1cvb: 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==
Amino acid substitutions at Thr199 of human carbonic anhydrase II (CAII), (Thr199-->Ser, Ala, Val, and Pro) were characterized to investigate the, importance of a conserved hydrogen bonding network. The three-dimensional, structures of azide-bound and sulfate-bound T199V CAIIs were determined by, x-ray crystallographic methods at 2.25 and 2.4 A, respectively (final, crystallographic R factors are 0.173 and 0.174, respectively). The CO2, hydrase activities of T199S and T199P variants suggest that the side chain, methyl and backbone amino functionalities stabilize the transition state, by approximately 0.4 and 0.8 kcal/mol, respectively. The side chain, hydroxyl group causes: stabilization of zinc-hydroxide relative to, zinc-water (pKa increases approximately 2 units); stabilization of the, transition state for bicarbonate dehydration relative to the CAII.HCO3-, complex (approximately 5 kcal/mol); and destabilization of the CAII.HCO3-, complex (approximately 0.8 kcal/mol). An inverse correlation between, log(kcatCO2/KM) and the pKa of zinc-water (r = 0.95, slope = -1) indicates, that the hydrogen bonding network stabilizes the chemical transition state, and zinc-hydroxide similarly. These data are consistent with the hydroxyl, group of Thr199 forming a hydrogen bond with the transition state and a, non-hydrogen-bonded van der Waals contact with CAII.HCO3-.
Amino acid substitutions at Thr199 of human carbonic anhydrase II (CAII) (Thr199-->Ser, Ala, Val, and Pro) were characterized to investigate the importance of a conserved hydrogen bonding network. The three-dimensional structures of azide-bound and sulfate-bound T199V CAIIs were determined by x-ray crystallographic methods at 2.25 and 2.4 A, respectively (final crystallographic R factors are 0.173 and 0.174, respectively). The CO2 hydrase activities of T199S and T199P variants suggest that the side chain methyl and backbone amino functionalities stabilize the transition state by approximately 0.4 and 0.8 kcal/mol, respectively. The side chain hydroxyl group causes: stabilization of zinc-hydroxide relative to zinc-water (pKa increases approximately 2 units); stabilization of the transition state for bicarbonate dehydration relative to the CAII.HCO3- complex (approximately 5 kcal/mol); and destabilization of the CAII.HCO3- complex (approximately 0.8 kcal/mol). An inverse correlation between log(kcatCO2/KM) and the pKa of zinc-water (r = 0.95, slope = -1) indicates that the hydrogen bonding network stabilizes the chemical transition state and zinc-hydroxide similarly. These data are consistent with the hydroxyl group of Thr199 forming a hydrogen bond with the transition state and a non-hydrogen-bonded van der Waals contact with CAII.HCO3-.


==Disease==
==Disease==
Line 17: Line 17:
[[Category: Homo sapiens]]
[[Category: Homo sapiens]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Christianson, D.W.]]
[[Category: Christianson, D W.]]
[[Category: Ippolito, J.A.]]
[[Category: Ippolito, J A.]]
[[Category: SO4]]
[[Category: SO4]]
[[Category: ZN]]
[[Category: ZN]]
[[Category: lyase(oxo-acid)]]
[[Category: lyase(oxo-acid)]]


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Fri Feb 15 15:37:17 2008''
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 12:10:10 2008''