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Involvement of thiol transferase- and thioredoxin-dependent systems in the protection of 'essential' thiol groups of ornithine decarboxylase.

机译:硫醇转移酶和硫氧还蛋白依赖性系统参与鸟氨酸脱羧酶“必需”硫醇基团的保护。

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摘要

Ornithine decarboxylase (ODC), an enzyme with 'essential' thiol group(s), may be inactivated in vitro by removal of thiol reducing agents and re-activated by soluble factors from rat liver in the presence of NADPH or GSH. The NADPH- and GSH-dependent reducing systems were separated and resolved into three components, called factors A, B1 and B2, by chromatographic techniques. Factor B1 (Mr 12,000) could reactivate ODC in the presence of GSH and co-purified with thiol transferase activity. Factor B2 (Mr 12,000) and factor A (Mr approx. 110,000) were both needed to re-activate ODC in the presence of NADPH, and co-purified with thioredoxin and thioredoxin reductase activity respectively. In an attempt to investigate the physiological role of the 'essential' thiol group(s) of ODC, erythroleukaemia cells were incubated with NN-bis-(2-chloroethyl)-N'-nitrosourea, t-butyl hydroperoxide and vinblastine, which are known to increase the cellular GSSG/GSH ratio, azelaic acid, an inhibitor of thioredoxin reductase, and sodium arsenite, a strong inhibitor of the ODC-re-activating factors. All these compounds were able to decrease significantly the ODC activity induced in these cells. These results suggest that the thiol transferase- and thioredoxin-dependent systems may be physiologically relevant in maintaining ODC in the active, reduced, state.
机译:鸟氨酸脱羧酶(ODC)是一种具有“必需”硫醇基团的酶,可以通过在体内去除NAPPH或GSH的条件下,通过去除硫醇还原剂来灭活并通过可溶性因子从大鼠肝脏中重新激活。依赖于NADPH和GSH的还原系统通过色谱技术分离并分解为三个成分,称为因子A,B1和B2。因子B1(Mr 12,000)可以在GSH存在下重新激活ODC,并与硫醇转移酶活性一起纯化。要在NADPH存在下重新激活ODC,都需要因子B2(Mr 12,000)和因子A(Mr约110,000),并分别用硫氧还蛋白和硫氧还蛋白还原酶活性进行共纯化。为了研究ODC“基本”硫醇基的生理作用,将红白血病细胞与NN-双-(2-氯乙基)-N'-亚硝基脲,叔丁基氢过氧化物和长春碱一起温育。已知会增加细胞GSSG / GSH比率的是壬二酸(硫氧还蛋白还原酶的抑制剂)和亚砷酸钠(ODC再活化因子的强抑制剂)。所有这些化合物均能够显着降低在这些细胞中诱导的ODC活性。这些结果表明,硫醇转移酶和硫氧还蛋白依赖性系统可能在保持ODC处于活跃,还原状态时具有生理学意义。

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