Literature DB >> 16688858

In situ SUMOylation analysis reveals a modulatory role of RanBP2 in the nuclear rim and PML bodies.

Noriko Saitoh1, Yasuhiro Uchimura, Taro Tachibana, Satoko Sugahara, Hisato Saitoh, Mitsuyoshi Nakao.   

Abstract

SUMO modification plays a critical role in a number of cellular functions including nucleocytoplasmic transport, gene expression, cell cycle and formation of subnuclear structures such as promyelocytic leukemia (PML) bodies. In order to identify the sites where SUMOylation takes place in the cell, we developed an in situ SUMOylation assay using a semi-intact cell system and subsequently combined it with siRNA-based knockdown of nucleoporin RanBP2, also known as Nup358, which is one of the known SUMO E3 proteins. With the in situ SUMOylation assay, we found that both nuclear rim and PML bodies, besides mitotic apparatuses, are major targets for active SUMOylation. The ability to analyze possible SUMO conjugation sites would be a valuable tool to investigate where SUMO E3-like activities and/or SUMO substrates exist in the cell. Specific knockdown of RanBP2 completely abolished SUMOylation along the nuclear rim and dislocated RanGAP1 from the nuclear pore complexes. Interestingly, the loss of RanBP2 markedly reduced the number of PML bodies, in contrast to other, normal-appearing nuclear compartments including the nuclear lamina, nucleolus and chromatin, suggesting a novel link between RanBP2 and PML bodies. SUMOylation facilitated by RanBP2 at the nuclear rim may be a key step for the formation of a particular subnuclear organization. Our data imply that SUMO E3 proteins like RanBP2 facilitate spatio-temporal SUMOylation for certain nuclear structure and function.

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Year:  2006        PMID: 16688858     DOI: 10.1016/j.yexcr.2006.01.013

Source DB:  PubMed          Journal:  Exp Cell Res        ISSN: 0014-4827            Impact factor:   3.905


  19 in total

1.  Targeting zinc finger domains with small molecules: solution structure and binding studies of the RanBP2-type zinc finger of RBM5.

Authors:  Biancamaria Farina; Roberto Fattorusso; Maurizio Pellecchia
Journal:  Chembiochem       Date:  2011-12-16       Impact factor: 3.164

Review 2.  The nuclear pore complex: bridging nuclear transport and gene regulation.

Authors:  Caterina Strambio-De-Castillia; Mario Niepel; Michael P Rout
Journal:  Nat Rev Mol Cell Biol       Date:  2010-07       Impact factor: 94.444

3.  Construction of a mouse Aos1-Uba2 chimeric SUMO-E1 enzyme, mAU, and its expression in baculovirus-insect cells.

Authors:  Tomofumi Nakayama; Eri Yuasa; Ayumi Kanemaru; Masayuki Saito; Hisato Saitoh
Journal:  Bioengineered       Date:  2014-01-13       Impact factor: 3.269

4.  Protection from isopeptidase-mediated deconjugation regulates paralog-selective sumoylation of RanGAP1.

Authors:  Shanshan Zhu; Jacqueline Goeres; Katherine M Sixt; Miklós Békés; Xiang-Dong Zhang; Guy S Salvesen; Michael J Matunis
Journal:  Mol Cell       Date:  2009-03-13       Impact factor: 17.970

5.  UBE2I (UBC9), a SUMO-conjugating enzyme, localizes to nuclear speckles and stimulates transcription in mouse oocytes.

Authors:  Motomasa Ihara; Paula Stein; Richard M Schultz
Journal:  Biol Reprod       Date:  2008-08-13       Impact factor: 4.285

6.  An electrophoretic mobility shift assay identifies a mechanistically unique inhibitor of protein sumoylation.

Authors:  Yeong Sang Kim; Katelyn Nagy; Samantha Keyser; John S Schneekloth
Journal:  Chem Biol       Date:  2013-04-18

7.  Vpu modulates DNA repair to suppress innate sensing and hyper-integration of HIV-1.

Authors:  Lisa Wiesmüller; Frank Kirchhoff; Meta Volcic; Konstantin M J Sparrer; Lennart Koepke; Dominik Hotter; Daniel Sauter; Christina M Stürzel; Myriam Scherer; Thomas Stamminger; Thomas G Hofmann; Nathalie J Arhel
Journal:  Nat Microbiol       Date:  2020-07-20       Impact factor: 17.745

8.  The nucleolar SUMO-specific protease SENP3 reverses SUMO modification of nucleophosmin and is required for rRNA processing.

Authors:  Markus Haindl; Thomas Harasim; Dirk Eick; Stefan Muller
Journal:  EMBO Rep       Date:  2008-02-08       Impact factor: 8.807

Review 9.  A manually curated network of the PML nuclear body interactome reveals an important role for PML-NBs in SUMOylation dynamics.

Authors:  Ellen Van Damme; Kris Laukens; Thanh Hai Dang; Xaveer Van Ostade
Journal:  Int J Biol Sci       Date:  2010-01-12       Impact factor: 6.580

10.  PML promotes MHC class II gene expression by stabilizing the class II transactivator.

Authors:  Tobias Ulbricht; Mohammad Alzrigat; Almut Horch; Nina Reuter; Anna von Mikecz; Viktor Steimle; Eberhard Schmitt; Oliver H Krämer; Thomas Stamminger; Peter Hemmerich
Journal:  J Cell Biol       Date:  2012-09-24       Impact factor: 10.539

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