Lupker J H, Verschoor G J, de Rooij F W, Rörsch A, Bosch L
Proc Natl Acad Sci U S A. 1974 Feb;71(2):460-3. doi: 10.1073/pnas.71.2.460.
A thermosensitive mutant of Escherichia coli has been isolated that is unable to replicate the bacteriophage MS2 at 42 degrees but permits phage production at 37 degrees . Thermal inactivation studies of the supernatant enzymes show that this mutant contains a factor essential for the polymerization of phenylalanine from phenylalanyl-tRNA that at 50 degrees is more rapidly inactivated than the corresponding wild-type factor. The elongation factor Tu (EF-Tu) was isolated and purified to apparent homogeneity as the EF-Tu.GDP complex, both from mutant and wild-type cells. Addition of purified wild-type EF-Tu.GDP to reaction mixtures fully restored the activity of thermally inactivated mutant supernatants. These experiments excluded EF-Ts as the thermolabile factor involved. Similar inactivation studies, dealing with the purified factors and performed in reaction mixtures that were not supplemented with GDP, revealed that the half-life of mutant EF-Tu.GDP at 50 degrees was 1.5 min, that of the wild-type factor 6 min. Addition of GDP (10muM) to the medium reduced the inactivation rate of both wild-type and mutant factor and also the difference in inactivation kinetics. Besides the altered elongation factor Tu, the mutant skill contains a second mutation affecting the glutaminyl-tRNA synthetase.
已分离出大肠杆菌的一种热敏突变体,它在42℃时无法复制噬菌体MS2,但在37℃时能产生噬菌体。对上清液酶的热失活研究表明,该突变体含有一种对苯丙氨酰 - tRNA聚合形成苯丙氨酸至关重要的因子,在50℃时,该因子比相应的野生型因子失活更快。从突变体和野生型细胞中分离并纯化出延伸因子Tu(EF - Tu),使其以EF - Tu.GDP复合物的形式达到明显的均一性。向反应混合物中添加纯化的野生型EF - Tu.GDP可完全恢复热失活的突变体上清液的活性。这些实验排除了EF - Ts作为所涉及的热不稳定因子。对纯化因子进行的类似失活研究,在未添加GDP的反应混合物中进行,结果表明突变体EF - Tu.GDP在50℃时的半衰期为1.5分钟,野生型因子的半衰期为6分钟。向培养基中添加GDP(10μM)可降低野生型和突变型因子的失活速率以及失活动力学的差异。除了延伸因子Tu发生改变外,该突变体菌株还含有影响谷氨酰胺 - tRNA合成酶的第二个突变。