Mikhaleva E A, Iakushev E Iu, Stoliarenko A D, Klenov M S, Pozovskiĭ Ia M, Gvozdev V A
Mol Biol (Mosk). 2015 Jan-Feb;49(1):184-9.
The evolutionarily conserved nuclear Piwi protein of Drosophila melanogaster is a representative of the Argonaute small RNA binding protein family. Guided by small piRNAs, Piwi functions in transposon silencing in somatic and germ cells of the gonad. We found that in ovarian somatic and germ cells, as well as in the established ovarian somatic cell line, Piwi is concentrated predominantly in the nucleolus--the main nuclear compartment, participating not only in rRNA synthesis, but also in various cell stress responses. We demonstrated the colocalization of Piwi with nucleolar marker proteins--fibrillarin and Nopp140. A mutation preventing Piwi transport to the nucleus and disturbing transposon silencing (piwi(Nt)) leads to 6-8-fold upregulation of rRNA genes expression, as evaluated by the level of transcripts of transposon insertions in 28S rRNA genes. RNase treatment of live cultured ovarian somatic cells depletes Piwi from the nucleolus. The same effect is observed upon inhibiting RNA polymerase I which transcribes rRNA, but not RNA polymerase II. In contrast, upon heat shock Piwi is concentrated in the nucleolus and is depleted from the nucleoplasm. These results implicate Piwi in RNA polymerase activity modulation and stress response in the nucleolus. We discuss possible noncanonical Piwi functions along with its canonical role in transposon silencing by piRNAs.
黑腹果蝇中进化保守的核Piwi蛋白是Argonaute小RNA结合蛋白家族的代表。在小piRNA的引导下,Piwi在性腺的体细胞和生殖细胞中发挥转座子沉默功能。我们发现,在卵巢体细胞和生殖细胞以及已建立的卵巢体细胞系中,Piwi主要集中在核仁——细胞核的主要区域,不仅参与rRNA合成,还参与各种细胞应激反应。我们证明了Piwi与核仁标记蛋白——纤维蛋白原和Nopp140共定位。通过28S rRNA基因中转座子插入转录本的水平评估,一种阻止Piwi转运到细胞核并干扰转座子沉默的突变(piwi(Nt))导致rRNA基因表达上调6至8倍。对活培养的卵巢体细胞进行RNase处理会使核仁中的Piwi耗尽。抑制转录rRNA的RNA聚合酶I时也会观察到相同的效果,但抑制RNA聚合酶II时则不会。相反,热休克时Piwi集中在核仁中,并从核质中耗尽。这些结果表明Piwi参与核仁中的RNA聚合酶活性调节和应激反应。我们讨论了Piwi可能的非经典功能及其在piRNA介导的转座子沉默中的经典作用。