Mayr L M, Willbold D, Rösch P, Schmid F X
Laboratorium für Biochemie, Universität Bayreuth, Germany.
J Mol Biol. 1994 Jul 22;240(4):288-93. doi: 10.1006/jmbi.1994.1446.
The cis conformation of the 38-39 peptide bond of ribonuclease T1 is retained after the replacement of cis Pro39 by an alanine residue. This conformation is demonstrated by the presence of a NOESY cross-peak in the NMR spectrum between the C alpha protons of Tyr38 and Ala39 in the Pro39-->Ala variant. The presence of this non-prolyl cis peptide bond explains the retention of the catalytic activity, the strong decrease in stability and the changes in the folding mechanism that were observed after the Pro39-->Ala mutation in ribonuclease T1. We suggest that a cis peptide bond is retained in a protein after the substitution of a cis proline at positions, where a trans bond would destabilize the protein more strongly than a non-prolyl peptide bond in the energetically unfavourable cis conformation.
在核糖核酸酶T1中,脯氨酸39(Pro39)被丙氨酸残基取代后,核糖核酸酶T1的38 - 39肽键的顺式构象得以保留。在Pro39→Ala变体中,核磁共振谱(NMR)中酪氨酸38(Tyr38)和丙氨酸39(Ala39)的Cα质子之间存在核欧沃豪斯效应(NOESY)交叉峰,证明了这种构象的存在。这种非脯氨酰顺式肽键的存在解释了在核糖核酸酶T1中Pro39→Ala突变后观察到的催化活性保留、稳定性大幅下降以及折叠机制的变化。我们认为,在某些位置上,当反式键比处于能量不利的顺式构象的非脯氨酰肽键更强烈地使蛋白质不稳定时,顺式脯氨酸被取代后,蛋白质中会保留一个顺式肽键。