| Literature DB >> 29925005 |
Ryu Yashiro1, Yukiko Murota1, Kazumichi M Nishida1, Haruna Yamashiro1, Kaede Fujii2, Asuka Ogai2, Soichiro Yamanaka3, Lumi Negishi4, Haruhiko Siomi3, Mikiko C Siomi5.
Abstract
In Drosophila ovarian somatic cells (OSCs), Piwi represses transposons transcriptionally to maintain genome integrity. Piwi nuclear localization requires the N terminus and PIWI-interacting RNA (piRNA) loading of Piwi. However, the underlying mechanism remains unknown. Here, we show that Importinα (Impα) plays a pivotal role in Piwi nuclear localization and that Piwi has a bipartite nuclear localization signal (NLS). Impα2 and Impα3 are highly expressed in OSCs, whereas Impα1 is the least expressed. Loss of Impα2 or Impα3 forces Piwi to be cytoplasmic, which is rectified by overexpression of any Impα members. Extension of Piwi-NLS with an additional Piwi-NLS leads Piwi to be imported to the nucleus in a piRNA-independent manner, whereas replacement of Piwi-NLS with SV40-NLS fails. Limited proteolysis analysis suggests that piRNA loading onto Piwi triggers conformational change, exposing the N terminus to the environment. These results suggest that Piwi autoregulates its nuclear localization by exposing the NLS to Impα upon piRNA loading.Entities:
Keywords: Drosophila; Importin; PIWI; nuclear import; nuclear localization signal; piRNA
Year: 2018 PMID: 29925005 DOI: 10.1016/j.celrep.2018.05.051
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423