Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Científicas and Universidad Autónoma de Madrid, 28049 Madrid, Spain.
Nucleic Acids Res. 2012 May;40(10):4520-9. doi: 10.1093/nar/gks036. Epub 2012 Jan 24.
The ribosomal stalk is formed by four acidic phosphoproteins in Saccharomyces cerevisiae, P1α, P1β, P2α and P2β, which form two heterodimers, P1α/P2β and P1β/P2α, that preferentially bind to sites A and B of the P0 protein, respectively. Using mutant strains carrying only one of the four possible P1/P2 combinations, we found a specific phenotype associated to each P1/P2 pair, indicating that not all acidic P proteins play the same role. The absence of one P1/P2 heterodimer reduced the rate of cell growth by varying degrees, depending on the proteins missing. Synthesis of the 60S ribosomal subunit also decreased, particularly in strains carrying the unusual P1α-P2α or P1β-P2β heterodimers, although the distinct P1/P2 dimers are bound with similar affinity to the mutant ribosome. While in wild-type strains the B site bound P1β/P2α in a highly specific manner and the A site bound the four P proteins similarly, both the A and B binding sites efficiently bound practically any P1/P2 pair in mutant strains expressing truncated P0 proteins. The reported results support that while most ribosomes contain a P1α/P2β-P0-P1β/P2α structure in normal conditions, the stalk assembly mechanism can generate alternative compositions, which have been previously detected in the cell.
在酿酒酵母中,核糖体柄由四个酸性磷蛋白 P1α、P1β、P2α 和 P2β 组成,它们形成两个异二聚体 P1α/P2β 和 P1β/P2α,分别优先结合 P0 蛋白的 A 位和 B 位。利用只携带四种可能的 P1/P2 组合之一的突变株,我们发现每种 P1/P2 对都与特定的表型相关,表明并非所有酸性磷蛋白都发挥相同的作用。缺失一种 P1/P2 异二聚体,根据缺失的蛋白不同,细胞生长速度会不同程度地降低。60S 核糖体亚基的合成也减少了,特别是在携带异常 P1α-P2α 或 P1β-P2β 异二聚体的菌株中,尽管不同的 P1/P2 二聚体以相似的亲和力结合到突变核糖体上。在野生型菌株中,B 位以高度特异性结合 P1β/P2α,而 A 位以相似的亲和力结合四种 P 蛋白,但在表达截短 P0 蛋白的突变株中,A 和 B 结合位均能有效地结合几乎任何 P1/P2 对。报道的结果支持这样的观点,即在正常条件下,大多数核糖体包含 P1α/P2β-P0-P1β/P2α 结构,但柄组装机制可以产生替代组成,这些组成在细胞中已被先前检测到。