Journal:MicroPubl Biol:000606

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<b>Molecular Tour</b><br>
<b>Molecular Tour</b><br>
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Pseudoenzymes are a relatively new concept in biochemistry in which a catalytically dead enzyme (''e.g.'' based on loss of catalytic amino acids) still retains a function in the cell. This (sometimes essential) function can include allosteric regulation, protein scaffolding, signaling, and other roles. Based on new structural information and previously published biochemical work <ref name='CharetteBaserga2010'>PMID: 20884785</ref>, we suggest that the ribosome assembly protein Utp25/def <ref name='CharetteBaserga2010'/><ref name='GoldfederOliveira2010'>PMID: 20528918</ref>) is a pseudoenzyme. More specifically, we propose that Utp25 is the first fully validated pseudohelicase, a new class of pseudoenzyme. This is based on Utp25 being an essential protein with vestigial but non-functional helicase motifs (both loss of catalytic residues and mutation of functional motifs resulting in no discernable phenotype <ref name='CharetteBaserga2010'/>). Here, we show that the Utp25 AlphaFold predicted structure adopts, both globally and locally at functional motifs, a structure that is highly similar to that of DEAD-box RNA helicases (Figure 1) making it an essential but catalytically-dead pseudohelicase.
Pseudoenzymes are a relatively new concept in biochemistry in which a catalytically dead enzyme (''e.g.'' based on loss of catalytic amino acids) still retains a function in the cell. This (sometimes essential) function can include allosteric regulation, protein scaffolding, signaling, and other roles. Based on new structural information and previously published biochemical work <ref name='CharetteBaserga2010'>PMID: 20884785</ref>, we suggest that the ribosome assembly protein Utp25/def <ref name='CharetteBaserga2010'/><ref name='GoldfederOliveira2010'>PMID: 20528918</ref>) is a pseudoenzyme. More specifically, we propose that Utp25 is the first fully validated pseudohelicase, a new class of pseudoenzyme. This is based on Utp25 being an essential protein with vestigial but non-functional helicase motifs (both loss of catalytic residues and mutation of functional motifs resulting in no discernable phenotype <ref name='CharetteBaserga2010'/>). Here, we show that the Utp25 AlphaFold predicted structure adopts, both globally and locally at functional motifs, a structure that is highly similar to that of DEAD-box RNA helicases (Figure 1) making it an essential but catalytically-dead pseudohelicase.

Revision as of 03:10, 31 August 2022

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Alexander Berchansky, Jaime Prilusky

This page complements a publication in scientific journals and is one of the Proteopedia's Interactive 3D Complement pages. For aditional details please see I3DC.
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