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Merck
모든 사진(2)

주요 문서

V900401

Sigma-Aldrich

β-Nicotinamide adenine dinucleotide hydrate

Vetec, reagent grade, ≥96.5%

동의어(들):

β-DPN, β-NAD, Coenzyme 1, Cozymase, DPN, Diphosphopyridine nucleotide, NAD, Nadide

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About This Item

실험식(Hill 표기법):
C21H27N7O14P2 · xH2O
CAS Number:
Molecular Weight:
663.43 (anhydrous basis)
EC Number:
MDL number:
UNSPSC 코드:
41106305
PubChem Substance ID:
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Grade

reagent grade

제품 라인

Vetec

분석

≥96.5%

양식

powder

색상

white to off-white

저장 온도

−20°C

SMILES string

NC1=NC=NC2=C1N=CN2.O[C@@H]3[C@@H](COP(O)(OP(OC[C@@H](O4)[C@@H](O)[C@@H](O)[C@H]4[N+]5=CC=CC(C(N)=O)=C5)([O-])=O)=O)OC[C@@H]3O

InChI

1S/C21H27N7O14P2/c22-17-12-19(25-7-24-17)28(8-26-12)21-16(32)14(30)11(41-21)6-39-44(36,37)42-43(34,35)38-5-10-13(29)15(31)20(40-10)27-3-1-2-9(4-27)18(23)33/h1-4,7-8,10-11,13-16,20-21,29-32H,5-6H2,(H5-,22,23,24,25,33,34,35,36,37)/t10-,11-,13-,14-,15-,16-,20-,21-/m1/s1

InChI key

BAWFJGJZGIEFAR-NNYOXOHSSA-N

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일반 설명

β-Nicotinamide adenine dinucleotide (NAD) is a ubiquitously[1] found electron carrier[2] and a cofactor. NAD+ contains an adenylic acid and a nicotinamide-5′-ribonucleotide group linked together by a pyrophosphate moiety. In NAD+ complexes, the enzyme-cofactor interactions are highly conserved.[1]

생화학적/생리학적 작용

β-Nicotinamide adenine dinucleotide (NAD) significantly participates in enzyme-catalyzed oxido-reduction processes[1] and many genetic processes.[3] It cycles between the oxidized (NAD+) and reduced (NADH) forms to maintain a redox balance necessary for continued cell growth. NAD is also involved in microbial catabolism.[3]
Electron acceptor

포장

Packaged by solid weight.

기타 정보

This is the common form of NAD.

법적 정보

Vetec is a trademark of Merck KGaA, Darmstadt, Germany

Storage Class Code

13 - Non Combustible Solids

WGK

WGK 3

Flash Point (°F)

Not applicable

Flash Point (°C)

Not applicable


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문서 라이브러리 방문

Experimental and theoretical electron density studies in large molecules: NAD+, beta-nicotinamide adenine dinucleotide
Guillot B, et al.
The Journal of Physical Chemistry B, 107(34), 9109-9121 (2003)
A Mechanism of Adsorption of beta-Nicotinamide Adenine Dinucleotide on Graphene Sheets: Experiment and Theory
Pumera M, et al.
Chemistry (Weinheim An Der Bergstrasse, Germany), 15(41), 10851-10856 (2009)
Ana P Gomes et al.
Cell, 155(7), 1624-1638 (2013-12-24)
Ever since eukaryotes subsumed the bacterial ancestor of mitochondria, the nuclear and mitochondrial genomes have had to closely coordinate their activities, as each encode different subunits of the oxidative phosphorylation (OXPHOS) system. Mitochondrial dysfunction is a hallmark of aging, but
Christian Dölle et al.
The FEBS journal, 280(15), 3530-3541 (2013-04-27)
Mitochondrial metabolism is intimately connected to the universal coenzyme NAD. In addition to its role in redox reactions of energy transduction, NAD serves as substrate in regulatory reactions that lead to its degradation. Importantly, all types of the known NAD-consuming
Jeerus Sucharitakul et al.
The Journal of biological chemistry, 288(49), 35210-35221 (2013-10-17)
3-Hydroxybenzoate 6-hydroxylase (3HB6H) from Rhodococcus jostii RHA1 is an NADH-specific flavoprotein monooxygenase that catalyzes the para-hydroxylation of 3-hydroxybenzoate (3HB) to form 2,5-dihydroxybenzoate (2,5-DHB). Based on results from stopped-flow spectrophotometry, the reduced enzyme-3HB complex reacts with oxygen to form a C4a-peroxy

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