Sabbioni E, Marafante E
Environ Physiol Biochem. 1975;5(6):465-73.
The accumulation of cadmium in rat liver cadmium binding protein induced by single and repeated intraperitoneal injections of CdCl2 and the de novo biosynthesis of CdBP were studied by using 109Cd to measure cadmium binding in the CdBP and 35S incorporation as indicator of protein synthesis. The biosynthesis of CdBP is controlled by the cadmium concentrations. For single doses up to 1 mg Cd2+/Kg b.w. about 50% of the cadmium is present in the soluble fraction of liver bound to CdBP and the incorporation of 35S-cysteine is linear with the cadmium concentration. When single doses ranging from 1 to 3 mg Cd2+/Kg b.w. are administered the fractions of both 35S-cysteine and cadmium incorporated into de novo synthesized CdBP gradually decrease. For single doses higher than 3 mg Cd2+/Kg b.w. the biosynthesis capability is maximum and 20 mug Cd/g liver can be incorporated into the de novo biosynthesized CdBP. When rats are treated every day with amounts of cadmium of about 0.8 mg Cd2+/Kg b.w. for up to 8 days a dose-proportional increase in both Cd incorporation and CdBP biosynthesis are observed. This shows a cumulative incorporation of cadmium in the de novo biosynthesized CdBP. Experiments carried out by injecting 65ZnCl2 and 203HgCl2 every day showed that they are not accumulated like cadmium and do not induce the biosynthesis of rat liver CdBP after repeated administration over 7 days.
采用¹⁰⁹Cd测定镉结合蛋白(CdBP)中的镉结合量,并以³⁵S掺入作为蛋白质合成指标,研究了单次及重复腹腔注射CdCl₂诱导大鼠肝脏镉结合蛋白中镉的蓄积以及CdBP的从头生物合成。CdBP的生物合成受镉浓度控制。对于单次剂量高达1mg Cd²⁺/kg体重,约50%的镉存在于肝脏与CdBP结合的可溶部分,且³⁵S-半胱氨酸的掺入与镉浓度呈线性关系。当给予1至3mg Cd²⁺/kg体重的单次剂量时,掺入从头合成CdBP中的³⁵S-半胱氨酸和镉的比例逐渐降低。对于高于3mg Cd²⁺/kg体重的单次剂量,生物合成能力达到最大,20μg Cd/g肝脏可掺入从头生物合成的CdBP中。当大鼠每天用约0.8mg Cd²⁺/kg体重的镉处理长达8天时,观察到镉掺入量和CdBP生物合成均呈剂量比例增加。这表明镉在从头生物合成的CdBP中存在累积掺入。每天注射⁶⁵ZnCl₂和²⁰³HgCl₂进行的实验表明,它们不像镉那样蓄积,并且在重复给药7天后不会诱导大鼠肝脏CdBP的生物合成。