Briceño Verónica, Camargo Hendricka, Remacha Miguel, Santos Cruz, Ballesta Juan P G
Centro de Biología Molecular Severo Ochoa, Universidad Autónoma de Madrid and Consejo Superior de Investigaciones Científicas, Cantoblanco, Madrid 28049, Spain.
Int J Biochem Cell Biol. 2009 Jun;41(6):1315-22. doi: 10.1016/j.biocel.2008.11.005. Epub 2008 Nov 25.
The essential ribosomal stalk is formed in eukaryotes by a pentamer of two P1-P2 protein heterodimers and the P0 rRNA binding protein. In contrast to the highly stable prokaryotic complex, the P1 and P2 proteins in the eukaryotic stalk undergo a cyclic process of assembly and disassembly during translation that seems to modulate the ribosome activity. To better understand this process, the regions of the Saccharomyces cerevisiae P1alpha and P2beta proteins that are directly involved in heterodimer formation and ribosome binding have been characterized using a series of P1alpha/P2beta chimeras. The region required for a stable interaction with the ribosome is formed by the first three predicted alpha-helices in the N-terminal domain of both proteins. The same region is required for heterodimer formation in P2beta but the third helix is dispensable for this association in P1alpha. It seems, therefore, that stable ribosome binding is more structurally demanding than heterodimerization. A fourth predicted alpha-helix in the N-terminal domain of P1alpha and P2beta appears not to be involved in the assembly process but rather, it contributes to the conformation of the proteins by apparently restricting the mobility of their C-terminal domain and paradoxically, by reducing their activity. In addition, the study of P1/P2 chimeras showed that the C-terminal domains of these two types of protein are functionally identical and that their protein specificity is exclusively determined by their N-terminal domains.
在真核生物中,基本核糖体柄由两个P1 - P2蛋白异二聚体的五聚体和P0 rRNA结合蛋白组成。与高度稳定的原核复合物不同,真核生物核糖体柄中的P1和P2蛋白在翻译过程中经历组装和解聚的循环过程,这似乎会调节核糖体的活性。为了更好地理解这一过程,使用一系列P1α/P2β嵌合体对酿酒酵母P1α和P2β蛋白中直接参与异二聚体形成和核糖体结合的区域进行了表征。与核糖体稳定相互作用所需的区域由这两种蛋白N端结构域中预测的前三个α螺旋形成。P2β中异二聚体形成也需要相同区域,但第三个螺旋对于P1α中的这种结合是可有可无的。因此,似乎稳定的核糖体结合在结构上比异二聚化要求更高。P1α和P2β N端结构域中预测的第四个α螺旋似乎不参与组装过程,而是通过明显限制其C端结构域的移动性,反常地通过降低其活性来影响蛋白质的构象。此外,对P1/P2嵌合体的研究表明,这两种类型蛋白质的C端结构域在功能上是相同的,它们的蛋白质特异性完全由其N端结构域决定。