Hofer Anne, Bussiere Cyril, Johnson Arlen W
Section of Molecular Genetics and Microbiology, Institute for Cellular and Molecular Biology, The University of Texas at Austin, 1 University Station A5000, Austin, TX 78712, USA.
J Biol Chem. 2007 Nov 9;282(45):32630-9. doi: 10.1074/jbc.M705057200. Epub 2007 Aug 30.
Yeast Rpl10 belongs to the L10e family of ribosomal proteins. In the large (60 S) subunit, Rpl10 is positioned in a cleft between the central protuberance and the GTPase-activating center. It is loaded into the 60 S subunit at a late step in maturation. We have shown previously that Rpl10 is required for the release of the Crm1-dependent nuclear export adapter Nmd3, an event that also requires the cytoplasmic GTPase Lsg1. Here we have carried out an extensive mutational analysis of Rpl10 to identify mutations that would allow us to map activities to distinct domains of the protein to begin to understand the molecular interaction between Rpl10 and Nmd3. We found that mutations in a central loop (amino acids 102-112) had a significant impact on the release of Nmd3. This loop is unstructured in the crystal and solution structures of prokaryotic Rpl10 orthologs. Thus, the loop is not necessary for stable interaction of Rpl10 with the ribosome, suggesting that it plays a dynamic role in ribosome function or regulating the association of other factors. We also found that mutant Rpl10 proteins were engineered to be unable to bind to the ribosome accumulated in the nucleus. This was unexpected and may suggest a nuclear role for Rpl10.
酵母核糖体蛋白L10属于核糖体蛋白L10e家族。在大(60 S)亚基中,Rpl10位于中央突起和GTP酶激活中心之间的裂隙中。它在成熟的后期阶段加载到60 S亚基中。我们之前已经表明,Rpl10是依赖Crm1的核输出衔接蛋白Nmd3释放所必需的,这一事件也需要细胞质GTP酶Lsg1。在这里,我们对Rpl10进行了广泛的突变分析,以确定能够使我们将活性映射到该蛋白不同结构域的突变,从而开始了解Rpl10与Nmd3之间的分子相互作用。我们发现,中央环(氨基酸102 - 112)中的突变对Nmd3的释放有显著影响。在原核Rpl10直系同源物的晶体结构和溶液结构中,这个环是无结构的。因此,该环对于Rpl10与核糖体的稳定相互作用不是必需的,这表明它在核糖体功能或调节其他因子的结合中发挥动态作用。我们还发现,经过工程改造而无法与核糖体结合的突变Rpl10蛋白在细胞核中积累。这是出乎意料的,可能暗示Rpl10在细胞核中具有作用。