Jung Hyo-Il, Bowden Simon J, Cooper Alan, Perham Richard N
Cambridge Centre for Molecular Recognition, Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge CB2 1GA, UK.
Protein Sci. 2002 May;11(5):1091-100. doi: 10.1110/ps.4970102.
The peripheral subunit-binding domain (PSBD) of the dihydrolipoyl acetyltransferase (E2, EC 2.3.1.12) binds tightly but mutually exclusively to dihydrolipoyl dehydrogenase (E3, EC 1.8.1.4) and pyruvate decarboxylase (E1, EC 1.2.4.1) in the pyruvate dehydrogenase multienzyme complex of Bacillus stearothermophilus. Isothermal titration calorimetry (ITC) experiments demonstrated that the enthalpies of binding (DeltaH degrees ) of both E3 and E1 with the PSBD varied with salt concentration, temperature, pH, and buffer composition. There is little significant difference in the free energies of binding (DeltaG degrees = -12.6 kcal/mol for E3 and = -12.9 kcal/mol for E1 at pH 7.4 and 25 degrees C). However, the association with E3 was characterized by a small, unfavorable enthalpy change (DeltaH degrees = +2.2 kcal/mol) and a large, positive entropy change (TDeltaS degrees = +14.8 kcal/mol), whereas that with E1 was accompanied by a favorable enthalpy change (DeltaH degrees = -8.4 kcal/mol) and a less positive entropy change (TDeltaS degrees = +4.5 kcal/mol). Values of DeltaC(p) of -316 cal/molK and -470 cal/molK were obtained for the binding of E3 and E1, respectively. The value for E3 was not compatible with the DeltaC(p) calculated from the nonpolar surface area buried in the crystal structure of the E3-PSBD complex. In this instance, a large negative DeltaC(p) is not indicative of a classical hydrophobic interaction. In differential scanning calorimetry experiments, the midpoint melting temperature (T(m)) of E3 increased from 91 degrees C to 97.1 degrees C when it was bound to PSBD, and that of E1 increased from 65.2 degrees C to 70.0 degrees C. These high T(m) values eliminate unfolding as a major source of the anomalous DeltaC(p) effects at the temperatures (10-37 degrees C) used for the ITC experiments.
嗜热脂肪芽孢杆菌丙酮酸脱氢酶多酶复合体中的二氢硫辛酰乙酰转移酶(E2,EC 2.3.1.12)的外周亚基结合结构域(PSBD)与二氢硫辛酰脱氢酶(E3,EC 1.8.1.4)和丙酮酸脱羧酶(E1,EC 1.2.4.1)紧密结合,但二者互斥。等温滴定量热法(ITC)实验表明,E3和E1与PSBD结合的焓变(ΔH°)会随盐浓度、温度、pH值和缓冲液组成而变化。在pH 7.4和25℃条件下,二者结合的自由能(ΔG°)差异不大(E3为-12.6 kcal/mol,E1为-12.9 kcal/mol)。然而,E3与PSBD的结合表现为较小的不利焓变(ΔH° = +2.2 kcal/mol)和较大的正熵变(TΔS° = +14.8 kcal/mol),而E1与PSBD的结合则伴随着有利的焓变(ΔH° = -8.4 kcal/mol)和较小的正熵变(TΔS° = +4.5 kcal/mol)。E3和E1结合的ΔC(p)值分别为-316 cal/molK和-470 cal/molK。E3的该值与根据E3-PSBD复合体晶体结构中埋藏的非极性表面积计算出的ΔC(p)不相符。在这种情况下,较大的负ΔC(p)并不表示典型的疏水相互作用。在差示扫描量热法实验中,E3与PSBD结合时,其熔点中点温度(T(m))从91℃升高至97.1℃,E1与PSBD结合时,其熔点中点温度从65.2℃升高至70.0℃。这些较高的T(m)值排除了在ITC实验所用温度(10 - 37℃)下,解折叠是异常ΔC(p)效应的主要来源。