Ubc9: Difference between revisions

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== Function ==
== Function ==
''Ubc9'' is enzymatically involved in the SUMOylation process, as it is responsible for ligating the SUMO to the protein. If the reaction occurs ''in vitro'', Ubc9 will ligate the SUMO directly to the substrate, while if the reaction occurs ''in vivo'', the SUMO will be ligated to the conjugating enzyme (E3) and then ligated onto the substrate <ref name="protein control">PMID:25097219</ref>. Initially in the SUMOylation pathway, a thioester bond is formed between the SUMO and the E1 enzyme via an ATP-dependent reaction. The SUMO is then transferred to the active cysteine of the E2, in this case, Ubc9. The SUMO is then ligated to a lysine side chain amino group of the substrate, during which an E3 enzyme may or may not be recruited. The use of E3 mediated transfer serves functions such as increasing the specificity for the substrate to be SUMOylated <ref name="ubcsumocomplex"/>. Ubc9 has been found to be predominantly nuclear, with its N-terminal amino acids being integral to its localization. Ubc9 nuclear accumulation is vital for normal SUMOylation rates <ref name="n terminal amino acids"/>.
''Ubc9'' is enzymatically involved in the SUMOylation process, as it is responsible for ligating the SUMO to the protein. If the reaction occurs ''in vitro'', Ubc9 will ligate the SUMO directly to the substrate, while if the reaction occurs ''in vivo'', the SUMO will be ligated to the conjugating enzyme (E3) and then ligated onto the substrate <ref name="protein control">PMID:25097219</ref>. Initially in the SUMOylation pathway, a thioester bond is formed between the SUMO and the E1 enzyme via an ATP-dependent reaction. Next, the SUMO is transferred to the active cysteine of the E2, in this case, Ubc9. Finally, the SUMO is ligated to a lysine side chain amino group of the substrate, during which an E3 enzyme may or may not be recruited. The use of E3 mediated transfer serves functions such as increasing the specificity for the substrate to be SUMOylated <ref name="ubcsumocomplex"/>. Ubc9 has been found to be predominantly nuclear, with its N-terminal amino acids being integral to its localization. Ubc9 nuclear accumulation is vital for normal SUMOylation rates <ref name="n terminal amino acids"/>.


Kinetic analysis has shown that the Ubc9 amino acids <scene name='69/694804/Cys93lys101asp100/2'>Asp100 and Lys101</scene>, which are in close proximity to the active site Cys93, play a role in substrate recongnition within the thioester Ubc9-SUMO1 complex. These amino acids are not found in other E2 enzymes, making their involvement in SUMO conjugation unique to Ubc9 <ref name="asp100lys101">PMID:12641448</ref>.  
Kinetic analysis has shown that the Ubc9 amino acids <scene name='69/694804/Cys93lys101asp100/2'>Asp100 and Lys101</scene>, which are in close proximity to the active site Cys93, play a role in substrate recongnition within the thioester Ubc9-SUMO1 complex. These amino acids are not found in other E2 enzymes, making their involvement in SUMO conjugation unique to Ubc9 <ref name="asp100lys101">PMID:12641448</ref>.  

Revision as of 01:30, 26 February 2015

Human Ubiquitin Conjugating Protein Ubc9

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References

Proteopedia Page Contributors and Editors (what is this?)

Byron H. Young, Saieh Bijani, Michal Harel