نتایج جستجو برای: تیوردوکسین nadp

تعداد نتایج: 13985  

پایان نامه :وزارت علوم، تحقیقات و فناوری - دانشگاه شهید چمران اهواز - دانشکده دامپزشکی 1393

میزان بالای تکثیر و تقسیمات سلولی یکی از شاخص های اصلی تومورهای مختلف است. سلول برای تکثیر خود علاوه بر انرژی به تولید ماکرومولکول های لازم و انتقال آنها به سلول های دختری نیز نیاز دارد. یکی از این ماکرومولکول های مورد نیاز سلول سرطانی، اسید های چرب جهت ساخت غشا های سلول های دختری است و آنزیم مالیک یکی از آنزیم هایی است که با تولید nadph، کوآنزیم احیایی مورد نیاز برای سنتز اسید های چرب را فراهم...

Journal: :Indian journal of biochemistry & biophysics 1999
S R Bhaumik H M Sonawat

The kinetic mechanism of glucose dehydrogenase (EC 1.1.1.47) from Halobacterium salinarum was studied by initial velocity and product inhibition methods. The results suggest that both, in the forward and reverse direction, the reaction mechanism is of Bi Bi sequential ordered type involving formation of ternary complexes. NADP+ adds first and NADPH formed dissociates from the enzyme last. For t...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2015
Nick R Love Nadine Pollak Christian Dölle Marc Niere Yaoyao Chen Paola Oliveri Enrique Amaya Sandip Patel Mathias Ziegler

Nicotinamide adenine dinucleotide phosphate (NADP) is a critical cofactor during metabolism, calcium signaling, and oxidative defense, yet how animals regulate their NADP pools in vivo and how NADP-synthesizing enzymes are regulated have long remained unknown. Here we show that expression of Nadk, an NAD(+) kinase-encoding gene, governs NADP biosynthesis in vivo and is essential for development...

2002
w. A. Scott

Neurospora glucose 6-phosphate dehydrogenase is a multimerit protein and occurs as tetramers and dimers with molecular weights of 206,000 and 104,000 to 114,000, respectively. The existence of the two types of molecules is supported by electron microscopic observations. The molecular weight of the subunits was estimated to be 57,000 by sodium dodecyl sulfate gel electrophoresis, and 63,000 by s...

Journal: :The Biochemical journal 2007
Nadine Pollak Christian Dölle Mathias Ziegler

The pyridine nucleotides NAD and NADP play vital roles in metabolic conversions as signal transducers and in cellular defence systems. Both coenzymes participate as electron carriers in energy transduction and biosynthetic processes. Their oxidized forms, NAD+ and NADP+, have been identified as important elements of regulatory pathways. In particular, NAD+ serves as a substrate for ADP-ribosyla...

Journal: :Molecules 2012
Xiaoling Ma Li Li Chongzheng Xu Haiyan Wei Xianlong Wang Xiaodi Yang

In this study, both experimental and theoretical approaches, including absorption spectra, fluorescence emission spectra, 1H- and 31P-NMR, electrospray ionization mass spectrometry (ESI-MS), pH-potentiometry and theoretical approaches using the BEST & SPE computer programs were applied to study the competitive complexation between ciprofloxacin (CIP) and b-nicotinamide adenine dinucleotide phos...

2014
Jie Li Cheng Wang Zhi-Min Zhang Yi-Qiang Cheng Jiahai Zhou

The disulfide bond is unusual in natural products and critical for thermal stability, cell permeability and bioactivity. DepH from Chromobacterium violaceum No. 968 is an FAD-dependent enzyme responsible for catalyzing the disulfide bond formation of FK228, an anticancer prodrug approved for the treatment of cutaneous T-cell lymphoma. Here we report the crystal structures of DepH and DepH compl...

Journal: :Plant physiology 1987
W Ni E F Robertson H C Reeves

Cytosolic NADP-specific isocitrate dehydrogenase was isolated from leaves of Pisum sativum. The purified enzyme was obtained by ammonium sulfate fractionation, ion exchange, affinity, and gel filtration chromatography. The purification procedure yields greater than 50% of the total enzyme activity originally present in the crude extract. The enzyme has a native molecular weight of 90 kilodalton...

Journal: :Biophysical journal 1998
G M Guidi M F Carlier A Goldbeter

The enzyme isocitrate dehydrogenase (IDH, EC 1.1.1.42) can exhibit activation by one of its products, NADPH. This activation is competitively inhibited by the substrate NADP+, whereas NADPH competes with NADP+ for the catalytic site. Experimental observations briefly presented here have shown that if IDH is coupled to another enzyme, diaphorase (EC 1.8.1.4), which transforms NADPH into NADP+, t...

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