Section of Molecular Genetics and Microbiology and Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, TX 78712, USA.
Mol Biol Cell. 2012 Nov;23(21):4313-22. doi: 10.1091/mbc.E12-05-0370. Epub 2012 Sep 5.
We previously identified Bud23 as the methyltransferase that methylates G1575 of rRNA in the P-site of the small (40S) ribosomal subunit. In this paper, we show that Bud23 requires the methyltransferase adaptor protein Trm112 for stability in vivo. Deletion of Trm112 results in a bud23Δ-like mutant phenotype. Thus Trm112 is required for efficient small-subunit biogenesis. Genetic analysis suggests the slow growth of a trm112Δ mutant is due primarily to the loss of Bud23. Surprisingly, suppression of the bud23Δ-dependent 40S defect revealed a large (60S) biogenesis defect in a trm112Δ mutant. Using sucrose gradient sedimentation analysis and coimmunoprecipitation, we show that Trm112 is also involved in 60S subunit biogenesis. The 60S defect may be dependent on Nop2 and Rcm1, two additional Trm112 interactors that we identify. Our work extends the known range of Trm112 function from modification of tRNAs and translation factors to both ribosomal subunits, showing that its effects span all aspects of the translation machinery. Although Trm112 is required for Bud23 stability, our results suggest that Trm112 is not maintained in a stable complex with Bud23. We suggest that Trm112 stabilizes its free methyltransferase partners not engaged with substrate and/or helps to deliver its methyltransferase partners to their substrates.
我们之前确定 Bud23 是一种甲基转移酶,它可以在小(40S)核糖体亚基的 P 位上甲基化 rRNA 的 G1575。在本文中,我们表明 Bud23 需要甲基转移酶接头蛋白 Trm112 才能在体内稳定。Trm112 的缺失导致 bud23Δ 样突变表型。因此,Trm112 是有效小亚基生物发生所必需的。遗传分析表明,trm112Δ 突变体生长缓慢主要是由于 Bud23 的丧失。令人惊讶的是,抑制 bud23Δ 依赖性 40S 缺陷揭示了 trm112Δ 突变体中存在大(60S)生物发生缺陷。使用蔗糖梯度沉降分析和共免疫沉淀,我们表明 Trm112 还参与 60S 亚基生物发生。60S 缺陷可能依赖于 Nop2 和 Rcm1,我们鉴定的另外两个 Trm112 相互作用蛋白。我们的工作将 Trm112 的已知功能范围从 tRNA 和翻译因子的修饰扩展到两个核糖体亚基,表明其作用涵盖了翻译机制的所有方面。尽管 Trm112 是 Bud23 稳定性所必需的,但我们的结果表明 Trm112 并没有与 Bud23 稳定地结合在一个复合物中。我们认为 Trm112 稳定其未与底物结合的游离甲基转移酶伙伴,和/或帮助将其甲基转移酶伙伴递送到它们的底物上。