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1.
FEBS Lett ; 586(16): 2267-72, 2012 Jul 30.
Artigo em Inglês | MEDLINE | ID: mdl-22705156

RESUMO

Here we provide evidence that WNT-3a modulates platelet function by regulating the activity of four key GTPase proteins: Rap1, Cdc42, Rac1 and RhoA. We observe WNT-3a to differentially regulate small GTPase activity in platelets, promoting the GDP-bound form of Rap1b to inhibit integrin-α(IIb)ß(3) adhesion, while concomitantly increasing Cdc42 and Rac1-GTP levels thereby disrupting normal platelet spreading. We demonstrate that Daam-1 interacts with Dishevelled upon platelet activation, which correlates with increased RhoA-GTP levels. Upon pre-treatment with WNT-3a, this complex disassociates, concurrent with a reduction in RhoA-GTP. Together these data implicate WNT-3a as a novel upstream regulator of small GTPase activity in platelets.


Assuntos
Plaquetas/metabolismo , Regulação da Expressão Gênica , Proteínas Monoméricas de Ligação ao GTP/metabolismo , Proteína Wnt3A/metabolismo , Proteínas Adaptadoras de Transdução de Sinal/metabolismo , Plaquetas/citologia , Densitometria/métodos , Matriz Extracelular/metabolismo , Guanosina Trifosfato/química , Humanos , Hidrólise , Proteínas dos Microfilamentos , Modelos Biológicos , Proteínas Recombinantes/metabolismo , Transdução de Sinais , Proteína cdc42 de Ligação ao GTP/metabolismo , Proteínas rac1 de Ligação ao GTP/metabolismo , Proteínas rap de Ligação ao GTP/metabolismo , Proteínas rho de Ligação ao GTP
2.
Blood ; 114(7): 1396-404, 2009 Aug 13.
Artigo em Inglês | MEDLINE | ID: mdl-19528539

RESUMO

The small guanine-nucleotide-binding protein Rap1 plays a key role in platelet aggregation and hemostasis, and we recently identified Rap1GAP2 as the only GTPase-activating protein of Rap1 in platelets. In search of Rap1GAP2-associated proteins, we performed yeast-2-hybrid screening and found synaptotagmin-like protein 1 (Slp1) as a new binding partner. We confirmed the interaction of Rap1GAP2 and Slp1 in transfected COS-1 and HeLa cells and at endogenous level in human platelets. Mapping studies showed that Rap1GAP2 binds through amino acids T524-K525-X-T527 within its C-terminus to the C2A domain of Slp1. Slp1 contains a Rab27-binding domain, and we demonstrate that Rap1GAP2, Slp1, and Rab27 form a trimeric complex in transfected cells and in platelets. Purified Slp1 dose-dependently decreased dense granule secretion in streptolysin-O-permeabilized platelets stimulated with calcium or guanosine 5'-O-[gamma-thio] triphosphate. The isolated C2A domain of Slp1 had a stimulatory effect on granule secretion and reversed the inhibitory effect of full-length Slp1. Purified Rap1GAP2 augmented dense granule secretion of permeabilized platelets, whereas deletion of the Slp1-binding TKXT motif abolished the effect of Rap1GAP2. We conclude that Slp1 inhibits dense granule secretion in platelets and that Rap1GAP2 modulates secretion by binding to Slp1.


Assuntos
Plaquetas/metabolismo , Proteínas Ativadoras de GTPase/metabolismo , Complexos Multiproteicos/metabolismo , Vesículas Secretórias/metabolismo , Proteínas de Transporte Vesicular/metabolismo , Motivos de Aminoácidos/fisiologia , Animais , Células COS , Chlorocebus aethiops , Proteínas Ativadoras de GTPase/genética , Células HeLa , Humanos , Proteínas de Membrana , Complexos Multiproteicos/genética , Ligação Proteica/fisiologia , Estrutura Terciária de Proteína/fisiologia , Vesículas Secretórias/genética , Técnicas do Sistema de Duplo-Híbrido , Proteínas de Transporte Vesicular/genética , Proteínas rap1 de Ligação ao GTP/genética , Proteínas rap1 de Ligação ao GTP/metabolismo
3.
J Biol Chem ; 283(4): 2297-306, 2008 Jan 25.
Artigo em Inglês | MEDLINE | ID: mdl-18039662

