Marsh W H, Fitzgerald P J
Am J Pathol. 1971 Aug;64(2):357-72.
The effect of actinomycin D (ACTD) at three dosage levels on the enzymatic activities of the normal rat pancreas was studied. At the 1.0 and 0.5 mug/g total body weight dosages there were decreased levels of amylase, lipase and chymotrypsin 1 hour after injection, a return to control levels shortly thereafter and a second drop in enzymatic levels a day or two later. Since ACTD is known to affect transcription of DNA within hours of administration, the first decrease may have reflected the effect of ACTD on the synthesis of enzyme mRNA. The lowest dosage, 0.05 mug/g, said to affect the synthesis of rRNA only, gave decreased enzymatic activities from 1-3 days after injection, suggesting that rRNA synthesis was involved, primarily. There were variable effects of ACTD on the enzymatic levels of regenerating pancreas after ethionine. When given for a single day early in the regeneration period, the injection of the 0.5 mug/g dosage, believed to affect both mRNA and rRNA synthesis, decreased considerably the levels of enzymatic activity on the fifth day of regeneration. Injection on multiple day early in regeneration, however, gave a paradoxic effect-higher levels than control values. The lowest dosage, 0.05 mug/g, affecting primarily rRNA, caused, even with multiple doses, a considerable decrease of enzymatic values to well below control levels. The paradoxic effect of the higher concentration of ACTD when given on multiple days may have been related to a decreased synthesis of the repressor of the mRNA for the enzyme, thereby making more mRNA available for synthesis of the enzyme.
研究了三种剂量水平的放线菌素D(ACTD)对正常大鼠胰腺酶活性的影响。在1.0和0.5微克/克体重的剂量下,注射后1小时淀粉酶、脂肪酶和胰凝乳蛋白酶水平降低,随后不久恢复到对照水平,一两天后酶水平再次下降。由于已知ACTD在给药后数小时内会影响DNA转录,第一次下降可能反映了ACTD对酶mRNA合成的影响。最低剂量0.05微克/克据说仅影响rRNA的合成,注射后1至3天酶活性降低,这表明主要涉及rRNA合成。ACTD对乙硫氨酸处理后再生胰腺的酶水平有不同影响。在再生期早期给予单日剂量时,注射0.5微克/克剂量(据信会影响mRNA和rRNA合成)会使再生第5天的酶活性水平大幅降低。然而,在再生早期给予多日剂量则产生了反常效应——酶活性水平高于对照值。最低剂量0.05微克/克主要影响rRNA,即使给予多剂量,也会使酶值大幅降低至远低于对照水平。多日给予较高浓度ACTD的反常效应可能与该酶mRNA阻遏物的合成减少有关,从而使更多mRNA可用于酶的合成。