Xiong L, Polacek N, Sander P, Böttger E C, Mankin A
RNA. 2001 Oct;7(10):1365-9.
The universally conserved A2451 of 23S rRNA has been proposed to participate directly in the catalysis of peptide bond formation in the ribosomal peptidyl transferase center. An unusually high, near neutral, pKa of A2451 is a prerequisite for its action as a general acid-base catalyst. Increased reactivity of A2451 to dimethylsulfate (DMS) at pH 8.5 compared to pH 6.5 was taken as evidence that the pKa of this nucleotide falls within this pH range. Structural data suggested that the interaction between A2451 and G2447 in the ribosome is responsible for A2451 pKa perturbation. In contrast to expectation, our studies did not show pH dependence of A2451 dimethylsulfate modification in ribosomes of Thermus aquaticus and Mycobacterium smegmatis. Other rRNA regions, however, showed major alterations in DMS reactivity at pH 8.5 compared to pH 6.5, suggesting that conformational rearrangements in the structure of the large ribosomal subunit may occur upon the pH shift. The G2447U mutant of M. smegmatis was viable, indicating that the G2447-A2451 interaction is not critical for the ribosome function. We concluded that the proposed unusual pKa of A2451, if existing, may not be crucial for the ribosome activity and that the previously reported pH-dependent alterations in the DMS modification of A2451 do not necessarily reveal an unusual pKa of this nucleotide.
23S rRNA中普遍保守的A2451被认为直接参与核糖体肽基转移酶中心肽键形成的催化过程。A2451异常高且接近中性的pKa是其作为一般酸碱催化剂发挥作用的前提条件。与pH 6.5相比,A2451在pH 8.5时对硫酸二甲酯(DMS)的反应性增加,这被视为该核苷酸的pKa落在这个pH范围内的证据。结构数据表明,核糖体中A2451与G2447之间的相互作用导致了A2451 pKa的扰动。与预期相反,我们的研究并未显示嗜热栖热菌和耻垢分枝杆菌核糖体中A2451硫酸二甲酯修饰的pH依赖性。然而,与pH 6.5相比,其他rRNA区域在pH 8.5时DMS反应性出现了重大变化,这表明在pH值变化时,大核糖体亚基的结构可能会发生构象重排。耻垢分枝杆菌的G2447U突变体是可行的,这表明G2447 - A2451相互作用对核糖体功能并不关键。我们得出结论,所提出的A2451异常pKa(如果存在)可能对核糖体活性并不关键,并且先前报道的A2451 DMS修饰中pH依赖性变化不一定揭示该核苷酸的异常pKa。