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1.
Cell ; 134(6): 995-1006, 2008 Sep 19.
Artigo em Inglês | MEDLINE | ID: mdl-18805092

RESUMO

Cullin-RING ligases (CRLs) comprise the largest ubiquitin E3 subclass, in which a central cullin subunit links a substrate-binding adaptor with an E2-binding RING. Covalent attachment of the ubiquitin-like protein NEDD8 to a conserved C-terminal domain (ctd) lysine stimulates CRL ubiquitination activity and prevents binding of the inhibitor CAND1. Here we report striking conformational rearrangements in the crystal structure of NEDD8~Cul5(ctd)-Rbx1 and SAXS analysis of NEDD8~Cul1(ctd)-Rbx1 relative to their unmodified counterparts. In NEDD8ylated CRL structures, the cullin WHB and Rbx1 RING subdomains are dramatically reoriented, eliminating a CAND1-binding site and imparting multiple potential catalytic geometries to an associated E2. Biochemical analyses indicate that the structural malleability is important for both CRL NEDD8ylation and subsequent ubiquitination activities. Thus, our results point to a conformational control of CRL activity, with ligation of NEDD8 shifting equilibria to disfavor inactive CAND1-bound closed architectures, and favor dynamic, open forms that promote polyubiquitination.


Assuntos
Proteínas Culina/química , Proteínas Culina/metabolismo , Ubiquitinas/química , Ubiquitinas/metabolismo , Sítios de Ligação , Cristalografia por Raios X , Humanos , Modelos Moleculares , Proteína NEDD8 , Estrutura Terciária de Proteína , Fatores de Transcrição/metabolismo , Ubiquitinação
2.
Mol Cell ; 33(4): 483-95, 2009 Feb 27.
Artigo em Inglês | MEDLINE | ID: mdl-19250909

RESUMO

Ubiquitin and ubiquitin-like proteins (UBLs) are directed to targets by cascades of E1, E2, and E3 enzymes. The largest ubiquitin E3 subclass consists of cullin-RING ligases (CRLs), which contain one each of several cullins (CUL1, -2, -3, -4, or -5) and RING proteins (RBX1 or -2). CRLs are activated by ligation of the UBL NEDD8 to a conserved cullin lysine. How is cullin NEDD8ylation specificity established? Here we report that, like UBE2M (also known as UBC12), the previously uncharacterized E2 UBE2F is a NEDD8-conjugating enzyme in vitro and in vivo. Biochemical and structural analyses indicate how plasticity of hydrophobic E1-E2 interactions and E1 conformational flexibility allow one E1 to charge multiple E2s. The E2s have distinct functions, with UBE2M/RBX1 and UBE2F/RBX2 displaying different target cullin specificities. Together, these studies reveal the molecular basis for and functional importance of hierarchical expansion of the NEDD8 conjugation system in establishing selective CRL activation.


Assuntos
Proteínas Culina/metabolismo , Ubiquitina-Proteína Ligases/metabolismo , Ubiquitinas/metabolismo , Sequência de Aminoácidos , Animais , Sítios de Ligação , Células Cultivadas , Camundongos , Modelos Moleculares , Dados de Sequência Molecular , Células NIH 3T3 , Conformação Proteica , Dobramento de Proteína , Ubiquitina-Proteína Ligases/química , Ubiquitinas/química
3.
Nature ; 445(7126): 394-8, 2007 Jan 25.
Artigo em Inglês | MEDLINE | ID: mdl-17220875

RESUMO

Ubiquitin-like proteins (UBLs) are conjugated by dynamic E1-E2-E3 enzyme cascades. E1 enzymes activate UBLs by catalysing UBL carboxy-terminal adenylation, forming a covalent E1 throught UBL thioester intermediate, and generating a thioester-linked E2 throught UBL product, which must be released for subsequent reactions. Here we report the structural analysis of a trapped UBL activation complex for the human NEDD8 pathway, containing NEDD8's heterodimeric E1 (APPBP1-UBA3), two NEDD8s (one thioester-linked to E1, one noncovalently associated for adenylation), a catalytically inactive E2 (Ubc12), and MgATP. The results suggest that a thioester switch toggles E1-E2 affinities. Two E2 binding sites depend on NEDD8 being thioester-linked to E1. One is unmasked by a striking E1 conformational change. The other comes directly from the thioester-bound NEDD8. After NEDD8 transfer to E2, reversion to an alternate E1 conformation would facilitate release of the E2 throught NEDD8 thioester product. Thus, transferring the UBL's thioester linkage between successive conjugation enzymes can induce conformational changes and alter interaction networks to drive consecutive steps in UBL cascades.


