Letter

Cellular Localization of Rice SUMO/SUMO Conjugates and in vitro Sumoylation Using Rice Components

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  • Department of Bioscience and Bioinformatics, Myongji University, Yongin 17058, Korea

Received date: 2018-09-28

  Accepted date: 2019-02-20

  Online published: 2019-09-30

Cite this article

Joo Joungsu, Hee Choi Dong, Hyon Kim Sang, Ik Song Sang . Cellular Localization of Rice SUMO/SUMO Conjugates and in vitro Sumoylation Using Rice Components[J]. Rice Science, 2020 , 27(1) : 1 -4 . DOI: 10.1016/j.rsci.2019.02.003

References

[1] Flotho A, Melchior F.2013. Sumoylation: A regulatory protein modification in health and disease.Annu Rev Biochem, 82: 357-385.
[2] Gareau J R, Lima C D.2010. The SUMO pathway: Emerging mechanisms that shape specificity, conjugation and recognition.Nat Rev Mol Cell Biol, 11(12): 861-871.
[3] Geiss-Friedlander R, Melchior F.2007. Concepts in sumoylation: A decade on.Nat Rev Mol Cell Biol, 8: 947-956.
[4] Hammoudi V, Vlachakis G, Schranz M E, van den Burg H A.2016. Whole-genome duplications followed by tandem duplications drive diversification of the protein modifier SUMO in angiosperms.New Phytol, 211(1): 172-185.
[5] Hay R T.2013. Decoding the SUMO signal.Biochem Soc Trans, 41: 463-473.
[6] Hecker C M, Rabiller M, Haglund K, Bayer P, Dikic I.2006 Specification of SUMO1- and SUMO2-interacting motifs.J Biol Chem, 281: 16117-16127.
[7] Kerscher O, Felberbaum R, Hochstrasser M.2006. Modification of proteins by ubiquitin and ubiquitin-like proteins.Annu Rev Cell Dev Biol, 22: 159-180.
[8] Kurepa J, Walker J M, Smalle J, Gosink M M, Davis S J, Durham T L, Sung D Y, Vierstra R D.2003. The small ubiquitin-like modifier (SUMO) protein modification system inArabidopsis: Accumulation of SUMO-1 and -2 conjugates is increased by stress. J Biol Chem, 278(9): 6862-6872.
[9] Lois L M, Lima C D, Chua N H.2003. Small ubiquitin-like modifier modulates abscisic acid signaling inArabidopsis. Plant Cell, 15(6): 1347-1359.
[10] Melchior F.2000. SUMO-nonclassical ubiquitin.Annu Rev Cell Dev Biol, 16: 591-626.
[11] Miura K, Rus A, Sharkhuu A, Yokoi S, Karthikeyan A S, Raghothama K G, Baek D, Koo Y D, Jin J B, Bressan R A, Yun D J, Hasegawa P M.2005. TheArabidopsis SUMO E3 ligase SIZ1 controls phosphate deficiency responses. Proc Natl Acad Sci USA, 102: 7760-7765.
[12] Novatchkova M, Budhiraja R, Coupland G, Eisenhaber F, Bachmair A.2004. SUMO conjugation in plants.Planta, 220(1): 1-8.
[13] Novatchkova M, Tomanov K, Hofmann K, Stuible H P, Bachmair A.2012. Update on sumoylation: Defining core components of the plant SUMO conjugation system by phylogenetic comparison.New Phytol, 195(1): 23-31.
[14] Park H J, Kim W Y, Park H C, Lee S Y, Bohnert H J, Yun D J.2011. SUMO and SUMOylation in plants.Mol Cells, 32(4): 305-316.
[15] Rodriguez M S, Dargemont C, Hay R T.2001. SUMO-1 conjugationin vivo requires both a consensus modification motif and nuclear targeting. J Biol Chem, 276: 12654-12659.
[16] Wang L L, Wansleeben C, Zhao S L, Miao P, Paschen W, Yang W.2014. SUMO2 is essential while SUMO3 is dispensable for mouse embryonic development.EMBO Rep, 15(8): 878-885.
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