RNA Group, Department of Biochemistry, Université de Sherbrooke, Sherbrooke, QC, Canada.
Traffic. 2013 Mar;14(3):282-94. doi: 10.1111/tra.12036. Epub 2013 Jan 25.
Nuclear poly(A)-binding proteins (PABPs) are evolutionarily conserved proteins that play key roles in eukaryotic gene expression. In the fission yeast Schizosaccharomyces pombe, the major nuclear PABP, Pab2, functions in the maturation of small nucleolar RNAs as well as in nuclear RNA decay. Despite knowledge about its nuclear functions, nothing is known about how Pab2 is imported into the nucleus. Here, we show that Pab2 contains a proline-tyrosine nuclear localization signal (PY-NLS) that is necessary and sufficient for its nuclear localization and function. Consistent with the role of karyopherin β2 (Kapβ2)-type receptors in the import of PY-NLS cargoes, we show that the fission yeast ortholog of human Kapβ2, Kap104, binds to recombinant Pab2 and is required for Pab2 nuclear localization. The absence of arginine methylation in a basic region N-terminal to the PY-core motif of Pab2 did not affect its nuclear localization. However, in the context of a sub-optimal PY-NLS, we found that Pab2 was more efficiently targeted to the nucleus in the absence of arginine methylation, suggesting that this modification can affect the import kinetics of a PY-NLS cargo. Although a sequence resembling a PY-NLS motif can be found in the human Pab2 ortholog, PABPN1, our results indicate that neither a functional PY-NLS nor Kapβ2 activity are required to promote entry of PABPN1 into the nucleus of human cells. Our findings describe the mechanism by which Pab2 is imported into the nucleus, providing the first example of a PY-NLS import system in fission yeast. In addition, this study suggests the existence of alternative or redundant nuclear import pathways for human PABPN1.
核多聚(A)结合蛋白(PABPs)是进化上保守的蛋白质,在真核基因表达中发挥关键作用。在裂殖酵母 Schizosaccharomyces pombe 中,主要的核 PABP,Pab2,在小核仁 RNA 的成熟以及核 RNA 衰变中发挥作用。尽管人们已经了解了它的核功能,但对于 Pab2 如何被导入细胞核却一无所知。在这里,我们表明 Pab2 含有一个脯氨酸-酪氨酸核定位信号(PY-NLS),该信号对于其核定位和功能是必要和充分的。与核孔蛋白β2(Kapβ2)型受体在 PY-NLS 货物导入中的作用一致,我们表明裂殖酵母中人 Kapβ2 的同源物 Kap104 与重组 Pab2 结合,并且是 Pab2 核定位所必需的。在 PY-NLS 核心基序 N 端的碱性区域中,精氨酸甲基化的缺失并没有影响 Pab2 的核定位。然而,在一个次优的 PY-NLS 背景下,我们发现 Pab2 在缺乏精氨酸甲基化的情况下更有效地靶向细胞核,这表明这种修饰可以影响 PY-NLS 货物的导入动力学。尽管在人类 Pab2 同源物 PABPN1 中可以找到类似于 PY-NLS 基序的序列,但我们的结果表明,对于促进 PABPN1 进入人细胞的核,既不需要功能性的 PY-NLS,也不需要 Kapβ2 活性。我们的研究结果描述了 Pab2 被导入细胞核的机制,为裂殖酵母中第一个 PY-NLS 导入系统提供了范例。此外,本研究表明了人类 PABPN1 存在替代或冗余的核导入途径。