Hagihara H, Horie K, Wada A, Fukutome H
Biophys Chem. 1984 Mar;19(2):147-61. doi: 10.1016/0301-4622(84)85015-2.
Escherichia coli ribosome released protons upon addition of Mg2+. The Mg2+-induced proton release was studied by means of the pH-stat technique. The number of protons released from a 70 S ribosome in the Mg2+ concentration range 1-20 mM was about 30 at pH 7 and 7.6, and increased to about 40 at pH 6.5. The rRNA mixture extracted from 70 S ribosome showed proton release of amount and of pH dependence similar to those of the 70 S ribosome but the ribosomal protein mixture released few. This indicates that rRNA is the main source of the protons released from ribosome. The pH titration of rRNA showed that the pKa values of nucleotide bases were downward shifted upon Mg2+ binding. This pKa shift can account for the proton release. The Scatchard plots of proton release from rRNA and ribosome were concave upward, showing that the Mg2+-binding sites leading to proton release were either heterogeneous or had a negative cooperativity. A model assuming heterogeneous Mg2+-binding sites is shown to be unable to explain the proton release. Electrostatic field effect models are proposed in which Mg2+ modulates the electrostatic field of phosphate groups and the potential change induces a shift of the pKa values of bases that leads to the proton release. These models can explain the main features of the proton release.
加入Mg2+后,大肠杆菌核糖体释放质子。采用pH计技术研究了Mg2+诱导的质子释放。在1-20 mM的Mg2+浓度范围内,70S核糖体在pH 7和7.6时释放的质子数约为30个,在pH 6.5时增加到约40个。从70S核糖体中提取的rRNA混合物显示出与70S核糖体相似的质子释放量和pH依赖性,但核糖体蛋白质混合物释放的质子很少。这表明rRNA是核糖体释放质子的主要来源。rRNA的pH滴定表明,Mg2+结合后核苷酸碱基的pKa值向下移动。这种pKa移动可以解释质子的释放。rRNA和核糖体释放质子的Scatchard图向上凹,表明导致质子释放的Mg2+结合位点要么是异质的,要么具有负协同性。一个假设异质Mg2+结合位点的模型被证明无法解释质子的释放。提出了静电场效应模型,其中Mg2+调节磷酸基团的静电场,电位变化导致碱基pKa值的移动,从而导致质子释放。这些模型可以解释质子释放的主要特征。