Department of Molecular Biology, Maria Curie-Skłodowska University, Akademicka 19, 20-033 Lublin, Poland.
Biochemistry. 2010 Feb 9;49(5):924-33. doi: 10.1021/bi901811s.
The landing platform for the translational GTPases is located on the 60S ribosomal subunit and is referred to as a GTPase-associated center. The most distinctive feature of this center is an oligomeric complex, the stalk, responsible for the recruitment of translation factors and stimulation of translation factor-dependent GTP hydrolysis. In eukaryotes, the stalk has been investigated in vitro and in vivo, but most information available concerns its individual components only. In the present study, we provide an insight into the biophysical nature of the native stalk isolated from the yeast Saccharomyces cerevisiae. Using fluorescence, circular dichroism, and mass spectrometry analyses, we were able to characterize the natively formed yeast stalk, casting new light on the oligomeric properties of the complex and its quaternary topology, showing that folding and assembly are coupled processes. The pentameric stalk is an exceptionally stable structure with the protein core composed of P0, P1A, and P2B proteins and less tightly bound P1B and P2A capable of dissociating from the stalk core. We obtained also the whole picture of the posttranslational modifications at the logarithmic phase of yeast growth, using mass spectrometry approach, where P proteins are phosphorylated at a single serine residue, P0 may accept two phosphate groups, and P1A none. Additionally, only P1B undergoes N-terminal acetylation after prior methionine removal.
翻译平台位于翻译 GTPases 上,位于 60S 核糖体亚基上,被称为 GTPase 相关中心。该中心最显著的特征是寡聚复合物,茎干,负责招募翻译因子并刺激翻译因子依赖的 GTP 水解。在真核生物中,已经在体外和体内研究了茎干,但大多数可用的信息仅涉及其各个成分。在本研究中,我们深入了解了从酵母酿酒酵母中分离出的天然茎干的生物物理性质。使用荧光、圆二色性和质谱分析,我们能够表征天然形成的酵母茎干,为该复合物的寡聚性质及其四级拓扑结构提供了新的认识,表明折叠和组装是耦合过程。五聚体茎干是一种异常稳定的结构,其蛋白质核心由 P0、P1A 和 P2B 蛋白组成,与核心结合不太紧密的 P1B 和 P2A 能够从茎干核心解离。我们还使用质谱方法获得了酵母生长对数期翻译后修饰的全貌,其中 P 蛋白在单个丝氨酸残基上磷酸化,P0 可能接受两个磷酸基团,而 P1A 则没有。此外,只有 P1B 在甲硫氨酸去除后经历 N 端乙酰化。