Beije B, Arrhenius E
Chem Biol Interact. 1978 Feb;20(2):191-203. doi: 10.1016/0009-2797(78)90053-4.
The influence of protein deprivation and cystein deficiency on the distribution of methyl mercury between 4 subcellular fractions of liver was studied in 2 rat strains (Wistar, strain R and Sprague-Dawley). Kept on a standard diet, the 2 strains showed a similar distribution pattern, with the highest mercury level found in the cytosol, followed by the mitochondrial, microsomal and nuclei fractions. The protein free diet caused on increase in the total amount of bound mercury in both strains, the greatest increase, being found in livers from strain R rats. The cystein deficient diet, on the other hand, gave rise to diverging results. Whereas the level of mercury bound to the subcellular fractions was increased in livers from strain R rats, it was markedly reduced in livers from Sprague-Dawley rats.
在两种大鼠品系(Wistar、品系R和Sprague-Dawley)中研究了蛋白质缺乏和半胱氨酸缺乏对甲基汞在肝脏4个亚细胞组分间分布的影响。在标准饮食条件下,这两种品系呈现出相似的分布模式,细胞溶质中的汞含量最高,其次是线粒体、微粒体和细胞核组分。无蛋白饮食导致两种品系中汞结合总量增加,品系R大鼠肝脏中的增加最为显著。另一方面,半胱氨酸缺乏饮食产生了不同的结果。品系R大鼠肝脏中与亚细胞组分结合的汞水平升高,而Sprague-Dawley大鼠肝脏中的汞水平则显著降低。