Ida S, Ohkuma S, Kimori M, Kuriyama K, Morimoto N, Ibata Y
Brain Res. 1985 Sep 30;344(1):62-9. doi: 10.1016/0006-8993(85)91189-8.
The effect of 3-acetylpyridine (3-AP) administration on the biosynthesis of taurine in the rat brain has been studied. Treatment with 3-AP induced a significant decrease in the cerebellar contents of taurine and its metabolic precursors, cysteine sulfinic acid (CSA) and cysteic acid (CA), as well as a selective degeneration of climbing fibers in the molecular layer of the cerebellum. It was found that the activity of cerebral cysteine dioxygenase, the enzyme catalyzing the formation of CSA from cysteine, consisted of two systems with low and high Km values. The 3-AP-induced attenuation of cysteine dioxygenase activity with a low Km value was noted only in the cerebellum, while that with a high Km value was detected not only in the cerebellum but also in other brain areas such as the medulla oblongata, striatum and cerebral cortex. In contrast, no alteration in the activity of cysteine sulfinic acid decarboxylase (CSD) was observed in any brain areas examined following the administration of 3-AP. Furthermore, it was found that essentially no cystamine as well as a very low activity of cysteamine dioxygenase is present in the brain. The present results suggest that taurine in the brain is synthesized from cysteine, mainly by the CSA and CA pathways, and the observed decline of cerebellar taurine in 3-AP-treated rats may be due to an attenuation of the biosynthesis, possibly at the step of cysteine dioxygenase. A possible regulatory role of cysteine dioxygenase with a low Km value in the biosynthesis of cerebral taurine is also suggested.
研究了给予3-乙酰吡啶(3-AP)对大鼠脑内牛磺酸生物合成的影响。用3-AP处理导致小脑内牛磺酸及其代谢前体半胱氨酸亚磺酸(CSA)和半胱氨酸磺酸(CA)的含量显著降低,以及小脑分子层中攀缘纤维的选择性退化。研究发现,脑内催化半胱氨酸形成CSA的半胱氨酸双加氧酶的活性由两个具有低Km值和高Km值的系统组成。3-AP诱导的低Km值半胱氨酸双加氧酶活性的减弱仅在小脑中观察到,而高Km值的减弱不仅在小脑中检测到,还在其他脑区如延髓、纹状体和大脑皮层中检测到。相反,在给予3-AP后,在所检查的任何脑区中均未观察到半胱氨酸亚磺酸脱羧酶(CSD)活性的改变。此外,发现脑内基本上不存在胱胺以及极低的半胱胺双加氧酶活性。目前的结果表明,脑内牛磺酸主要通过CSA和CA途径由半胱氨酸合成,在3-AP处理的大鼠中观察到的小脑牛磺酸的下降可能是由于生物合成的减弱,可能是在半胱氨酸双加氧酶步骤。还提出了低Km值的半胱氨酸双加氧酶在脑内牛磺酸生物合成中的可能调节作用。