The alanyl-s-RNA synthetase of tomato roots has been purified by ammonium sulphate precipitation, adsorption on calcium phosphate gel and DEAE-cellulose chromatography and its properties have been investigated. 2. Enzyme activity was measured by using the hydroxamate assay, the [(32)P]pyrophosphate-ATP-exchange assay and the [(14)C]alanyl-s-RNA assay. The purified enzyme was specific for l-alanine and was activated by Mg(2+) ions and to a smaller extent by Co(2+) and Mn(2+) ions. It was free from adenosine triphosphatase, pyrophosphatase and ribonuclease, and possessed a specific activity comparable with that of the most highly purified aminoacyl-s-RNA synthetases from animal and microbial systems. 3. The properties of the purified enzyme were similar in many respects to most other highly purified aminoacyl-s-RNA synthetases. It differed, however, in that the pH optimum of the hydroxamate assay was almost the same as that of the pyrophosphate-ATP-exchange assay and in requiring a high concentration of l-alanine for maximum activity (100mumoles/ml.). 4. The purified enzyme was not absolutely specific for tomato-root s-RNA; slight activity was also observed with yeast s-RNA. 5. The properties of this enzyme are fully consistent with the suggestion that the enzymic formation of alanyl-s-RNA proceeds via the intermediate formation of alanyl acyl-adenylate with the elimination of pyrophosphate from ATP. It remains to be shown the extent to which alanyl-s-RNA participates further in subsequent stages of protein synthesis in plants.
摘要
番茄根中的丙氨酰 - s - RNA合成酶已通过硫酸铵沉淀、磷酸钙凝胶吸附及DEAE - 纤维素色谱法进行了纯化,并对其性质进行了研究。2. 酶活性通过异羟肟酸测定法、[(32)P]焦磷酸 - ATP交换测定法及[(14)C]丙氨酰 - s - RNA测定法进行测量。纯化后的酶对L - 丙氨酸具有特异性,并被Mg(2+)离子激活,在较小程度上也被Co(2+)和Mn(2+)离子激活。它不含腺苷三磷酸酶、焦磷酸酶和核糖核酸酶,其比活性与来自动物和微生物系统的纯化程度最高的氨酰 - s - RNA合成酶相当。3. 纯化后酶的性质在许多方面与大多数其他高度纯化的氨酰 - s - RNA合成酶相似。然而,它的不同之处在于,异羟肟酸测定法的最适pH值与焦磷酸 - ATP交换测定法的几乎相同,并且最大活性需要高浓度的L - 丙氨酸(100微摩尔/毫升)。4. 纯化后的酶对番茄根s - RNA并非绝对特异性;对酵母s - RNA也观察到了轻微活性。5. 这种酶的性质完全符合以下推测,即丙氨酰 - s - RNA的酶促形成是通过丙氨酰酰基 - 腺苷酸的中间形成以及ATP中焦磷酸的消除来进行的。丙氨酰 - s - RNA在植物蛋白质合成后续阶段进一步参与的程度仍有待确定。