Department of Plant Biology and Pathology, School of Environmental and Biological Sciences, Rutgers University, New Brunswick, NJ 08901, USA.
FEBS J. 2012 Oct;279(20):3925-36. doi: 10.1111/j.1742-4658.2012.08752.x. Epub 2012 Sep 11.
Ricin A-chain (RTA) depurinates the sarcin-ricin loop of 28S ribosomal RNA and inhibits protein synthesis in mammalian cells. In yeast, the ribosomal stalk facilitates the interaction of RTA with the ribosome and subsequent depurination. Despite homology between the stalk structures from yeast and humans, there are notable differences. The human ribosomal stalk contains two identical heterodimers of P1 and P2 bound to P0, whereas the yeast stalk consists of two different heterodimers, P1α-P2β and P2α-P1β, bound to P0. RTA exhibits higher activity towards mammalian ribosomes than towards ribosomes from other organisms, suggesting that the mode of interaction with ribosomes may vary. Here, we examined whether the human ribosomal stalk proteins facilitate the interaction of RTA with human ribosomes and subsequent depurination of the sarcin-ricin loop. Using small interfering RNA-mediated knockdown of P1/P2 expression in human cells, we demonstrated that the depurination activity of RTA is lower when P1 and P2 levels are reduced. Biacore analysis showed that ribosomes from P1/P2-depleted cells have a reduced ability to bind RTA, which correlates with reduced depurination activity both in vitro and inside cells. RTA interacts directly with recombinant human P1-P2 dimer, further demonstrating the importance of human P1 and P2 in enabling RTA to bind and depurinate human ribosomes.
蓖麻毒素 A 链(RTA)使 28S 核糖体 RNA 的 Sarcin-Ricin 环脱嘌呤,并抑制哺乳动物细胞中的蛋白质合成。在酵母中,核糖体柄促进 RTA 与核糖体的相互作用以及随后的脱嘌呤作用。尽管酵母和人类的核糖体柄结构之间存在同源性,但仍存在显著差异。人类核糖体柄包含两个与 P0 结合的 P1 和 P2 相同的异二聚体,而酵母的核糖体柄则由两个不同的异二聚体 P1α-P2β 和 P2α-P1β 与 P0 结合而成。RTA 对哺乳动物核糖体的活性比对其他生物体的核糖体更高,这表明其与核糖体的相互作用方式可能有所不同。在这里,我们研究了人类核糖体柄蛋白是否促进 RTA 与人类核糖体的相互作用以及随后 Sarcin-Ricin 环的脱嘌呤作用。通过在人细胞中使用小干扰 RNA 介导的 P1/P2 表达敲低,我们证明当 P1 和 P2 水平降低时,RTA 的脱嘌呤活性降低。Biacore 分析表明,从 P1/P2 耗尽的细胞中提取的核糖体与 RTA 的结合能力降低,这与体外和细胞内脱嘌呤活性降低相关。RTA 与重组人 P1-P2 二聚体直接相互作用,进一步证明了人 P1 和 P2 在使 RTA 结合和脱嘌呤人核糖体中的重要性。