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Mechanisms of Inaetivation of γ-Aminobutyric Acid Aminotransferase by 4-Amino-5-fluoro-5-hexenoic Acid

机译:4-氨基-5-氟-5-己酸诱导γ-氨基丁酸氨基转移酶的机理

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摘要

An investigation of the mechanisms of inactivation of the pyridoxal 5'-phosphate (PLP)-dependent pig brain γ-aminobutyric acid (GABA) aminotransferase by 4-amino-5-fluoro-5-hexenoic acid (2), a monofluorinated analogue of the anticohvulsant drug vigabatrin, is described. Inactivation of [~3H]PLP-reconstituted GABA aminotransferase with 2 followed by denaturation released the coenzyme in two forms, one as PLP and the other in a modified form in the ratio 7:3. All enzyme activity was lost upon inaetivation by 2, but about 30% of the activity returned upon incubation with PLP, consistent with the formation and release of 30% of the coenzyme in a modified form, as noted above. Inaetivation of GABA aminotransferase with [2-~3H]-2 followed by gel filtration resulted in the attachment of 0.7 equiv of tritium to the enzyme, even though complete inaetivation occurred. This also is consistent with the above results that about 30% of inaetivation is the result of release of a modified coenzyme, leaving 30% of the enzyme as its apoenzyme form. Isolation and mass spectral analysis of the modified coenzyme gave peaks consistent with a modified coenzyme formed from a reaction with the inactivator (27). Denaturation of the enzyme containing 0.7 equiv of radioactivity from the above experiment led to release of 0.2—0.3 equiv of the radioactivity as γ-acetyl-GABA (20). Treatment of the denatured enzyme with sodium periodate generated 0.2— 0.25 equiv of succinic acid, leaving 0.15 equiv of radioactivity still covalently bound to the enzyme. Analysis of amine metabolites shows the formation of 0.5 equiv of 20. Analysis of the nonamine metabolites resulted in the identification of 1 equiv of 4-oxo-5-hexenoic acid (24). After inaetivation, 2.6 ±0.1 equiv of fluoride ions was detected, consistent with the loss of 1 fluoride ion to produce inaetivation, 1 fluoride ion to generate the 4-oxo-5-hexenoic acid, and 0.5 fluoride ion released in the production of γ-acetyl-GABA. Normal transamination also occurs; 6.3 ± 0.6 transamination events occurred during inaetivation, as measured by the conversion of [~(14)C]-α-ketoglutarate to [~(14)C]glutamate. These results indicate that there are, at least, three different inaetivation mechanisms in effect (Schemes 4-6). All of these mechanisms begin with Schiff base formation between 2 and the active site PLP followed by removal of the γ-proton and elimination of the fluoride ion. It is from this conjugated allene intermediate (17) that all of the inaetivation pathways and metabolites result, except for the normal transamination product. The partition ratio, the amount of inactivator converted to a product per inaetivation event, is about 8; 6.5 transaminations, 0.5 conversion to 20, and 1.0 conversion to 24 per 1.0 inaetivation event.
机译:吡咯醛5'-磷酸(PLP)依赖性猪脑γ-氨基丁酸(GABA)氨基转移酶被4-氨基-5-氟-5-己酸(2)(一种单氟类似物类似物)灭活的机制的研究。描述了抗凝聚药vigabatrin。用2灭活[〜3H] PLP重构的GABA氨基转移酶,然后变性,以两种形式释放辅酶,一种为PLP,另一种为修饰形式,比例为7:3。培养后,所有酶的活性都被2损失,但与PLP一起培养时,约30%的活性恢复,这与修饰形式的30%辅酶的形成和释放一致,如上所述。用[2-〜3H] -2诱使GABA氨基转移酶,然后进行凝胶过滤,即使发生了完全诱因,也将0.7当量的tri附着到酶上。这也与上述结果一致,即约30%的培养是修饰的辅酶释放的结果,剩下30%的酶为其脱辅酶形式。修饰的辅酶的分离和质谱分析给出了与通过与灭活剂的反应形成的修饰的辅酶一致的峰(27)。根据上述实验,含有0.7当量放射性的酶的变性导致释放出0.2-0.3当量放射性的γ-乙酰基-GABA(20)。用高碘酸钠处理变性的酶产生0.2-0.25当量的琥珀酸,剩下0.15当量的放射性仍与该酶共价结合。胺代谢产物的分析表明形成了0.5当量的20。非胺代谢产物的分析导致鉴定出1当量的4-氧代-5-己酸(24)。吸水后,检测到2.6±0.1当量的氟离子,这与损失1氟离子以产生吸水,丢失1氟离子以产生4-氧代-5-己酸和在生产γ中释放0.5氟离子相一致。 -乙酰基-GABA。也会发生正常的氨基转移。通过[〜(14)C]-α-酮戊二酸酯向[〜(14)C]谷氨酸的转化来衡量,在培养过程中发生了6.3±0.6的转氨事件。这些结果表明至少存在三种不同的诱因机制(方案4-6)。所有这些机制都始于2与活性位点PLP之间的席夫碱形成,然后是γ-质子的去除和氟离子的消除。除了正常的转氨产物外,所有的诱生途径和代谢产物都是由这种共轭的烯丙基中间体(17)产生的。分配比率,即每次诱因事件中转化为产物的灭活剂的量,约为8;每发生1.0个诱因,将发生6.5次转氨,0.5次转化为20次和1.0次转化为24次。

著录项

  • 来源
    《Journal of the American Chemical Society》 |1996年第6期|p.1241-1252|共12页
  • 作者单位

    Department of Chemistry and the Department of Biochemistry, Molecular Biology, and Cell Biology, Northwestern University, Evanston, Illinois 60208-3113;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:25:38

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