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Copper cytidine

C10H12N2O8P)2 (C10H9N3)2Cu 5 H20 Cytidine 5 -(copper monophosphate), 2,2 -dipyridylamine, pentahydrate (CUCMPA)176... [Pg.298]

C13H17CuN508 2 HaO (Glycylglycinato)copper(II)cytidine, dihydrate GLCYCV 38 500... [Pg.416]

C13H17CuN508)2-2 HzO Copper(II) (glycylglycinato)cytidine, dihydrate (GLCYCV)158... [Pg.500]

The presence of such a mechanism was prohed hy varying the sweep rate as illustrated in Fig. 4. Caution must he exercised in drawing conclusions from such a study because, with hahde ions (and with some other unidentate species), bridging by the halide between the copper ion and the electrode surface may accelerate the rate of electron transfer and lead to erroneous conclusions. This type of mechanism has also been proposed by Palaniandavar and coworkers [121] for the Cu(II/I) complex with deprotonated salicylideneglycine in the presence of cytosine or cytidine in which the latter species tends to be coordinated only to the oxidized complex. [Pg.1029]

Anhydro-2, 3 -O-isopropylideneadenosine iodide Adenosine 3, 5 -phosphate, P,0-ethyl ester, monohydrate N -[(Carboxymethyl)aminocarbonyl]adenosine (Glycylglycinato)copper(II)cytidine, dihydrate... [Pg.416]

Copper(IV) complexes, 750 Coppet(IMII) couples redox properties, 749 Copper(II) ions hard acid, 594 Copper proteins, 720 nonblue, 723 type III, 724 Copper(II) systems biological, 720-729 Cytidine... [Pg.6047]

Some of the chemical properties of the phosphorylating particle have also been elucidated. The particle consists mainly of two basic components, protein (65%) and phospholipids (20%). In addition to the various components of the electron transport chain, the phosphorylating particle also contains ATPase, the activity of which is so high that it may well explain the particle s low phosphorylating ability. Like that associated with mitochondria, the ATPase found in the particle is a highly specific enzyme that splits ATP to yield ADP, and is without effect on inosine, guano-sine, or cytidine triphosphate. There is more bound copper and iron in these particles than can be accounted for by the ferroproteins and cuproproteins of the electron transport chain. [Pg.47]

Cl3H19CUN5O8, Cytidine(glycylglycinato)copper(II), 4IB, 1038 C13H19CUN5O10, (Glycylglycinato)(cytidine)copper(II) dihydrate, 43B, 1267... [Pg.523]

C9H14C0N3O9P, Aquo(cytidine-5 -phosphato)cobalt(lI), 44B, 988 C9H1ftCuNftOe, Dinitrato(2-(2-dimethylaminoethyl)pyridine)copper(II), 39B, 785... [Pg.577]

Finally, De Munno et al. reported the one-pot synthesis of a stable polynuclear copper(n)-cytidine complex, entitled as the nucleoside-wheel . Surprisingly, despite the positive charges from eight copper(II) centers the complex is able to act as a host for [Cu(H20)6] cations. These unique complexes provide new opportunities for specific molecular recognition in the broad field of host-guest chemistry [67]. [Pg.651]


See other pages where Copper cytidine is mentioned: [Pg.501]    [Pg.421]    [Pg.304]    [Pg.180]    [Pg.126]   
See also in sourсe #XX -- [ Pg.97 ]




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