Perona J J, Swanson R N, Rould M A, Steitz T A, Söll D
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06511.
Science. 1989 Dec 1;246(4934):1152-4. doi: 10.1126/science.2686030.
A single-site mutant of Escherichia coli glutaminyl-synthetase (D235N, GlnRS7) that incorrectly acylates in vivo the amber suppressor supF tyrosine transfer RNA (tRNA(Tyr] with glutamine has been described. Two additional mutant forms of the enzyme showing this misacylation property have now been isolated in vivo (D235G, GlnRS10; I129T, GlnRS15). All three mischarging mutant enzymes still retain a certain degree of tRNA specificity; in vivo they acylate supE glutaminyl tRNA (tRNA(Gln] and supF tRNA(Tyr) but not a number of other suppressor tRNA's. These genetic experiments define two positions in GlnRS where amino acid substitution results in a relaxed specificity of tRNA discrimination. The crystal structure of the GlnRS:tRNA(Gln) complex provides a structural basis for interpreting these data. In the wild-type enzyme Asp235 makes sequence-specific hydrogen bonds through its side chain carboxylate group with base pair G3.C70 in the minor groove of the acceptor stem of the tRNA. This observation implicates base pair 3.70 as one of the identity determinants of tRNA(Gln). Isoleucine 129 is positioned adjacent to the phosphate of nucleotide C74, which forms part of a hairpin structure adopted by the acceptor end of the complexed tRNA molecule. These results identify specific areas in the structure of the complex that are critical to accurate tRNA discrimination by GlnRS.
已经描述了大肠杆菌谷氨酰胺合成酶的一个单点突变体(D235N,GlnRS7),该突变体在体内会错误地用谷氨酰胺酰化琥珀抑制子supF酪氨酸转运RNA(tRNA(Tyr])。现在已经在体内分离出另外两种具有这种错酰化特性的酶突变形式(D235G,GlnRS10;I129T,GlnRS15)。所有这三种错充突变酶仍保留一定程度的tRNA特异性;在体内它们酰化supE谷氨酰胺tRNA(tRNA(Gln])和supF tRNA(Tyr),但不酰化许多其他抑制子tRNA。这些遗传学实验确定了GlnRS中的两个位置,氨基酸取代导致tRNA识别的特异性降低。GlnRS:tRNA(Gln)复合物的晶体结构为解释这些数据提供了结构基础。在野生型酶中,Asp235通过其侧链羧基在tRNA受体茎小沟中与碱基对G3.C70形成序列特异性氢键。这一观察结果表明碱基对3.70是tRNA(Gln)的识别决定因素之一。异亮氨酸129位于核苷酸C74的磷酸附近,C74是复合tRNA分子受体末端所采用的发夹结构的一部分。这些结果确定了复合物结构中对GlnRS准确识别tRNA至关重要的特定区域。