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Probing Oxygen Activation Sites in Two Flavoprotein Oxidases Using Chloride as an Oxygen Surrogate.

Authors :
Kommoju, Phaneeswara-Rao
Chen, Zhi-wei
Bruckner, Robert C.
Mathews, F. Scott
Schuman Jorns, Marilyn
Source :
Biochemistry. 6/21/2011, Vol. 50 Issue 24, p5521-5534. 14p.
Publication Year :
2011

Abstract

A single basic residue above the si-face of the flavin ring is the site of oxygen activation in glucose oxidase (GOX) (His516) and monomeric sarcosine oxidase (MSOX) (Lys265). Crystal structures of both flavoenzymes exhibit a small pocket at the oxygen activation site that might provide a preorganized binding site for superoxide anion, an obligatory intermediate in the two-electron reduction of oxygen. Chloride binds at these poiar oxygen activation sites, as judged by solution and structural studies. First, chloride forms spectrally detectable complexes with GOX and MSOX. The protonated form of His516 is required for tight binding of chloride to oxidized GOX and for rapid reaction of reduced GOX with oxygen. Formation of a binary MSOX · chloride complex requires Lys26S and is not observed with Lys265Met. Binding of chloride to MSOX does not affect the binding of a sarcosine analogue (MTA, methylthioactetate) above the re-face of the flavin ring. Definitive evidence is provided by crystal structures determined for a binary MSOX chloride complex and a ternary MSOX · chloride · MTA complex Chloride binds in the small pocket at a position otherwise occupied by a water molecule and forms hydrogen bonds to four hgands that are arranged in approximate tetrahedral geometry: Lys265:NZ, Arg49:NH1, and two water molecules, one of which is hydrogen bonded to FAD:N5. The results show that chloride (i) acts as an oxygen surrogate, (ii) is an effective probe ofpolar oxygen activation sites, and (iii) provides a valuable complementary tool to the xenon gas method that is used to map nonpolar oxygen-binding cavities. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00062960
Volume :
50
Issue :
24
Database :
Academic Search Index
Journal :
Biochemistry
Publication Type :
Academic Journal
Accession number :
66751431
Full Text :
https://doi.org/10.1021/bi200388g