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接触苯乙烯后红细胞δ-氨基-γ-酮戊酸脱水酶活性降低。

Decreased erythrocyte delta-aminolevulinate dehydratase activity after styrene exposure.

作者信息

Fujita H, Koizumi A, Furusawa T, Ikeda M

出版信息

Biochem Pharmacol. 1987 Mar 1;36(5):711-6. doi: 10.1016/0006-2952(87)90723-4.

Abstract

delta-Aminolevulinate dehydratase (ALA-D:porphobilinogen synthase, 5-aminolevulinate hydro-lyase, EC 4.2.1.24) activity was depressed markedly in red cells of rats exposed to 0.21 g/m3 styrene, a chemical widely used in commercial products. The depression was not restored in vitro after treatment with dithiothreitol and zinc. Consistent with this finding, radioimmunoassay of the enzyme protein demonstrated reduction in the enzyme concentration by styrene exposure. There was a good correlation between the decrease in enzyme activity and its concentration in the styrene-treated animals, suggesting that the depression of the enzyme activity was essentially due to the reduction in the enzyme content. Decrease in the enzyme content in bone marrow cells to almost the same extent as that in erythrocytes seems to indicate the decreased synthesis of ALA-D in the bone marrow. In vitro studies showed that styrene 7,8-oxide, the major intermediate of styrene metabolism, decreased the activity of purified ALA-D but that styrene, the parent compound itself, had no inhibitory effect. The activity and concentration of erythrocyte ALA-D in workers chronically exposed to styrene were also depressed significantly. These findings indicate that the styrene exposure-mediated decrease of ALA-D activity in erythrocytes was a reflection of reduction in the enzyme protein, which may have been the result of styrene 7,8-oxide action, and they suggest that a similar process may also be involved in the reduction of erythrocyte ALA-D in styrene-exposed workers.

摘要

δ-氨基乙酰丙酸脱水酶(ALA-D:胆色素原合酶、5-氨基乙酰丙酸水解酶,EC 4.2.1.24)的活性在暴露于0.21 g/m³苯乙烯的大鼠红细胞中显著降低,苯乙烯是一种广泛用于商业产品的化学品。在用二硫苏糖醇和锌处理后,体外活性未恢复。与此发现一致,该酶蛋白的放射免疫测定表明,苯乙烯暴露会使酶浓度降低。在经苯乙烯处理的动物中,酶活性的降低与其浓度之间存在良好的相关性,这表明酶活性的降低本质上是由于酶含量的减少。骨髓细胞中酶含量的降低程度与红细胞中几乎相同,这似乎表明骨髓中ALA-D的合成减少。体外研究表明,苯乙烯代谢的主要中间体苯乙烯7,8-氧化物会降低纯化的ALA-D的活性,但母体化合物苯乙烯本身没有抑制作用。长期接触苯乙烯的工人红细胞中ALA-D的活性和浓度也显著降低。这些发现表明,苯乙烯暴露介导的红细胞中ALA-D活性降低反映了酶蛋白的减少,这可能是苯乙烯7,8-氧化物作用的结果,并且它们表明类似的过程可能也参与了接触苯乙烯工人红细胞中ALA-D的减少。

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