A THERMODYNAMIC STUDY OF THE TRP REPRESSOR-OPERATOR INTERACTION

被引:185
作者
LADBURY, JE
WRIGHT, JG
STURTEVANT, JM
SIGLER, PB
机构
[1] YALE UNIV, DEPT MOLEC BIOPHYS & BIOCHEM, NEW HAVEN, CT 06510 USA
[2] YALE UNIV, HOWARD HUGHES MED INST, NEW HAVEN, CT 06510 USA
[3] YALE UNIV, DEPT CHEM, NEW HAVEN, CT 06510 USA
关键词
CALORIMETRY; HEAT CAPACITY; MOLECULAR RECOGNITION; TRP REPRESSOR; TRP OPERATOR;
D O I
10.1006/jmbi.1994.1328
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
We have measured the heats of formation of the trp repressor/operator complex by direct titration calorimetry over the temperature range 10°C to 40°C. A primary strong mode of binding displays the characteristic large negative heat capacity change observed by other methods in the formation of specific protein/DNA complexes. Unlike most such reactions, however, the formation of the trp repressor/operator complex is enthalpically driven throughout the physiological temperature range. After saturation of this principal mode, we also detected a secondary weaker binding mode, which we ascribe to a now well documented interaction called “half-site” binding. Although weak, this mode also exhibits an unusually large negative heat capacity change. Since the interface of the proposed secondary half-site binding mode has the same complementary stereochemistry as the primary one (due to internal symmetry), we correlate the negative heat capacity change with the formation of a stereospecific interface and not with high affinity. As in similar cases, the empirical correlation between buried non-polar surfaces and reduction of heat capacity does not account for the large negative ΔC(p), nor do crystal structures reveal any further reduction in solvent excluded surfaces within the reactants upon complex formation. We attribute the “unaccounted for” decrement in the heat capacity of the complex to the stereospecific restriction of the hydrated polar elements that form the specific interface. We suggest that the “tightening of soft internal modes” at and near the polar interface of the complex is more important than previously recognized because previous considerations did not take into account the highly hydrated nature of these polar elements and the concomitant reduction in the degrees of freedom of the water structure. © 1994 Academic Press Limited.
引用
收藏
页码:669 / 681
页数:13
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