Cannon M
Biochem J. 1967 Sep;104(3):934-46. doi: 10.1042/bj1040934.
The properties of a site, on Escherichia coli ribosomes, which binds peptidyl-s-RNA (where s-RNA refers to ;soluble' or transfer RNA) have been investigated. The binding is stable both in low Mg(2+) concentration (0.1mm), and in high Mg(2+) concentration (10mm) in the absence or presence of potassium chloride (86mm). Puromycin has been used to break the bond between the s-RNA and the polypeptide, and in the absence of further protein synthesis this technique exposes free s-RNA molecules on the ribosomes. The s-RNA exposed remains bound in high Mg(2+) concentration, but the binding is unstable in high Mg(2+) concentration with potassium chloride and the s-RNA can be freed completely from the ribosomes by lowering the Mg(2+) concentration. It can also be displaced by s-RNA in the medium. It is suggested that this ribosomal binding site for peptidyl-s-RNA is the site for peptide bond formation. Further, it is proposed that it is the same site that can be demonstrated on ribosomes not engaged in protein synthesis and that, in high Mg(2+) concentration, will bind s-RNA molecules charged or uncharged with amino acids.
对大肠杆菌核糖体上结合肽基-s-RNA(其中s-RNA指“可溶性”或转移RNA)的位点特性进行了研究。在低镁离子浓度(0.1mM)以及高镁离子浓度(10mM)下,无论有无氯化钾(86mM)存在,这种结合都是稳定的。嘌呤霉素已被用于断裂s-RNA与多肽之间的键,并且在没有进一步蛋白质合成的情况下,该技术会使核糖体上的游离s-RNA分子暴露出来。暴露的s-RNA在高镁离子浓度下仍保持结合状态,但在有氯化钾存在的高镁离子浓度下,这种结合不稳定,通过降低镁离子浓度,s-RNA可从核糖体上完全释放出来。它也可被培养基中的s-RNA取代。有人提出,这个肽基-s-RNA的核糖体结合位点是肽键形成的位点。此外,有人认为,在未参与蛋白质合成的核糖体上也能证明存在相同的位点,并且在高镁离子浓度下,该位点会结合带或不带氨基酸的s-RNA分子。