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SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket

The flavoprotein cryptochromes (CRYs) act as blue-light receptors in plants and insects, but perform light-independent functions at the core of the mammalian circadian clock. To drive clock oscillations, mammalian CRYs associate with the Period proteins (PERs) and together inhibit the transcription...

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Autores principales: Xing, Weiman, Busino, Luca, Hinds, Thomas R., Marionni, Samuel T., Saifee, Nabiha H., Bush, Matthew F., Pagano, Michele, Zheng, Ning
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3618506/
https://www.ncbi.nlm.nih.gov/pubmed/23503662
http://dx.doi.org/10.1038/nature11964
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author Xing, Weiman
Busino, Luca
Hinds, Thomas R.
Marionni, Samuel T.
Saifee, Nabiha H.
Bush, Matthew F.
Pagano, Michele
Zheng, Ning
author_facet Xing, Weiman
Busino, Luca
Hinds, Thomas R.
Marionni, Samuel T.
Saifee, Nabiha H.
Bush, Matthew F.
Pagano, Michele
Zheng, Ning
author_sort Xing, Weiman
collection PubMed
description The flavoprotein cryptochromes (CRYs) act as blue-light receptors in plants and insects, but perform light-independent functions at the core of the mammalian circadian clock. To drive clock oscillations, mammalian CRYs associate with the Period proteins (PERs) and together inhibit the transcription of their own genes. The SCF(Fbxl3) ubiquitin ligase complex controls this negative feedback loop by promoting CRY ubiquitylation and degradation. Yet, the molecular mechanisms of their interactions and the functional role of flavin adenine dinucleotide (FAD) binding in CRYs remain poorly understood. Here we report crystal structures of mammalian CRY2 in its apo, FAD-bound, and Fbxl3-Skp1-complexed forms. Distinct from other cryptochromes of known structures, mammalian CRY2 binds FAD dynamically with an open cofactor pocket. Strikingly, the F-box protein Fbxl3 captures CRY2 by simultaneously occupying its FAD-binding pocket with a conserved C-terminal tail and burying its PER-binding interface. This novel F-box protein-substrate bipartite interaction is susceptible to disruption by both FAD and PERs, suggesting a new avenue for pharmacological targeting of the complex and a multifaceted regulatory mechanism of CRY ubiquitylation.
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spelling pubmed-36185062013-10-04 SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket Xing, Weiman Busino, Luca Hinds, Thomas R. Marionni, Samuel T. Saifee, Nabiha H. Bush, Matthew F. Pagano, Michele Zheng, Ning Nature Article The flavoprotein cryptochromes (CRYs) act as blue-light receptors in plants and insects, but perform light-independent functions at the core of the mammalian circadian clock. To drive clock oscillations, mammalian CRYs associate with the Period proteins (PERs) and together inhibit the transcription of their own genes. The SCF(Fbxl3) ubiquitin ligase complex controls this negative feedback loop by promoting CRY ubiquitylation and degradation. Yet, the molecular mechanisms of their interactions and the functional role of flavin adenine dinucleotide (FAD) binding in CRYs remain poorly understood. Here we report crystal structures of mammalian CRY2 in its apo, FAD-bound, and Fbxl3-Skp1-complexed forms. Distinct from other cryptochromes of known structures, mammalian CRY2 binds FAD dynamically with an open cofactor pocket. Strikingly, the F-box protein Fbxl3 captures CRY2 by simultaneously occupying its FAD-binding pocket with a conserved C-terminal tail and burying its PER-binding interface. This novel F-box protein-substrate bipartite interaction is susceptible to disruption by both FAD and PERs, suggesting a new avenue for pharmacological targeting of the complex and a multifaceted regulatory mechanism of CRY ubiquitylation. 2013-03-17 2013-04-04 /pmc/articles/PMC3618506/ /pubmed/23503662 http://dx.doi.org/10.1038/nature11964 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Xing, Weiman
Busino, Luca
Hinds, Thomas R.
Marionni, Samuel T.
Saifee, Nabiha H.
Bush, Matthew F.
Pagano, Michele
Zheng, Ning
SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket
title SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket
title_full SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket
title_fullStr SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket
title_full_unstemmed SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket
title_short SCF(Fbxl3) Ubiquitin Ligase Targets Cryptochromes at Their Cofactor Pocket
title_sort scf(fbxl3) ubiquitin ligase targets cryptochromes at their cofactor pocket
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3618506/
https://www.ncbi.nlm.nih.gov/pubmed/23503662
http://dx.doi.org/10.1038/nature11964
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