Lin S S, Nymark-McMahon M H, Yieh L, Sandmeyer S B
Department of Biological Chemistry, University of California, Irvine, 92697, USA.
Mol Cell Biol. 2001 Nov;21(22):7826-38. doi: 10.1128/MCB.21.22.7826-7838.2001.
Retroviruses in nondividing cells and yeast retrotransposons must transit the nuclear membrane in order for integration to occur. Mutations in a bipartite basic motif in the carboxyl-terminal domain of the Ty3 integrase (IN) protein were previously shown to block transposition at a step subsequent to 3'-end processing of Ty3 extrachromosomal DNA. In this work, the Ty3 IN was shown to be sufficient to target green fluorescent protein to the nucleolus. Mutations in the bipartite basic motif abrogated this localization. The region containing the motif was shown to be sufficient for nuclear but not subnuclear localization of a heterologous protein. Viruslike particles (VLPs) from cells expressing a Ty3 element defective for nuclear localization were inactive in an in vitro integration assay, suggesting that nuclear entry is required to form active VLPs or that this motif is required for post-nuclear entry steps. Ty3 inserts at transcription initiation sites of genomic tRNA genes and plasmid-borne 5S and U6 RNA genes transcribed by RNA polymerase III. In situ hybridization with Ty3- and Ty3 long terminal repeat-specific probes showed that these elements which are associated with tRNA genes do not colocalize with the ribosomal DNA (rDNA). However, a PCR assay of cells undergoing transposition showed that Ty3 insertion does occur into the 5S genes, which, in yeast, are interspersed with the rDNA and therefore, like Ty3 IN, associated with the nucleolus.
非分裂细胞中的逆转录病毒和酵母逆转座子必须穿过核膜才能发生整合。先前已表明,Ty3整合酶(IN)蛋白羧基末端结构域中的双分型碱性基序发生突变会在Ty3染色体外DNA的3'末端加工后的步骤中阻断转座。在这项研究中,Ty3 IN被证明足以将绿色荧光蛋白靶向核仁。双分型碱性基序中的突变消除了这种定位。含有该基序的区域被证明足以使异源蛋白定位于细胞核而非亚细胞核。来自表达核定位缺陷的Ty3元件的细胞的病毒样颗粒(VLP)在体外整合试验中无活性,这表明核进入是形成活性VLP所必需的,或者该基序是核进入后步骤所必需的。Ty3插入基因组tRNA基因以及由RNA聚合酶III转录的质粒携带的5S和U6 RNA基因的转录起始位点。用Ty3和Ty3长末端重复序列特异性探针进行原位杂交表明,这些与tRNA基因相关的元件与核糖体DNA(rDNA)不共定位。然而,对正在进行转座的细胞进行的PCR分析表明,Ty3确实插入到了5S基因中,在酵母中,5S基因与rDNA交错分布,因此,与Ty3 IN一样,与核仁相关。