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[苯丙酮尿症脑功能障碍的可能分子机制]

[Possible molecular mechanisms of brain dysfunction in phenylketonuria].

作者信息

Kostiuk P G, Martyniuk A E

出版信息

Patol Fiziol Eksp Ter. 1992 Jul-Aug(4):34-6.

PMID:1303500
Abstract

Recent experimental data are summarized about changes in the functioning of calcium ion channels in clonal cellular lines (pheochromocytoma PC12) and hippocampal neurons of newborn rats on the background of altered intracellular level of aromatic amino acid L-tyrosine or its precursors L-phenylalanine. Elevation of the level of L-phenylalanine persistently down-regulated the high-threshold voltage-operated calcium channels in both types of cells without affecting the low-threshold ones in hippocampal neurons. This depression could be to some extent reversed by elevation of the level of L-tyrosine. Thus both amino acids seem to exert a long-lasting antagonistic modulatory effect on the corresponding channels, mediated probably through changes in tyrosylation of some cytoskeletal proteins. The participation of these molecular mechanisms in brain dysfunction during congenital disease phenylketonuria is suggested.

摘要

近期的实验数据总结了在芳香族氨基酸L-酪氨酸或其前体L-苯丙氨酸细胞内水平改变的背景下,克隆细胞系(嗜铬细胞瘤PC12)和新生大鼠海马神经元中钙离子通道功能的变化。L-苯丙氨酸水平的升高持续下调了两种细胞类型中的高阈值电压门控钙通道,而不影响海马神经元中的低阈值钙通道。L-酪氨酸水平的升高在一定程度上可以逆转这种抑制作用。因此,这两种氨基酸似乎对相应通道发挥持久的拮抗调节作用,可能是通过某些细胞骨架蛋白酪氨酸化的变化介导的。提示这些分子机制参与了先天性疾病苯丙酮尿症期间的脑功能障碍。

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