Lam S S, Schimmel P R
Biochemistry. 1975 Jun 17;14(12):2775-80. doi: 10.1021/bi00683a034.
The interaction of Escherichia coli isoleucyl-tRNA synthetase with its cognate and five noncognate tRNAs, and of yeast valyl-tRNA synthetase with its cognate and four noncognate tRNAs, has been measured directly by fluorescence quenching. The cognate associations are strongest (association constant of 10(8) M-1 or more at pH 5.5, 17 degrees). A wide variation is found in the strengths of the noncognate interactions; these have association constants smaller than that of these cognate association by a factor of less than 10 to over 10(4), depending on the enzyme-t-RNA pair. A more detailed study of the cognate isoleucyl-tRNA synthetase-tRNAIle association suggests that the strength of the interaction is markedly sensitive to a pH-dependent transition in the enzyme centered at pH 6 on the other hand, Mg2+-induced structural changes in tRNAIle at 17 degrees in low salt do not greatly affect the availability of the nucleic acid's receptor sites for enzyme...
通过荧光猝灭法直接测定了大肠杆菌异亮氨酰 - tRNA合成酶与其同源及五种非同源tRNA的相互作用,以及酵母缬氨酰 - tRNA合成酶与其同源及四种非同源tRNA的相互作用。同源结合最强(在pH 5.5、17℃时结合常数为10⁸ M⁻¹或更高)。非同源相互作用的强度存在很大差异;其结合常数比同源结合的结合常数小,小的倍数从小于10到超过10⁴,这取决于酶 - tRNA对。对同源异亮氨酰 - tRNA合成酶 - tRNAIle结合的更详细研究表明,相互作用的强度对以pH 6为中心的酶中pH依赖性转变非常敏感,另一方面,在低盐条件下17℃时Mg²⁺诱导的tRNAIle结构变化对核酸受体位点与酶的可及性影响不大……