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1.
J Struct Biol ; 176(3): 279-91, 2011 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-21933716

RESUMO

RuvBL1 (RuvB-like 1) and its homolog RuvBL2 are evolutionarily highly conserved AAA(+) ATPases essential for many cellular activities. They play an important role in chromatin remodeling, transcriptional regulation and DNA damage repair. RuvBL1 and RuvBL2 are overexpressed in different types of cancer and interact with major oncogenic factors, such as ß-catenin and c-Myc regulating their function. We solved the first three-dimensional crystal structure of the human RuvBL complex with a truncated domain II and show that this complex is competent for helicase activity. The structure reveals a dodecamer consisting of two heterohexameric rings with alternating RuvBL1 and RuvBL2 monomers bound to ADP/ATP, that interact with each other via the retained part of domain II. The dodecameric quaternary structure of the R1ΔDII/R2ΔDII complex observed in the crystal structure was confirmed by small-angle X-ray scattering analysis. Interestingly, truncation of domain II led to a substantial increase in ATP consumption of RuvBL1, RuvBL2 and their complex. In addition, we present evidence that DNA unwinding of the human RuvBL proteins can be auto-inhibited by domain II, which is not present in the homologous bacterial helicase RuvB. Our data give new insights into the molecular arrangement of RuvBL1 and RuvBL2 and strongly suggest that in vivo activities of these highly interesting therapeutic drug targets are regulated by cofactors inducing conformational changes via domain II in order to modulate the enzyme complex into its active state.


Assuntos
Proteínas de Transporte/química , DNA Helicases/química , Substâncias Macromoleculares/química , ATPases Associadas a Diversas Atividades Celulares , Domínio Catalítico , Cristalografia por Raios X , Humanos , Multimerização Proteica , Estrutura Quaternária de Proteína , Estrutura Terciária de Proteína
2.
Artigo em Inglês | MEDLINE | ID: mdl-18765919

RESUMO

The complex of RuvBL1 and its homologue RuvBL2, two evolutionarily highly conserved eukaryotic proteins belonging to the AAA(+) (ATPase associated with diverse cellular activities) family of ATPases, was co-expressed in Escherichia coli. For crystallization purposes, the flexible domains II of RuvBL1 and RuvBL2 were truncated. The truncated RuvBL1-RuvBL2 complex was crystallized using the hanging-drop vapour-diffusion method at 293 K. The crystals were hexagonal-shaped plates and belonged to either the orthorhombic space group C222(1), with unit-cell parameters a = 111.4, b = 188.0, c = 243.4 A and six monomers in the asymmetric unit, or the monoclinic space group P2(1), with unit-cell parameters a = 109.2, b = 243.4, c = 109.3 A, beta = 118.7 degrees and 12 monomers in the asymmetric unit. The crystal structure could be solved by molecular replacement in both possible space groups and the solutions obtained showed that the complex forms a dodecamer.


Assuntos
Proteínas de Transporte/química , Clonagem Molecular , DNA Helicases/química , ATPases Associadas a Diversas Atividades Celulares , Sequência de Aminoácidos , Proteínas de Transporte/genética , Proteínas de Transporte/isolamento & purificação , Proteínas de Transporte/metabolismo , Cristalização , Cristalografia por Raios X , DNA Helicases/genética , DNA Helicases/isolamento & purificação , DNA Helicases/metabolismo , Humanos , Dados de Sequência Molecular , Estrutura Terciária de Proteína , Deleção de Sequência , Homologia Estrutural de Proteína
4.
GMS Hyg Infect Control ; 8(1): Doc01, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23967387

RESUMO

Dental plaque critically affects the etiology of caries, periodontitis and periimplantitis. The mechanical removal of plaque can only be performed partially due to limited accessibility. Therefore, plaque still represents one of the major therapeutic challenges. Even though antiseptic mouth rinses reduce the extent of biofilm temporarily, plaque removal remains incomplete and continuous usage can even result in side effects. Here we tested argon plasma produced by kinpen09 as one option to inactivate microorganisms and to eliminate plaque. S. sanguinis biofilms cultivated in either the European Biofilm Reactor (EUREBI) or in 24 well plates were treated with argon plasma. In both test systems a homogeneous, good analyzable and stable biofilm was produced on the surface of titan plates within 72 h (>6,9 log10 CFU/ml). Despite the significantly more powerful biofilm production in EUREBI, the difference of 0.4 log10 CFU/ml between EUREBI and the 24 well plates was practically not relevant. For that reason both test models were equally qualified for the analysis of efficacy of cold atmospheric pressure plasma. We demonstrate a significant reduction of the biofilm compared to the control in both test models. After plasma application of 180 s the biofilm produced in EUREBI or in 24 well plates was decreased by 0.6 log10 CFU/ml or 0.5 log10 CFU/ml, respectively. In comparison to recently published studies analyzing the efficacy of kinpen09, S. sanguinis produces a hardly removable biofilm. Future investigations using reduced distances between plasma source and biofilm, various compositions of plasma and alternative plasma sources will contribute to further optimization of the efficacy against S. sanguinis biofilms.

