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L-脯氨酸改变脑皮质组织切片中的能量代谢。

L-Proline Alters Energy Metabolism in Brain Cortical Tissue Slices.

机构信息

Neuroscience Research Australia, Barker St, Randwick, NSW, 2031, Australia.

School of Medical Sciences, The University of New South Wales, Sydney, NSW, Australia.

出版信息

Neurochem Res. 2024 Nov 18;50(1):16. doi: 10.1007/s11064-024-04262-1.

Abstract

L-Proline (L-Pro) is a non-essential amino acid which, in high concentrations, can cause neurological problems including seizures, although the causative mechanism for this is unclear. Here, we studied the impact of physiological levels of proline on brain energy metabolism and investigated the metabolism of L-Pro itself, using the cortical brain tissue slice and stable isotope labelling from [1- C]glucose and [1,2- C]acetate detected by NMR spectroscopy and LCMS. L-Pro was actively taken up by the slices and significantly reduced the total metabolic pools of all measured metabolites with glutamine the least affected, while reducing net flux of C into glycolytic byproducts (lactate and alanine). Conversely, net flux into Krebs cycle intermediates was increased, suggesting that L-Pro at lower concentrations was driving increased mitochondrial activity in both neurons and glia at the expense of glycolysis and metabolic pool sizes. As there was no evidence of metabolism of [1- C] L-Pro in slices under normo-glycemic conditions, the effect of proline on metabolism was not due to displacement of metabolites by added L-Pro. Comparison of the metabolic fingerprint generated by L-Pro in slices metabolizing [3- C]pyruvate with that generated by ligands active in the GABAergic system suggested that L-Pro may engender effects similar to that of the inhibitory neurotransmitter and metabolite γ-aminobutyric acid (GABA), in line with previous suggestions that L-Pro may be a GABA mimetic in addition to its role as a modulator of mitochondrial metabolism.

摘要

L-脯氨酸(L-Pro)是一种非必需氨基酸,在高浓度下会导致包括癫痫在内的神经问题,尽管其致病机制尚不清楚。在这里,我们研究了生理浓度的脯氨酸对大脑能量代谢的影响,并通过使用皮质脑切片和通过 NMR 光谱和 LCMS 检测的 [1-¹³C]葡萄糖和 [1,2-¹³C]乙酸的稳定同位素标记,研究了 L-Pro 本身的代谢。L-Pro 被切片主动摄取,并显著降低了所有测量代谢物的总代谢池,其中受影响最小的是谷氨酰胺,同时减少了 C 向糖酵解副产物(乳酸和丙氨酸)的净通量。相反,净通量进入克雷布斯循环中间产物增加,这表明在较低浓度下,L-Pro 以牺牲糖酵解和代谢池大小为代价,驱动神经元和神经胶质中的线粒体活性增加。由于在正常血糖条件下切片中没有 [1-¹³C]L-Pro 代谢的证据,因此脯氨酸对代谢的影响不是由于添加的 L-Pro 取代代谢物。比较 L-Pro 在代谢 [3-¹³C]丙酮酸的切片中产生的代谢指纹与在 GABA 能系统中活性的配体产生的代谢指纹表明,L-Pro 可能产生类似于抑制性神经递质和代谢物 γ-氨基丁酸(GABA)的作用,这与之前的建议一致,即 L-Pro 除了作为线粒体代谢调节剂外,还可能是 GABA 的类似物。

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