Assuntos
Ésteres/metabolismo , Compostos de Sulfidrila/metabolismo , Enzimas Ativadoras de Ubiquitina/metabolismo , Enzimas de Conjugação de Ubiquitina/metabolismo , Ubiquitinas/metabolismo , Trifosfato de Adenosina/metabolismo , Sítios de Ligação , Cristalografia por Raios X , Ésteres/química , Humanos , Modelos Moleculares , Proteína NEDD8 , Conformação Proteica , Relação Estrutura-Atividade , Enzimas Ativadoras de Ubiquitina/química , Enzimas de Conjugação de Ubiquitina/química , Ubiquitinas/química
4.
Clin Imaging ; 54: 108-111, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30612033

RESUMO

PURPOSE: To improve the workflow and productivity at a Breast Imaging Center, primarily by decreasing the no-show rate. MATERIALS AND METHODS: Mammography clinic data were recorded and analyzed for a 6-month period prior to our intervention. Personal pre-appointment phone calls were then instituted for all patients, following which data was recorded and analyzed for a 2-month period. Analyses compared pre- and post-intervention data. RESULTS: No-shows were significantly reduced (p < 0.001) from 20.99% (907/3775) pre-intervention to 7.07% (69/976) post-intervention. Calling ahead to cancel an appointment from those who either were no-shows or canceled their appointment significantly improved (p < 0.001) from only 2.81% (22/784) calling to cancel pre-intervention to 25.00% (23/92) calling to cancel post-intervention. CONCLUSIONS: Through systematic pre-appointment phone calls and documentation, we were able to achieve a very significant decrease in the no-show rate at our Breast Imaging Center. We believe that our intervention can be useful for other radiology groups to implement in their practices to reduce no-show rates.


Assuntos
Agendamento de Consultas , Mama/diagnóstico por imagem , Mamografia , Sistemas de Alerta , Telefone , Neoplasias da Mama/diagnóstico , Feminino , Humanos
5.
PLoS One ; 5(12): e15805, 2010 Dec 30.
Artigo em Inglês | MEDLINE | ID: mdl-21209884

RESUMO

Canonical ubiquitin-like proteins (UBLs) such as ubiquitin, Sumo, NEDD8, and ISG15 are ligated to targets by E1-E2-E3 multienzyme cascades. The Sumo cascade, conserved among all eukaryotes, regulates numerous biological processes including protein localization, transcription, DNA replication, and mitosis. Sumo conjugation is initiated by the heterodimeric Aos1-Uba2 E1 enzyme (in humans called Sae1-Uba2), which activates Sumo's C-terminus, binds the dedicated E2 enzyme Ubc9, and promotes Sumo C-terminal transfer between the Uba2 and Ubc9 catalytic cysteines. To gain insights into details of E1-E2 interactions in the Sumo pathway, we determined crystal structures of the C-terminal ubiquitin fold domain (ufd) from yeast Uba2 (Uba2(ufd)), alone and in complex with Ubc9. The overall structures of both yeast Uba2(ufd) and Ubc9 superimpose well on their individual human counterparts, suggesting conservation of fundamental features of Sumo conjugation. Docking the Uba2(ufd)-Ubc9 and prior full-length human Uba2 structures allows generation of models for steps in Sumo transfer from Uba2 to Ubc9, and supports the notion that Uba2 undergoes remarkable conformational changes during the reaction. Comparisons to previous structures from the NEDD8 cascade demonstrate that UBL cascades generally utilize some parallel E1-E2 interaction surfaces. In addition, the structure of the Uba2(ufd)-Ubc9 complex reveals interactions unique to Sumo E1 and E2. Comparison with a previous Ubc9-E3 complex structure demonstrates overlap between Uba2 and E3 binding sites on Ubc9, indicating that loading with Sumo and E3-catalyzed transfer to substrates are strictly separate steps. The results suggest mechanisms establishing specificity and order in Sumo conjugation cascades.


Assuntos
Saccharomyces cerevisiae/metabolismo , Proteínas Modificadoras Pequenas Relacionadas à Ubiquitina/química , Enzimas Ativadoras de Ubiquitina/química , Enzimas de Conjugação de Ubiquitina/química , Sequência de Aminoácidos , Catálise , Sequência Conservada , Cristalografia por Raios X/métodos , Cisteína/química , Humanos , Dados de Sequência Molecular , Proteína NEDD8 , Ligação Proteica , Homologia de Sequência de Aminoácidos , Ubiquitina/química , Ubiquitinas/química
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