5.
Mol Biol Cell ; 23(22): 4416-29, 2012 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-22993212

RESUMO

Clathrin coat accessory proteins play key roles in transport mediated by clathrin-coated vesicles. Yeast Irc6p and the related mammalian p34 are putative clathrin accessory proteins that interact with clathrin adaptor complexes. We present evidence that Irc6p functions in clathrin-mediated traffic between the trans-Golgi network and endosomes, linking clathrin adaptor complex AP-1 and the Rab GTPase Ypt31p. The crystal structure of the Irc6p N-terminal domain revealed a G-protein fold most related to small G proteins of the Rab and Arf families. However, Irc6p lacks G-protein signature motifs and high-affinity GTP binding. Also, mutant Irc6p lacking candidate GTP-binding residues retained function. Mammalian p34 rescued growth defects in irc6 cells, indicating functional conservation, and modeling predicted a similar N-terminal fold in p34. Irc6p and p34 also contain functionally conserved C-terminal regions. Irc6p/p34-related proteins with the same two-part architecture are encoded in genomes of species as diverse as plants and humans. Together these results define Irc6p/p34 as a novel type of conserved clathrin accessory protein and founding members of a new G protein-like family.


Assuntos
Proteínas Adaptadoras de Transporte Vesicular/fisiologia , Proteínas Monoméricas de Ligação ao GTP/fisiologia , Proteínas de Saccharomyces cerevisiae/fisiologia , Fator 1 de Ribosilação do ADP/química , Proteínas Adaptadoras de Transporte Vesicular/química , Proteínas Adaptadoras de Transporte Vesicular/metabolismo , Sequência de Aminoácidos , Transporte Biológico , Clatrina/metabolismo , Sequência Conservada , Cristalografia por Raios X , Endossomos/metabolismo , Dados de Sequência Molecular , Proteínas Monoméricas de Ligação ao GTP/química , Proteínas Monoméricas de Ligação ao GTP/metabolismo , Mapeamento de Interação de Proteínas , Estrutura Terciária de Proteína , Proteínas de Saccharomyces cerevisiae/química , Proteínas de Saccharomyces cerevisiae/genética , Proteínas de Saccharomyces cerevisiae/metabolismo , Alinhamento de Sequência , Proteínas rab de Ligação ao GTP/química , Proteínas rab de Ligação ao GTP/genética , Proteínas rab de Ligação ao GTP/metabolismo , Rede trans-Golgi/metabolismo , Rede trans-Golgi/fisiologia
6.
J Biol Chem ; 281(50): 38918-29, 2006 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-17060327

RESUMO

RuvBL1 is an evolutionarily highly conserved eukaryotic protein belonging to the AAA(+)-family of ATPases (ATPase associated with diverse cellular activities). It plays important roles in essential signaling pathways such as the c-Myc and Wnt pathways in chromatin remodeling, transcriptional and developmental regulation, and DNA repair and apoptosis. Herein we present the three-dimensional structure of the selenomethionine variant of human RuvBL1 refined using diffraction data to 2.2A of resolution. The crystal structure of the hexamer is formed of ADP-bound RuvBL1 monomers. The monomers contain three domains, of which the first and the third are involved in ATP binding and hydrolysis. Although it has been shown that ATPase activity of RuvBL1 is needed for several in vivo functions, we could only detect a marginal activity with the purified protein. Structural homology and DNA binding studies demonstrate that the second domain, which is unique among AAA(+) proteins and not present in the bacterial homolog RuvB, is a novel DNA/RNA-binding domain. We were able to demonstrate that RuvBL1 interacted with single-stranded DNA/RNA and double-stranded DNA. The structure of the RuvBL1.ADP complex, combined with our biochemical results, suggest that although RuvBL1 has all the structural characteristics of a molecular motor, even of an ATP-driven helicase, one or more as yet undetermined cofactors are needed for its enzymatic activity.


Assuntos
Proteínas de Transporte/química , DNA Helicases/química , ATPases Associadas a Diversas Atividades Celulares , Sequência de Aminoácidos , Sequência de Bases , Proteínas de Transporte/isolamento & purificação , Proteínas de Transporte/metabolismo , Cristalografia por Raios X , DNA Helicases/isolamento & purificação , DNA Helicases/metabolismo , Primers do DNA , Humanos , Modelos Moleculares , Dados de Sequência Molecular , Ácidos Nucleicos/metabolismo , Conformação Proteica , Homologia de Sequência de Aminoácidos
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