1pt9: Difference between revisions

From Proteopedia
Jump to navigationJump to search
OCA (talk | contribs)
No edit summary
OCA (talk | contribs)
No edit summary
Line 4: Line 4:


==Overview==
==Overview==
Transhydrogenase couples the reduction of NADP+ by NADH to inward proton, translocation across mitochondrial and bacterial membranes. The coupling, reactions occur within the protein by long distance conformational, changes. In intact transhydrogenase and in complexes formed from the, isolated, nucleotide-binding components, thio-NADP(H) is a good analogue, for NADP(H), but thio-NAD(H) is a poor analogue for NAD(H). Crystal, structures of the nucleotide-binding components show that the twists of, the 3-carbothiamide groups of thio-NADP+ and of thio-NAD+ (relative to the, planes of the pyridine rings), which are defined by the dihedral, Xam, are, altered relative to the twists of the 3-carboxamide groups of the, physiological nucleotides. The finding that thio-NADP+ is a good substrate, despite an increased Xam value shows that approach of the NADH prior to, hydride transfer is not obstructed by the S atom in the analogue. That, thio-NAD(H) is a poor substrate appears to be the result of failure in the, conformational change that establishes the ground state for hydride, transfer. This might be a consequence of restricted rotation of the, 3-carbothiamide group during the conformational change.
Transhydrogenase couples the reduction of NADP+ by NADH to inward proton translocation across mitochondrial and bacterial membranes. The coupling reactions occur within the protein by long distance conformational changes. In intact transhydrogenase and in complexes formed from the isolated, nucleotide-binding components, thio-NADP(H) is a good analogue for NADP(H), but thio-NAD(H) is a poor analogue for NAD(H). Crystal structures of the nucleotide-binding components show that the twists of the 3-carbothiamide groups of thio-NADP+ and of thio-NAD+ (relative to the planes of the pyridine rings), which are defined by the dihedral, Xam, are altered relative to the twists of the 3-carboxamide groups of the physiological nucleotides. The finding that thio-NADP+ is a good substrate despite an increased Xam value shows that approach of the NADH prior to hydride transfer is not obstructed by the S atom in the analogue. That thio-NAD(H) is a poor substrate appears to be the result of failure in the conformational change that establishes the ground state for hydride transfer. This might be a consequence of restricted rotation of the 3-carbothiamide group during the conformational change.


==About this Structure==
==About this Structure==
Line 14: Line 14:
[[Category: NAD(P)(+) transhydrogenase (AB-specific)]]
[[Category: NAD(P)(+) transhydrogenase (AB-specific)]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Boxel, G.I.van.]]
[[Category: Boxel, G I.van.]]
[[Category: Jackson, J.B.]]
[[Category: Jackson, J B.]]
[[Category: Quirk, P.G.]]
[[Category: Quirk, P G.]]
[[Category: Rodrigues, D.J.]]
[[Category: Rodrigues, D J.]]
[[Category: Singh, A.]]
[[Category: Singh, A.]]
[[Category: Venning, J.D.]]
[[Category: Venning, J D.]]
[[Category: White, S.A.]]
[[Category: White, S A.]]
[[Category: GOL]]
[[Category: GOL]]
[[Category: SO4]]
[[Category: SO4]]
Line 29: Line 29:
[[Category: transhydrogenase]]
[[Category: transhydrogenase]]


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Fri Feb 15 16:41:25 2008''
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 14:32:21 2008''