Ono S, Hirano H, Ono M, Nagato K, Obara K
Int J Vitam Nutr Res. 1977;47(4):345-8.
In order to clarify the role of riboflavin in phosphorylation in the lens, the authors have attempted to investigate the 32P turnover in the macromolecule fraction in the lens supernatant from riboflavin deficient rats. 32P turnover in the macromolecular phosphate compounds was reduced remarkably. The macromolecular phosphate compounds in the lens supernatant which was separated by Sephadex G-50 was identified as RNA. These findings reveal that there are close relationships between reduced RNA turnover in the lens and riboflavin deficiency. This concept may contribute greatly to clarifying the pathogenesis of ariboflavinosis in general.
为了阐明核黄素在晶状体磷酸化过程中的作用,作者试图研究核黄素缺乏大鼠晶状体上清液中大分子部分的32P周转率。大分子磷酸化合物中的32P周转率显著降低。用葡聚糖凝胶G-50分离的晶状体上清液中的大分子磷酸化合物被鉴定为RNA。这些发现表明,晶状体中RNA周转率降低与核黄素缺乏之间存在密切关系。这一概念可能对总体阐明核黄素缺乏病的发病机制有很大帮助。