Stage-Zimmermann T, Schmidt U, Silver P A
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Dana-Farber Cancer Institute, Boston, Massachusetts 02115, USA.
Mol Biol Cell. 2000 Nov;11(11):3777-89. doi: 10.1091/mbc.11.11.3777.
In Saccharomyces cerevisiae, the 60S ribosomal subunit assembles in the nucleolus and then is exported to the cytoplasm, where it joins the 40S subunit for translation. Export of the 60S subunit from the nucleus is known to be an energy-dependent and factor-mediated process, but very little is known about the specifics of its transport. To begin to address this problem, an assay was developed to follow the localization of the 60S ribosomal subunit in S. cerevisiae. Ribosomal protein L11b (Rpl11b), one of the approximately 45 ribosomal proteins of the 60S subunit, was tagged at its carboxyl terminus with the green fluorescent protein (GFP) to enable visualization of the 60S subunit in living cells. A panel of mutant yeast strains was screened for their accumulation of Rpl11b-GFP in the nucleus as an indicator of their involvement in ribosome synthesis and/or transport. This panel included conditional alleles of several rRNA-processing factors, nucleoporins, general transport factors, and karyopherins. As predicted, conditional alleles of rRNA-processing factors that affect 60S ribosomal subunit assembly accumulated Rpl11b-GFP in the nucleus. In addition, several of the nucleoporin mutants as well as a few of the karyopherin and transport factor mutants also mislocalized Rpl11b-GFP. In particular, deletion of the previously uncharacterized karyopherin KAP120 caused accumulation of Rpl11b-GFP in the nucleus, whereas ribosomal protein import was not impaired. Together, these data further define the requirements for ribosomal subunit export and suggest a biological function for KAP120.
在酿酒酵母中,60S核糖体亚基在核仁中组装,然后输出到细胞质,在那里它与40S亚基结合进行翻译。已知60S亚基从细胞核输出是一个能量依赖且因子介导的过程,但对其运输细节了解甚少。为了开始解决这个问题,开发了一种检测方法来追踪酿酒酵母中60S核糖体亚基的定位。核糖体蛋白L11b(Rpl11b)是60S亚基约45种核糖体蛋白之一,在其羧基末端用绿色荧光蛋白(GFP)进行标记,以便在活细胞中可视化60S亚基。筛选了一组突变酵母菌株,以检测它们细胞核中Rpl11b-GFP的积累情况,作为它们参与核糖体合成和/或运输的指标。该组包括几种rRNA加工因子、核孔蛋白、一般运输因子和核转运蛋白的条件等位基因。如预期的那样,影响60S核糖体亚基组装的rRNA加工因子的条件等位基因会使Rpl11b-GFP在细胞核中积累。此外,一些核孔蛋白突变体以及一些核转运蛋白和运输因子突变体也使Rpl11b-GFP定位错误。特别是,缺失先前未表征的核转运蛋白KAP120会导致Rpl11b-GFP在细胞核中积累,而核糖体蛋白的导入并未受损。总之,这些数据进一步明确了核糖体亚基输出的要求,并暗示了KAP120的生物学功能。