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1.
Structure ; 21(10): 1769-77, 2013 Oct 08.
Artigo em Inglês | MEDLINE | ID: mdl-23972472

RESUMO

The mitotic regulator Pin1 plays an important role in protein quality control and age-related medical conditions such as Alzheimer disease and Parkinson disease. Although its cellular role has been thoroughly investigated during the past decade, the molecular mechanisms underlying its function remain elusive. We provide evidence for interactions between the two domains of Pin1. Several residues displayed unequivocal peak splits in nuclear magnetic resonance spectra, indicative of two different conformational states in equilibrium. Pareto analysis of paramagnetic relaxation enhancement data demonstrates that the two domains approach each other upon addition of a nonpeptidic ligand. Titration experiments with phosphorylated peptides monitored by fluorescence anisotropy and chemical shift perturbation indicate that domain interactions increase Pin1's affinity toward peptide ligands. We propose this interplay of the domains and ligands to be a general mechanism for a large class of two-domain proteins.


Assuntos
Peptidilprolil Isomerase/química , Fosfopeptídeos/química , Polarização de Fluorescência , Humanos , Ligantes , Modelos Moleculares , Simulação de Dinâmica Molecular , Peptidilprolil Isomerase de Interação com NIMA , Ressonância Magnética Nuclear Biomolecular , Polietilenoglicóis/química , Ligação Proteica , Domínios e Motivos de Interação entre Proteínas , Estrutura Secundária de Proteína , Soluções , Solventes/química , Termodinâmica
2.
Biochemistry ; 51(24): 4909-21, 2012 Jun 19.
Artigo em Inglês | MEDLINE | ID: mdl-22620485

RESUMO

The Ser/Thr kinase target of rapamycin (TOR) is a central controller of cellular growth and metabolism. Misregulation of TOR signaling is involved in metabolic and neurological disorders and tumor formation. TOR can be inhibited by association of a complex of rapamycin and FKBP12 to the FKBP12-rapamycin binding (FRB) domain. This domain was further proposed to interact with phosphatidic acid (PA), a lipid second messenger present in cellular membranes. Because mammalian TOR has been localized at various cellular membranes and in the nucleus, the output of TOR signaling may depend on its localization, which is expected to be influenced by the interaction with complex partners and regulators in response to cellular signals. Here, we present a detailed characterization of the interaction of the FRB domain with PA and how it is influenced by the surrounding membrane environment. On the basis of nuclear magnetic resonance- and circular dichroism-monitored binding studies using different neutral and negatively charged lipids as well as different membrane mimetics (micelles, bicelles, and liposomes), the FRB domain may function as a conditional peripheral membrane protein. However, the data for the isolated domain just indicate an increased affinity for negatively charged lipids and membrane patches but no specific preference for PA or PA-enriched regions. The membrane-mimetic environment induces strong conformational changes that largely maintain the α-helical secondary structure content but presumably disperse the helices in the lipidic environment. Consistent with overlapping binding surfaces for different lipids and the FKBP12-rapamycin complex, binding of the inhibitor complex protects the FRB domain from interactions with membrane mimetics at lower lipid concentrations.


Assuntos
Membrana Celular/química , Lipossomos/farmacologia , Micelas , Ácidos Fosfatídicos/farmacologia , Sirolimo/metabolismo , Serina-Treonina Quinases TOR/química , Proteína 1A de Ligação a Tacrolimo/metabolismo , Humanos , Modelos Moleculares , Estrutura Secundária de Proteína/efeitos dos fármacos , Estrutura Terciária de Proteína/efeitos dos fármacos , Serina-Treonina Quinases TOR/metabolismo
3.
J Am Chem Soc ; 133(50): 20096-9, 2011 Dec 21.
Artigo em Inglês | MEDLINE | ID: mdl-22081960

RESUMO

Parvulins compose a family of small peptidyl-prolyl isomerases (PPIases) involved in protein folding and protein quality control. A number of amino acids in the catalytic cavity are highly conserved, but their precise role within the catalytic mechanism is unknown. The 0.8 Å crystal structure of the prolyl isomerase domain of parvulin Par14 shows the electron density of hydrogen atoms between the D74, H42, H123, and T118 side chains. This threonine residue has previously not been associated with catalysis, but a corresponding T152A mutant of Pin1 shows a dramatic reduction of catalytic activity without compromising protein stability. The observed catalytic tetrad is strikingly conserved in Pin1- and parvulin-type proteins and hence constitutes a common feature of small peptidyl prolyl isomerases.


