Naaktgeboren N, Vermaas A, Voorma H O
Eur J Biochem. 1975 Sep 15;57(2):493-51. doi: 10.1111/j.1432-1033.1975.tb02324.x.
The study undertaken in this paper on the mode of action of thiostrepton provides data which permit a more precise localization of the main target of thiostrepton. There is severe impairment of the joining of the 50-S subunit, probably carrying thiostrepton, with either the 30-S subunit or the 30-S initiation complex. The degree of impairment of this coupling is temperature dependent, being almost completely inhibited at 0 degrees C, whereas at 37 degrees C the effect is much less marked, provided that natural messenger RNA is present. The inhibition of initiation by thiostrepton is more severe in the presence of IF-1, a factor, which similar to thiostrepton, is able to shift the dynamic equilibrium of 70-S in equilibrium 50-S + 30-S more towards dissociation. By means of 14C-labeled IF-2 it is demonstrated that the binding of IF-2 into the 70-S initiation complex is prevented by thiostrepton, which seems to be the main cause for non-coupling.
本文对硫链丝菌素作用模式的研究提供了一些数据,这些数据能更精确地定位硫链丝菌素的主要作用靶点。携带硫链丝菌素的50-S亚基与30-S亚基或30-S起始复合物的结合受到严重损害。这种偶联的受损程度取决于温度,在0℃时几乎完全被抑制,而在37℃时,只要存在天然信使核糖核酸,其作用就不那么明显。在IF-1存在的情况下,硫链丝菌素对起始的抑制作用更严重,IF-1这个因子与硫链丝菌素类似,能够使70-S在50-S + 30-S平衡中的动态平衡更多地向解离方向移动。通过14C标记的IF-2证明,硫链丝菌素可阻止IF-2与70-S起始复合物的结合,这似乎是未偶联的主要原因。