Hurt E, Hannus S, Schmelzl B, Lau D, Tollervey D, Simos G
Biochemie-Zentrum Heidelberg, D-69120 Heidelberg, Germany.
J Cell Biol. 1999 Feb 8;144(3):389-401. doi: 10.1083/jcb.144.3.389.
To identify components involved in the nuclear export of ribosomes in yeast, we developed an in vivo assay exploiting a green fluorescent protein (GFP)-tagged version of ribosomal protein L25. After its import into the nucleolus, L25-GFP assembles with 60S ribosomal subunits that are subsequently exported into the cytoplasm. In wild-type cells, GFP-labeled ribosomes are only detected by fluorescence in the cytoplasm. However, thermosensitive rna1-1 (Ran-GAP), prp20-1 (Ran-GEF), and nucleoporin nup49 and nsp1 mutants are impaired in ribosomal export as revealed by nuclear accumulation of L25-GFP. Furthermore, overexpression of dominant-negative RanGTP (Gsp1-G21V) and the tRNA exportin Los1p inhibits ribosomal export. The pattern of subnuclear accumulation of L25-GFP observed in different mutants is not identical, suggesting that transport can be blocked at different steps. Thus, nuclear export of ribosomes requires the nuclear/cytoplasmic Ran-cycle and distinct nucleoporins. This assay can be used to identify soluble transport factors required for nuclear exit of ribosomes.
为了鉴定酵母中核糖体核输出所涉及的组分,我们开发了一种体内分析方法,利用核糖体蛋白L25的绿色荧光蛋白(GFP)标记版本。L25-GFP导入核仁后,与60S核糖体亚基组装,随后被输出到细胞质中。在野生型细胞中,只有在细胞质中才能通过荧光检测到GFP标记的核糖体。然而,温度敏感型的rna1-1(Ran-GAP)、prp20-1(Ran-GEF)以及核孔蛋白nup49和nsp1突变体在核糖体输出方面存在缺陷,L25-GFP在细胞核中的积累表明了这一点。此外,显性负性RanGTP(Gsp1-G21V)和tRNA输出蛋白Los1p的过表达会抑制核糖体输出。在不同突变体中观察到的L25-GFP核内亚积累模式并不相同,这表明转运可能在不同步骤被阻断。因此,核糖体的核输出需要核/质Ran循环和不同的核孔蛋白。该分析方法可用于鉴定核糖体核输出所需的可溶性转运因子。