Literature DB >> 30775805

Effects of SRSF1 on subnuclear localization of topoisomerase I.

Agnieszka Girstun1, Takao Ishikawa1, Krzysztof Staron1.   

Abstract

Subnuclear localization of topoisomerase I (top I) is determined by its DNA relaxation activity and a net of its interactions with in majority unidentified nucleolar and nucleoplasmic elements. Here, we recognized SR protein SRSF1 (Serine/arginine-rich splicing factor 1, previously known as SF2/ASF) as a new element of the net. In HeLa cells, overexpression of SRSF1 recruited top I to the nucleoplasm whereas its silencing concentrated it in the nucleolus. Effect of SRSF1 was independent of top I relaxation activity and was the best pronounced for the mutant inactive in relaxation reaction. In HCT116 cells where top I was not released from the nucleolus upon halting relaxation activity, it was also not relocated by elevated level of SRSF1. Out of remaining SR proteins, SRSF5, SRSF7, and SRSF9 did not influence the localization of top I in HeLa cells whereas overexpression of SRSF2, SRSF3, SRSF6, and partly SRSF4 concentrated top I in the nucleolus, most possibly due to the reduction of the SRSF1 accessibility. Specific effect of SRSF1 was exerted because of its distinct RS domain. Silencing of SRSF1 compensated the deletion of the top I N-terminal region, individually responsible for nucleoplasmic localization of the mutant, and restored the wild-type phenotype of deletion mutant localization. SRSF1 was essential for the camptothecin-induced clearance from the nucleolus. These results suggest a possible role of SRSF1 in establishing partition of top I between the nucleolus and the nucleoplasm in some cell types with distinct combinations of SR proteins levels.
© 2019 Wiley Periodicals, Inc.

Entities:  

Keywords:  SRSF1; nucleolus; topoisomerase I

Year:  2019        PMID: 30775805     DOI: 10.1002/jcb.28459

Source DB:  PubMed          Journal:  J Cell Biochem        ISSN: 0730-2312            Impact factor:   4.429


  2 in total

1.  Myeloid cell-specific topoisomerase 1 inhibition using DNA origami mitigates neuroinflammation.

Authors:  Yang Wang; Heela Sarlus; Keyi Geng; Keying Zhu; Erik Nutma; Jingxian Sun; Shin-Yu Kung; Cindy Bay; Jinming Han; Jin-Hong Min; Irene Benito-Cuesta; Harald Lund; Sandra Amor; Jun Wang; Xing-Mei Zhang; Claudia Kutter; André Ortlieb Guerreiro-Cacais; Björn Högberg; Robert A Harris
Journal:  EMBO Rep       Date:  2022-05-20       Impact factor: 9.071

2.  Exploring the multifunctionality of SR proteins.

Authors:  Irena Slišković; Hannah Eich; Michaela Müller-McNicoll
Journal:  Biochem Soc Trans       Date:  2022-02-28       Impact factor: 4.919

  2 in total

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