Название продукта: beta-Diphosphopyridine nucleotide
Синонимы: ОНИ,ДПН,ОСТЕОПОНТИН, ГСТ ФЬЮЖН;)-1-бета-d-рибофуранозилпиридинийгидроксид,внутренняя соль;аденин-никотинамидинуклеотид;аденозин5′-(тригидродифосфат),p’.fwdarw.’-esterwith3-(аминокарбонил;Аденозин5′-(тригидродифосфат),П'.мударв.5′-сложный эфирс3-(аминокарбонил)-1-.бета.-D-рибофуранозилпиридиний,внутренняя соль;бета-дифосфопиридин;уютный;enzopride
КАС: 53-84-9
МФ: C21H27N7O14P2
МВт: 663.43
ЭИНЭКС: 200-184-4
Температура плавления: 140-142 °С (разлагать)
Точка кипения: 329.1±15.0 °C
Плотность: 1.137±0,06 г/см3
Температура хранения.: 2-8°С
Появление: Белый порошок
Nicotinamide adenine dinucleotide, abbreviated NADh+, is a coenzyme found in all living cells. The compound is a dinucleotide, since it consists of two nucleotides joined through their phosphate groups. One nucleotide contains an adenine base and the other nicotinamide.
In metabolism, NAD+ is involved in redox reactions, carrying electrons from one reaction to another. The coenzyme is, поэтому, found in two forms in cells: NAD+ is an oxidizing agent - it accepts electrons from other molecules and becomes reduced. This reaction forms NADH, (Nicotinamide adenine dinucleotide) which can then be used as a reducing agent to donate electrons. These electron transfer reactions are the main function of NAD+. Однако, it is also used in other cellular processes, the most notable one being a substrate of enzymes that add or remove chemical groups from proteins, in posttranslational modifications. Because of the importance of these functions, the enzymes involved in NAD+ metabolism are targets for drug discovery.