Savageau M A, Freter R R
Proc Natl Acad Sci U S A. 1979 Sep;76(9):4507-10. doi: 10.1073/pnas.76.9.4507.
Aminoacylation of tRNA occurs with a high degree of accuracy in many cases because misacylated molecules are effectively proofread on the aminoacyl-tRNA synthetase by preferential hydrolysis. This hydrolysis releases an ATP equivalent of energy. An explicit relationship between cost of proofreading and the resulting degree of accuracy is presented. Experimental data from Escherichia coli for isoleucyl-tRNA synthetase proofreading valyl-tRNAIle are examined by means of this relationship, and a conjecture concerning the natural selection of accuracy and proofreading costs is put forth and tested. We have found the energy cost of accurate proofreading to be high. The minimum error, derived in previous theoretical studies, is never actually reached. Instead, higher values, determined by the balance between energy wasted in the cell as a consequence of error and the energy cost of proofreading, appear to be selected. The total cost of proofreading all types of tRNA aminoacylations is estimated to be approximately 2% of the energy required to synthesize a bacterial cell.
在许多情况下,tRNA的氨酰化过程具有高度准确性,因为错误氨酰化的分子会在氨酰-tRNA合成酶上通过优先水解被有效地校正。这种水解会释放出相当于ATP的能量。文中给出了校正成本与最终准确性程度之间的明确关系。利用这种关系对来自大肠杆菌的异亮氨酰-tRNA合成酶校正缬氨酰-tRNAIle的实验数据进行了检验,并提出并检验了一个关于准确性和校正成本自然选择的猜想。我们发现准确校正的能量成本很高。在先前的理论研究中得出的最小误差实际上从未达到。相反,似乎选择了由细胞中因错误而浪费的能量与校正的能量成本之间的平衡所决定的更高值。据估计,校正所有类型tRNA氨酰化的总成本约占合成一个细菌细胞所需能量的2%。