Mostrando 1 - 20 Resultados de 4,051 Para Buscar 'Niesky~', tiempo de consulta: 7.65s Limitar resultados
  1. 1
    por Botey, Josep Ma
    Publicado 1996
    Materias: “…Niemeyer, Oscar, 1907-…”
    Libro
  2. 2
    por Papadaki, Stamo
    Publicado 1960
    Materias: “…Niemeyer, Oscar, 1907-2012.…”
    Libro
  3. 3
    Publicado 1990
    Materias:
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    “…Rieske oxygenases use a Rieske-type [2Fe-2S] cluster and a mononuclear iron center to initiate a range of chemical transformations. …”
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  7. 7
    “…Rieske oxygenases exploit the reactivity of iron to perform chemically challenging C–H bond functionalization reactions. …”
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  8. 8
    “…Therefore, here, we highlight recent work on structurally characterized Rieske oxygenases that implicates architectural pieces inside and outside of the active site as key dictators of catalysis, and we suggest that these features may warrant attention in efforts aimed at Rieske oxygenase engineering.…”
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  9. 9
    “…Rieske/cytochrome b (Rieske/cytb) complexes are proton pumping quinol oxidases that are present in most bacteria and Archaea. …”
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  10. 10
    “…The disulphide bridge in the A. faecalis AioB which is conserved in other betaproteobacterial AioB subunits and the Rieske subunit of the cytochrome bc (1) complex is absent in the NT-26 AioB subunit. …”
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  11. 11
    “…[Image: see text] Rieske nonheme iron oxygenases use two metallocenters, a Rieske-type [2Fe-2S] cluster and a mononuclear iron center, to catalyze oxidation reactions on a broad range of substrates. …”
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  12. 12
    “…Oxidative cyclizations, exemplified by the biosynthetic assembly of the penicillin nucleus from a tripeptide precursor, are arguably the most synthetically-powerful implementation of C-H activation reactions in Nature. Here we show that Rieske oxygenase-like enzymes mediate regio and stereodivergent oxidative cyclizations to form 10- and 12-membered carbocyclic rings in the key steps of the biosynthesis of the antibiotics streptorubin B and metacycloprodigiosin, respectively. …”
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  13. 13
    “…Rieske non-heme iron oxygenases, which have a Rieske-type [2Fe–2S] cluster and a non-heme catalytic iron center, are an important family of oxidoreductases involved mainly in regio- and stereoselective transformation of a wide array of aromatic hydrocarbons. …”
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  14. 14
    “…These results provide further support that the AioB F108 is important in electron transfer between the Rieske subunit and cytochrome c and its absence in the arsenite oxidases from the Betaproteobacteria may explain the inability of these enzymes to use this electron acceptor.…”
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  15. 15
    “…Here, we report the structures of two Rieske monooxygenases involved in the biosynthesis of paralytic shellfish toxins (PSTs), SxtT and GxtA, adding to the short list of structurally characterized Rieske oxygenases. …”
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    “…Rieske dioxygenases belong to the non‐heme iron family of oxygenases and catalyze important cis‐dihydroxylation as well as O‐/N‐dealkylation and oxidative cyclization reactions for a wide range of substrates. …”
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  18. 18
    “…Cumene dioxygenase (CumDO) is an initial enzyme in the cumene degradation pathway of Pseudomonas fluorescens IP01 and is a Rieske non-heme iron oxygenase (RO) that comprises two electron transfer components (reductase [CumDO-R] and Rieske-type ferredoxin [CumDO-F]) and one catalytic component (α(3)β(3)-type oxygenase [CumDO-O]). …”
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  19. 19
    “…The 2.07 Å resolution X-ray crystal structure of a soluble Rieske-type ferredoxin from Mus musculus encoded by the gene Mm.266515 is reported. …”
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  20. 20
    “…[Image: see text] Rieske oxygenases perform precise C–H bond functionalization reactions in anabolic and catabolic pathways. …”
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