢体的证据。

Compartmentation of metabolism probed by [2-13C]alanine: improved 13C NMR sensitivity using a CryoProbe detects evidence of a glial metabolon.

作者信息

Griffin J L, Keun H, Richter C, Moskau D, Rae C, Nicholson J K

机构信息

Biological Chemistry, Biomedical Sciences, Faculty of Medicine, Imperial College of Science, Technology and Medicine, Exhibition Road, London SW7 2AZ, UK.

出版信息

Neurochem Int. 2003 Jan;42(1):93-9. doi: 10.1016/s0197-0186(02)00064-5.

DOI:10.1016/s0197-0186(02)00064-5
PMID:12441173
Abstract

The labelling of metabolites with the NMR active nucleus 13C allows not only metabolite enrichments to be monitored, but also the relative fluxes through competing pathways to be delineated. [2-13C, 15N]alanine was used as a metabolic probe to investigate compartmentation in superfused cerebral slices. Perchloric acid extracts of the tissue were investigated using 13C NMR spectroscopy. The spectra were obtained using a CryoProbe optimised for 13C detection (dual CryoProbe [13C, 1H]) in which the receiver and transmitter coils are cooled to approximately 20K to reduce contributions to noise in the signal obtained. Compared with conventional inverse geometry probe, the signal-to-noise ratio (S/N) was increased by approximately 17-fold using this device. A large proportion of alanine was initially metabolised over the first 20 min by glial cells, as indicated by the relative importance of the glial, only enzyme pyruvate carboxylase to the labelling pattern of glutamate, with the ratio of pyruvate carboxylase to pyruvate dehydrogenase derived glutamate being 0.25, and exported [2-13C, 15N]aspartate. Using the increased sensitivity of the CryoProbe, [2-13C, 15N]aspartate was also detected in the extracts of cerebral tissue. This metabolite could only have been derived via the pyruvate carboxylase pathway, and given the large export of the metabolite into the superfusion buffer suggests the occurrence of a "metabolon" arrangement of enzymes within glial cells.

摘要

用具有核磁共振活性的原子核13C标记代谢物,不仅可以监测代谢物的富集情况,还能描绘出通过竞争途径的相对通量。[2-13C, 15N]丙氨酸被用作代谢探针,以研究脑片灌流中的区室化现象。使用13C核磁共振波谱对组织的高氯酸提取物进行研究。光谱是使用针对13C检测优化的低温探头(双低温探头[13C, 1H])获得的,其中接收线圈和发射线圈被冷却到约20K,以减少对所获信号噪声的贡献。与传统的反几何探头相比,使用该设备时信噪比(S/N)提高了约17倍。如仅存在于神经胶质细胞中的丙酮酸羧化酶对谷氨酸标记模式的相对重要性所示,很大一部分丙氨酸在最初20分钟内被神经胶质细胞代谢,丙酮酸羧化酶与丙酮酸脱氢酶衍生的谷氨酸的比例为0.25,并输出[2-13C, 15N]天冬氨酸。利用低温探头提高的灵敏度,在脑组织提取物中也检测到了[2-13C, 15N]天冬氨酸。这种代谢物只能通过丙酮酸羧化酶途径产生,并且鉴于该代谢物大量输出到灌流缓冲液中,这表明神经胶质细胞内存在酶的“代谢体”排列。

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