Spiller Michael P, Boon Kum-Loong, Reijns Martin A M, Beggs Jean D
Wellcome Trust Centre for Cell Biology, University of Edinburgh, King's Buildings, Mayfield Road, Edinburgh EH9 3JR, UK.
Nucleic Acids Res. 2007;35(3):923-9. doi: 10.1093/nar/gkl1130. Epub 2007 Jan 23.
Lsm proteins are ubiquitous, multifunctional proteins that are involved in the processing and/or turnover of many, if not all, RNAs in eukaryotes. They generally interact only transiently with their substrate RNAs, in keeping with their likely roles as RNA chaperones. The spliceosomal U6 snRNA is an exception, being stably associated with the Lsm2-8 complex. The U6 snRNA is generally considered to be intrinsically nuclear but the mechanism of its nuclear retention has not been demonstrated, although La protein has been implicated. We show here that the complete Lsm2-8 complex is required for nuclear accumulation of U6 snRNA in yeast. Therefore, just as Sm proteins effect nuclear localization of the other spliceosomal snRNPs, the Lsm proteins mediate U6 snRNP localization except that nuclear retention is the likely mechanism for the U6 snRNP. La protein, which binds only transiently to the nascent U6 transcript, has a smaller, apparently indirect, effect on U6 localization that is compatible with its proposed role as a chaperone in facilitating U6 snRNP assembly.
Lsm蛋白是普遍存在的多功能蛋白,参与真核生物中许多(即便不是全部)RNA的加工和/或周转。它们通常仅与其底物RNA短暂相互作用,这与其作为RNA伴侣的可能作用相符。剪接体U6 snRNA是个例外,它与Lsm2 - 8复合体稳定结合。U6 snRNA通常被认为本质上是定位于细胞核的,但尽管已表明La蛋白与之有关联,其核滞留机制尚未得到证实。我们在此表明,完整的Lsm2 - 8复合体是酵母中U6 snRNA核积累所必需的。因此,正如Sm蛋白影响其他剪接体snRNP的核定位一样,Lsm蛋白介导U6 snRNP的定位,只是核滞留可能是U6 snRNP的定位机制。仅与新生U6转录本短暂结合的La蛋白对U6定位有较小的、明显间接的影响,这与其作为促进U6 snRNP组装的伴侣的假定作用相符。