Ubiquitin Structure & Function: Difference between revisions
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<StructureSection load='1ubq' size='350' side='right' caption='Human ubiquitin, [[1ubq]])' scene=''> | <StructureSection load='1ubq' size='350' side='right' caption='Human ubiquitin, [[1ubq]])' scene=''> | ||
[[Ubiquitin]] is a single 8565 M<sub>r</sub> polypeptide consisting of 76 amino acid residues | [[Ubiquitin]] is a single 8565 M<sub>r</sub> polypeptide consisting of 76 amino acid residues and is highly known for its role in ATP-dependent protein degradation<ref name="mainpaper">PMID: 3041007</ref> | ||
=Introduction= | =Introduction= | ||
Ubiquitin is one of the most highly conserved eukaryotic proteins. Primary structures found throughout ubiquitin are identical in all bovine, insects and human ubiquitin <ref name="mainpaper"/>. The only difference observed amongst these species is seen in the terminal Gly-Gly residues. Yeast and oat ubiquitin only differ in three of the 76 residues when compared to ubiquitin found in higher eukaryotes<ref name="mainpaper"/>.[[image:1ubiq.png| thumb |none | upright=2.0 |Ubiquitin structure: Arg74 in pink and Gly75 Gly76 in white.]] | Ubiquitin is one of the most highly conserved eukaryotic proteins. Primary structures found throughout ubiquitin are identical in all bovine, insects and human ubiquitin <ref name="mainpaper"/>. The only difference observed amongst these species is seen in the terminal Gly-Gly residues. Yeast and oat ubiquitin only differ in three of the 76 residues when compared to ubiquitin found in higher eukaryotes<ref name="mainpaper"/>. | ||
[[image:1ubiq.png| thumb |none | upright=2.0 |Ubiquitin structure: Arg74 in pink and Gly75 Gly76 in white.]] | |||
<!-- The content below was inserted by the ConSurf template --> | |||
== Evolutionary Conservation == | |||
[[Image:Consurf_key_small.gif|right|200px]] | |||
Check | |||
<jmol> | |||
<jmolCheckbox> | |||
<scriptWhenChecked> | |||
select protein; define ~consurf_to_do selected; | |||
consurf_initial_scene = true; | |||
script /wiki/ConSurf/ub/1ubq_consurf.spt; | |||
</scriptWhenChecked> | |||
<scriptWhenUnchecked> | |||
script /wiki/extensions/Proteopedia/spt/initialview01.spt; | |||
</scriptWhenUnchecked> | |||
<text>to colour the structure by Evolutionary Conservation</text> | |||
</jmolCheckbox> | |||
</jmol>, as determined by [http://consurfdb.tau.ac.il/ ConSurfDB]. | |||
You may read the [[Conservation%2C_Evolutionary|explanation]] | |||
of the method and the full data available from | |||
[http://bental.tau.ac.il/new_ConSurfDB/main_output.php?pdb_ID=1ubq ConSurf]. | |||
<!-- end of content inserted by the ConSurf template --> | |||
Ubiquitin can not only be found in the nucleus, but in the cytoplasm and cell-surface membrane as well<ref name="mainpaper"/>. | Ubiquitin can not only be found in the nucleus, but in the cytoplasm and cell-surface membrane as well<ref name="mainpaper"/>. | ||
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Infectious agents can manipulate ubiquitin or deubiquitination and one such protein is Chlamydia trachomatis. Chlamydia trachomatis' protein Cdu-1 catalyzes the hydrolysis of ubiquitin chains from Mcl-1. When polyubiquitnated, Mcl-1 is destined to be degraded by the proteasome, lowering the level of Mcl-1 and subsequently leading to apoptosis. The activity of Cdu-1 counteracts this by removing the ubiquitin, thus leading to higher levels of Mcl-1 in the cell. Additional information can be found here [[User:Karsten Theis/5B5Q]] | Infectious agents can manipulate ubiquitin or deubiquitination and one such protein is Chlamydia trachomatis. Chlamydia trachomatis' protein Cdu-1 catalyzes the hydrolysis of ubiquitin chains from Mcl-1. When polyubiquitnated, Mcl-1 is destined to be degraded by the proteasome, lowering the level of Mcl-1 and subsequently leading to apoptosis. The activity of Cdu-1 counteracts this by removing the ubiquitin, thus leading to higher levels of Mcl-1 in the cell. Additional information can be found here [[User:Karsten Theis/5B5Q]] | ||
SEE ALSO [[Tumor susceptibility gene 101]] | |||
</StructureSection> | </StructureSection> | ||
Latest revision as of 14:13, 18 November 2019
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3D structures of ubiqitin
References
Proteopedia Page Contributors and Editors (what is this?)
Jaclyn Gordon, Joel L. Sussman, Karsten Theis, Andrea Gorrell, Michal Harel, Alexander Berchansky, David Canner





