KINETICS OF THE EQUILIBRATION OF OXYGEN WITH MONOMERIC AND OCTAMERIC HEMERYTHRIN FROM THEMISTE-ZOSTERICOLA

被引:33
作者
PETROU, AL [1 ]
ARMSTRONG, FA [1 ]
SYKES, AG [1 ]
HARRINGTON, PC [1 ]
WILKINS, RG [1 ]
机构
[1] NEW MEXICO STATE UNIV, DEPT CHEM, LAS CRUCES, NM 88003 USA
关键词
D O I
10.1016/0005-2795(81)90110-0
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
Single relaxations for the equilibration of O2 with monomeric and octameric deoxy forms of hemerythrin from T. zostericola were observed at 25.degree. C using the temperature-jump technique. At 25.degree. C, pH 8.2 (Tris/H2SO4) and I = 0.10 M (Na2SO4), formation rate constants kon are 7.8 .cntdot. 107 M-1 .cntdot. s-1 and 7.5 .cntdot. 106 M-1 s-1, respectively. The procedure used does not give a precise measure (small intercepts) of dissociation rate constants, koff. These were determined instead by the stopped-flow method using dithionite to induce dissociation of the oxy protein. Values of koff for the monomer (3.1 .cntdot. 102 s-1) and octamer (82 s-1), in association with kon values, lead to equilibrium constants for the formation of oxyhemerythrin of 2.5 .cntdot. 105 M-1 and 0.9 .cntdot. 105 M-1, respectively, at 25.degree. C, pH 8.2 and I = 0.10 M (Na2SO4). These latter are in reasonable agreement with values (1.5 105 .cntdot. M-1 and 1.3 .cntdot. 105 M-1) determined spectrally on the equilibrated solutions. Using the octameric protein, it was shown that replacement of SO42- by ClO4- or Cl- ions (at a constant I = 0.10 M) led to .apprx. 2-fold enhancement of kon but had little effect on koff. The addition of Ca2+ or Mg2+ ions (0.01 M), with or without 0.50 M NaCl, also gives up to 4-fold increases in kon, but unchanged koff values. O2 pulse experiments on the octamer show no effect on koff of the degree of oxygenation of the protein. A comparison is made with similar data for Hb, myoglobin and hemocyanin.
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页码:377 / 384
页数:8
相关论文
共 46 条
[21]   CONTRIBUTION OF ALPHA AND BETA CHAINS TO KINETICS OF OXYGEN BINDING TO AND DISSOCIATION FROM HEMOGLOBIN [J].
GIBSON, QH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1973, 70 (01) :1-4
[22]  
HENDRICKSON WA, 1978, NAV RES REV, V31, P1
[23]   MERCAPTAN INVOLVEMENT IN DISSOCIATION AND RECONSTITUTION OF HEMERYTHRIN [J].
KERESZTESNAGY, S ;
KLOTZ, IM .
BIOCHEMISTRY, 1963, 2 (05) :923-&
[24]  
KLIPPENSTEIN GL, 1972, J BIOL CHEM, V247, P5959
[25]   HEMERYTHRIN - ALTERNATIVE OXYGEN CARRIER [J].
KLOTZ, IM ;
KLIPPENSTEIN, GL ;
HENDRICKSON, WA .
SCIENCE, 1976, 192 (4237) :335-344
[26]   HEMERYTHRIN - MOLECULAR WEIGHT AND DISSOCIATION INTO SUBUNITS [J].
KLOTZ, IM ;
KERESZTESY, S .
BIOCHEMISTRY, 1963, 2 (03) :445-&
[27]   THE NATURE OF THE ACTIVE SITE OF HEMERYTHRIN [J].
KLOTZ, IM ;
KLOTZ, TA ;
FIESS, HA .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1957, 68 (02) :284-299
[28]  
KURTZ DM, 1977, COORDIN CHEM REV, V24, P145
[29]  
LOEHR JS, 1979, ADV INORG BIOCHEM, V1, P235
[30]   ROLE OF COELOMIC HEMERYTHRIN IN SIPUNCULID WORM PHASCOLOPIS-GOULDI [J].
MANGUM, CP ;
KONDON, M .
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-PHYSIOLOGY, 1975, 50 (NA4) :777-&