Levine M, Hartzell W
Ann N Y Acad Sci. 1987;498:424-44. doi: 10.1111/j.1749-6632.1987.tb23779.x.
Experiments with enzymes in situ that are dependent on ascorbic acid for maximum activity will provide critical information about ascorbic acid requirements. Our work with chromaffin tissue as a model system eventually will result in the determination of two dose-response curves for norepinephrine biosynthesis, representing cytosolic ascorbic acid and intragranular ascorbic acid (Fig. 11). These curves for norepinephrine biosynthesis can be combined with curves for other enzymatic events that are also dependent on ascorbic acid for maximal activity. These dose-response curves (Fig. 2) will allow determination of optimum ascorbic acid requirements based on specific product formation and minimum toxicity. These principles are adaptable to other vitamins as well as ascorbic acid, and could form the basis for a new approach to vitamin requirements.
对原位依赖抗坏血酸以达到最大活性的酶进行实验,将提供有关抗坏血酸需求的关键信息。我们以嗜铬组织作为模型系统开展的工作,最终将确定去甲肾上腺素生物合成的两条剂量反应曲线,分别代表胞质抗坏血酸和颗粒内抗坏血酸(图11)。去甲肾上腺素生物合成的这些曲线可与其他也依赖抗坏血酸以达到最大活性的酶促反应曲线相结合。这些剂量反应曲线(图2)将能够根据特定产物的形成和最低毒性来确定最佳抗坏血酸需求量。这些原则适用于其他维生素以及抗坏血酸,并可为确定维生素需求量的新方法奠定基础。