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Copper oxidases, other, relationship with

RELATIONSHIP WITH OTHER COPPER OXIDASES 5.1 The "Blue" Copper Oxidase Family... [Pg.72]

Tyrosinase is a monooxygenase which catalyzes the incorporation of one oxygen atom from dioxygen into phenols and further oxidizes the catechols formed to o-quinones (oxidase action). A comparison of spectral (EPR, electronic absorption, CD, and resonance Raman) properties of oxy-tyrosinase and its derivatives with those of oxy-Hc establishes a close similarity of the active site structures in these proteins (26-29). Thus, it seems likely that there is a close relationship between the binding of dioxygen and the ability to "activate" it for reaction and incoiporation into organic substrates. Other important copper monooxygenases which are however of lesser relevance to the model studies discussed below include dopamine p-hydroxylase (16,30) and a recently described copper-dependent phenylalanine hydroxylase (31). [Pg.86]

The interest in catechol oxidase, as well as in other copper proteins with the type 3 active site, is to a large extent due to their ability to process dioxygen from air at ambient conditions. While hemocyanin is an oxygen carrier in the hemolymph of some arthropods and mollusks, catechol oxidase and tyrosinase utilize it to perform the selective oxidation of organic substrates, for example, phenols and catechols. Therefore, establishment of structure-activity relationships for these enzymes and a complete elucidation of the mechanisms of enzymatic conversions through the development of synthetic models are expected to contribute greatly to the design of oxidation catalysts for potential industrial applications. [Pg.108]

A phylogenetic relationship may be assumed for amine oxidase and diamine oxidase which shows distinct sequence homologies in their C-terminal regions [128]. Lysyl oxidase is not related to the other amine oxidases as it does not share any homology in structure or amino acid sequence [128] with the other amine oxidases. Non-copper enzymes with similar structures or sequences have not yet been found for any of the three enzymes. [Pg.164]


See other pages where Copper oxidases, other, relationship with is mentioned: [Pg.51]    [Pg.268]    [Pg.131]    [Pg.179]    [Pg.15]    [Pg.579]    [Pg.224]    [Pg.314]    [Pg.5817]    [Pg.314]    [Pg.5816]   
See also in sourсe #XX -- [ Pg.72 , Pg.73 , Pg.74 ]




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Other Oxidases

Oxidases copper

Relationships with

With Copper

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