AZIDE AND CHLORIDE BINDING TO CARBOXYPEPTIDASE-A IN THE PRESENCE OF L-PHENYLALANINE

被引:9
作者
BERTINI, I
LUCHINAT, C
MONNANNI, R
MORATAL, JM
DONAIRE, A
AULD, DS
机构
[1] UNIV VALENCIA,DEPT INORGAN CHEM,VALENCIA,SPAIN
[2] HARVARD UNIV,SCH MED,CTR BIOCHEM & BIOPHYS SCI & MED,BOSTON,MA 02115
关键词
D O I
10.1016/0162-0134(90)80010-U
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The interaction of chloride with native and cobalt (Co)-substituted carboxypeptidase-A (CPD) has been investigated by 35Cl nuclear magnetic resonance (NMR) spectroscopy in the presence and absence of L-Phe. The affinity constants of azide and chloride toward the Co(II)CPD·L-Phe complex have been measured by electronic spectroscopy. The correlation times determining T1 and T2 for the 35Cl nuclei are related to movements inside the cavity. In the presence of L-Phe, the anions bind to the metal with a relatively high affinity at pH values below 6. Anion binding to the Co enzyme can be analyzed in terms of the three protonation state model for the enzyme (EH2 α EH α E). In the presence of L-Phe, Cl- binds to EH2 but not to EH or E while N3- binds ∼ 34 times tighter to EH2 than EH, while binding to E is undetectable. The pH-binding constant profile for N3- binding to the Co(II)CPD·L-Phe complex is characterized by pKa values of 5.3 and 7.6. The lower value corresponds to the pKa of the group that characterizes the pH-kcat profile for Co(II)CPD while the higher pKa likely reflects the group that characterizes the pH-pKm profile in the alkaline pH region. This group has a pKa of 8.9 in the Co and native enzymes but is shifted to 7.6 in the presence of L-Phe. The present results in conjunction with prior spectral and kinetic studies suggest azide preferentially binds to the enzyme when L-Phe has its amino group protonated. The highly synergistic binding between L-Phe to the active site and azide to the metal may be viewed as caused by replacement of the Glu-270 metal-water hydrogen-bonding network by an electrostatic interaction between ionized Glu-270 and the protonated amino group of L-Phe. Thus, the formation of this E·I species allows ready displacement of the metal bound water by azide. © 1990.
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页码:9 / 16
页数:8
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