Ubiquitin Structure & Function: Difference between revisions

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The first step of ubiquitin activation involves the formation of a ubiqiotin-adenylate intermediate.  This reaction requires an E1 ubiquitin-activating enzyme.  The second step of ubiquitin activation transfers ubiquitin to the E1 active site cysteine residue and AMP is released. This step results in a thioester linkage between the C-terminal carboxyl group of ubiquitin and the E1 cysteine sulfhydryl group.
The first step of ubiquitin activation involves the formation of a ubiqiotin-adenylate intermediate.  This reaction requires an E1 ubiquitin-activating enzyme.  The second step of ubiquitin activation transfers ubiquitin to the E1 active site cysteine residue and AMP is released. This step results in a thioester linkage between the C-terminal carboxyl group of ubiquitin and the E1 cysteine sulfhydryl group.
=== Ubiquitin Conjugation ===
=== Ubiquitin Conjugation ===
[[Image:proteosome length.png|350 px|center]][[Image:proteosome top.png|350 px|center]]
The activated ubiquitin in then transferred to a ubiquitin-conjugating enzyme, E2 through a trans-thiolesteration reaction.  Ubiquitin is then transferred to the ε-amino group of a lysine chain on the target protein.  An isopeptide bond is now formed between the carboxyl terminal of ubiquitin and the ε-amino group of the target protein lysine residue.  This is accomplished by E2 directly.
The activated ubiquitin in then transferred to a ubiquitin-conjugating enzyme, E2 through a trans-thiolesteration reaction.  Ubiquitin is then transferred to the ε-amino group of a lysine chain on the target protein.  An isopeptide bond is now formed between the carboxyl terminal of ubiquitin and the ε-amino group of the target protein lysine residue.  This is accomplished by E2 directly.
[[Image:diubq.png|350 px|right]]
[[Image:diubq.png|350 px|right]]