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DESTABILIZATION OF A PROTEIN HELIX BY ELECTROSTATIC INTERACTIONS

机译:静电相互作用对蛋白质螺旋的破坏作用

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Electrostatic interactions between charged residues and the helix dipole in a protein were investigated by protein engineering methods. In ribonuclease T-1, two surface-exposed acidic residues (Glu28 and Asp29) are located near the carboxyl terminus of the cc-helix between residues 13 and 29. They were replaced, individually and in concert, by the uncharged amides Gln28 and Asn29, and the stabilities of the wild-type protein and its variants were determined as a function of pH. The effects of the two mutations are additive. Either one leads to a marginal destabilization by 0.7 kJ/mol at pH 2 but to a strong stabilization by about 3.2 kJ/mol at pH 7. This suggests that the deprotonations of Glu28 and Asp29 reduce the free energy of stabilization of folded ribonuclease T-1 by about 4 kJ/mol each. This destabilization is probably caused by unfavorable electrostatic interactions of Glu28 and Asp29 with the negative end of the helix dipole. The activation energies for the unfolding of the different variants of ribonuclease T-1 change in parallel with the differences in the thermodynamic stability when the pH is varied. This indicates that the unfavorable electrostatic interactions of Glu28 and Asp29 are lost very early in unfolding, and are not present in the activated state of unfolding. (C) 1995 Academic Press Limited [References: 49]
机译:通过蛋白质工程方法研究了蛋白质中带电残基和螺旋偶极之间的静电相互作用。在核糖核酸酶T-1中,两个表面暴露的酸性残基(Glu28和Asp29)位于残基13和29之间的cc螺旋羧基末端附近。它们分别被一致地取代为不带电荷的酰胺Gln28和Asn29 ,并确定了野生型蛋白及其变体的稳定性与pH的关系。这两个突变的影响是累加的。任一种都会导致在pH 2时边际去稳定化为0.7 kJ / mol,但在pH 7时会稳定地以约3.2 kJ / mol稳定化。这表明Glu28和Asp29的去质子化降低了折叠核糖核酸酶T-稳定化的自由能。分别为1 x 4 kJ / mol。这种不稳定可能是由于Glu28和Asp29与螺旋偶极子负极的不利静电相互作用引起的。当改变pH时,用于核糖核酸酶T-1的不同变体的展开的活化能与热力学稳定性的差异平行地变化。这表明Glu28和Asp29的不利的静电相互作用在展开时很早就消失了,并且在展开的活化状态中不存在。 (C)1995 Academic Press Limited [参考号:49]

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