Literature for C48.A04: At1g60220 (Arabidopsis thaliana)

Summary Gene structure Alignment Tree Sequences Sequence features Distribution Literature Substrates
 
    2025
  1. Kalidass,M., Vaculikova,J., Chandra,J.R., Kralova,B., Jarubula,V.G., Kara Ozturk,S.D., Demidov,D., Schubert,V., Potesil,D., Palecek,J.J. and Lermontova,I.<br>The C-terminal SUMOylation-dependent regulation of alphaKNL2 governs its centromere targeting and interaction with CENH3<br>Plant Commun (2025) , 101617-101617. PubMed  Europe PubMed DOI
  2. 2023
  3. Bhagat,P.K., Roy,D. and Sadanandom,A.<br>Expression, Purification, and Enzymatic Analysis of Plant SUMO Proteases<br>Methods Mol Biol (2023) 2581, 109-119. PubMed  Europe PubMed DOI
  4. 2019
  5. le Roux,M.L., Kunert,K.J., Van der Vyver,C., Cullis,C.A. and Botha,A.M.<br>Expression of a small ubiquitin-like modifier protease increases drought tolerance in wheat (Triticum aestivum L.)<br>Front Plant Sci (2019) 10, 266-266. PubMed  Europe PubMed DOI  PMC  EPMC
  6. 2018
  7. Srivastava,A.K., Orosa,B., Singh,P., Cummins,I., Walsh,C., Zhang,C., Grant,M., Roberts,M.R., Anand,G.S., Fitches,E. and Sadanandom,A.<br>SUMO Suppresses the activity of the jasmonic acid receptor CORONATINE INSENSITIVE1<br>Plant Cell (2018) 30, 2099-2115. PubMed  Europe PubMed DOI
  8. Zhan,E., Zhou,H., Li,S., Liu,L., Tan,T. and Lin,H.<br>OTS1-dependent deSUMOylation increases tolerance to high copper levels in Arabidopsis<br>J Integr Plant Biol (2018) 60, 310-322. PubMed  Europe PubMed DOI
  9. 2017
  10. Liu,L., Yan,X., Kong,X., Zhao,Y., Gong,Z., Jin,J.B. and Guo,Y.<br>Transcriptional gene silencing maintained by OTS1 SUMO protease requires a DNA-dependent polymerase V-dependent pathway<br>Plant Physiol (2017) 173, 655-667. PubMed  Europe PubMed DOI
  11. Srivastava,A.K., Zhang,C., Caine,R.S., Gray,J. and Sadanandom,A.<br>Rice SUMO protease Overly Tolerant to Salt 1 targets the transcription factor, OsbZIP23 to promote drought tolerance in rice<br>Plant J (2017) 92, 1031-1043. PubMed  Europe PubMed DOI
  12. 2016
  13. Bailey,M., Srivastava,A., Conti,L., Nelis,S., Zhang,C., Florance,H., Love,A., Milner,J., Napier,R., Grant,M. and Sadanandom,A.<br>Stability of small ubiquitin-like modifier (SUMO) proteases OVERLY TOLERANT TO SALT1 and -2 modulates salicylic acid signalling and SUMO1/2 conjugation in Arabidopsis thaliana<br>J Exp Bot (2016) 67, 353-363. PubMed  Europe PubMed DOI
  14. Campanaro,A., Battaglia,R., Galbiati,M., Sadanandom,A., Tonelli,C. and Conti,L.<br>SUMO proteases OTS1 and 2 control filament elongation through a DELLA-dependent mechanism<br>Plant Reprod (2016) 29, 287-290. PubMed  Europe PubMed DOI
  15. Castro,P.H., Couto,D., Freitas,S., Verde,N., Macho,A.P., Huguet,S., Botella,M.A., Ruiz-Albert,J., Tavares,R.M., Bejarano,E.R. and Azevedo,H.<br>SUMO proteases ULP1c and ULP1d are required for development and osmotic stress responses in Arabidopsis thaliana<br>Plant Mol Biol (2016) 92, 143-159. PubMed  Europe PubMed DOI
  16. Srivastava,A.K., Zhang,C. and Sadanandom,A.<br>Rice OVERLY TOLERANT TO SALT 1 (OTS1) SUMO protease is a positive regulator of seed germination and root development<br>Plant Signal Behav (2016) 11, e1173301- PubMed  Europe PubMed DOI
  17. 2009
  18. Conti,L., Kioumourtzoglou,D., O'Donnell,E., Dominy,P. and Sadanandom,A.<br>OTS1 and OTS2 SUMO proteases link plant development and survival under salt stress<br>Plant Signal Behav (2009) 4, 225-227. PubMed  Europe PubMed  PMC  EPMC
  19. 2008
  20. Conti,L., Price,G., O'Donnell,E., Schwessinger,B., Dominy,P. and Sadanandom,A.<br>Small ubiquitin-like modifier proteases OVERLY TOLERANT TO SALT1 and -2 regulate salt stress responses in Arabidopsis<br>Plant Cell (2008) 20, 2894-2908. PubMed  Europe PubMed DOI  PMC  EPMC