Assuntos
Ligação de Hidrogênio , Peptidilprolil Isomerase/química , Catálise , Mutação , Peptidilprolil Isomerase de Interação com NIMA , Peptidilprolil Isomerase/genética , Dobramento de Proteína
4.
Biochem Biophys Res Commun ; 395(3): 420-5, 2010 May 07.
Artigo em Inglês | MEDLINE | ID: mdl-20382111

RESUMO

3'-Phospho-adenosine-5'-phosphosulphate (PAPS) synthases are fundamental to mammalian sulphate metabolism. These enzymes have recently been linked to a rising number of human diseases. Despite many studies, it is not yet understood how the mammalian PAPS synthases 1 and 2 interact with each other. We provide first evidence for heterodimerisation of these two enzymes by pull-down assays and Förster resonance energy transfer (FRET) measurements. Kinetics of dimer dissociation/association indicates that these heterodimers form as soon as PAPSS1 and -S2 encounter each other in solution. Affinity of the homo- and heterodimers were found to be in the low nanomolar range using anisotropy measurements employing proteins labelled with the fluorescent dye IAEDANS that--in spite of its low quantum yield--is well suited for anisotropy due to its large Stokes shift. Within its kinase domain, the PAPS synthase heterodimer displays similar substrate inhibition by adenosine-5'-phosphosulphate (APS) as the homodimers. Due to divergent catalytic efficacies of PAPSS1 and -S2, the heterodimer might be a way of regulating PAPS synthase function within mammalian cells.


Assuntos
Complexos Multienzimáticos/química , Sulfato Adenililtransferase/química , Sulfatos/química , Anisotropia , Ativação Enzimática , Humanos , Isoenzimas/química , Isoenzimas/metabolismo , Cinética , Complexos Multienzimáticos/metabolismo , Multimerização Proteica , Sulfato Adenililtransferase/metabolismo , Sulfatos/metabolismo
5.
Biol Chem ; 390(5-6): 417-26, 2009.
Artigo em Inglês | MEDLINE | ID: mdl-19284291

RESUMO

Ena/VASP homology 1 (EVH1) domains are polyproline binding domains that are present in a wide range of adaptor proteins, among them Ena/VASP proteins involved in actin remodeling and axonal guidance. The interaction of ActA, a transmembrane protein from the food-borne pathogen Listeria monocytogenes, with EVH1 domains has been shown to be crucial for recruitment of the host's actin skeleton and, as a consequence, for the infectivity of this bacterium. We present the structure of a synthetic high-affinity Mena EVH1 ligand, pGolemi, capable of paralog-specific binding, solved by NMR spectroscopy. This peptide shares the common pancreatic peptide fold with its scaffold, avian pancreatic peptide, but shows pivotal differences in the amino-terminus. The interplay of spatial fixation and flexibility appears to be the reason for its high affinity towards Mena EVH1. Combined with earlier investigations, our structural data shed light on the specificity determinants of pGolemi and the importance of additional binding epitopes around the residues Thr74 and Phe32 on EVH1 domains regulating paralog specificity. Our results are expected to facilitate the design of other high-affinity, paralog-specific EVH1 domain ligands, and serve as a fundament for the investigation of the molecular mode of action of EVH1 domains.


Assuntos
Proteínas de Ligação a DNA/química , Listeria monocytogenes/química , Peptídeos/química , Sequência de Aminoácidos , Animais , Proteínas Aviárias/química , Proteínas Aviárias/metabolismo , Proteínas de Bactérias/química , Proteínas de Bactérias/metabolismo , Proteínas de Ligação a DNA/metabolismo , Ligantes , Listeria monocytogenes/metabolismo , Proteínas de Membrana/química , Proteínas de Membrana/metabolismo , Modelos Moleculares , Dados de Sequência Molecular , Ressonância Magnética Nuclear Biomolecular , Peptídeos/metabolismo , Domínios Proteicos Ricos em Prolina , Ligação Proteica , Conformação Proteica , Alinhamento de Sequência , Homologia Estrutural de Proteína
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