RESUMO

GTPase-activating proteins are required to terminate signaling by Rap1, a small guanine nucleotide-binding protein that controls integrin activity and cell adhesion. Recently, we identified Rap1GAP2, a GTPase-activating protein of Rap1 in platelets. Here we show that 14-3-3 proteins interact with phosphorylated serine 9 at the N terminus of Rap1GAP2. Platelet activation by ADP and thrombin enhances serine 9 phosphorylation and increases 14-3-3 binding to endogenous Rap1GAP2. Conversely, inhibition of platelets by endothelium-derived factors nitric oxide and prostacyclin disrupts 14-3-3 binding. These effects are mediated by cGMP- and cAMP-dependent protein kinases that phosphorylate Rap1GAP2 at serine 7, adjacent to the 14-3-3 binding site. 14-3-3 binding does not change the GTPase-activating function of Rap1GAP2 in vitro. However, 14-3-3 binding attenuates Rap1GAP2 mediated inhibition of cell adhesion. Our findings define a novel crossover point of activatory and inhibitory signaling pathways in platelets.


Assuntos
Proteínas 14-3-3/metabolismo , Plaquetas/metabolismo , Proteínas Ativadoras de GTPase/metabolismo , Adesividade Plaquetária/fisiologia , Transdução de Sinais/fisiologia , Proteínas 14-3-3/genética , Difosfato de Adenosina/metabolismo , Difosfato de Adenosina/farmacologia , Animais , Plaquetas/citologia , Células COS , Chlorocebus aethiops , AMP Cíclico/metabolismo , GMP Cíclico/metabolismo , Endotélio Vascular/citologia , Endotélio Vascular/metabolismo , Epoprostenol/metabolismo , Proteínas Ativadoras de GTPase/genética , Células HeLa , Humanos , Óxido Nítrico/metabolismo , Fosforilação/efeitos dos fármacos , Adesividade Plaquetária/efeitos dos fármacos , Transdução de Sinais/efeitos dos fármacos , Trombina/metabolismo , Trombina/farmacologia , Proteínas rap1 de Ligação ao GTP/genética , Proteínas rap1 de Ligação ao GTP/metabolismo
4.
J Biol Chem ; 282(18): 13656-63, 2007 May 04.
Artigo em Inglês | MEDLINE | ID: mdl-17329248

RESUMO

Phosphodiesterase type 2A (PDE2A) hydrolyzes cyclic nucleotides cAMP and cGMP, thus efficiently controlling cNMP-dependent signaling pathways. PDE2A is composed of an amino-terminal region, two regulatory GAF domains, and a catalytic domain. Cyclic nucleotide hydrolysis is known to be activated by cGMP binding to GAF-B; however, other mechanisms may operate to fine-tune local cyclic nucleotide levels. In a yeast two-hybrid screening we identified XAP2, a crucial component of the aryl hydrocarbon receptor (AhR) complex, as a major PDE2A-interacting protein. We mapped the XAP2 binding site to the GAF-B domain of PDE2A. PDE assays with purified proteins showed that XAP2 binding does not change the enzymatic activity of PDE2A. To analyze whether PDE2A could affect the function of XAP2, we studied nuclear translocation of AhR, i.e. the master transcription factor controlling the expression of multiple detoxification genes. Notably, regulation of AhR target gene expression is initiated by tetrachlorodibenzodioxin (TCDD) binding to AhR and by a poorly understood cAMP-dependent pathway followed by the translocation of AhR from the cytosol into the nucleus. Binding of PDE2A to XAP2 inhibited TCDD- and cAMP-induced nuclear translocation of AhR in Hepa1c1c7 hepatocytes. Furthermore, PDE2A attenuated TCDD-induced transcription in reporter gene assays. We conclude that XAP2 targets PDE2A to the AhR complex, thereby restricting AhR mobility, possibly by a local reduction of cAMP levels. Our results provide first insights into the elusive cAMP-dependent regulation of AhR.


Assuntos
Proteínas de Transporte/metabolismo , Núcleo Celular/metabolismo , Chaperonas Moleculares/metabolismo , Diester Fosfórico Hidrolases/metabolismo , Proteínas/metabolismo , Receptores de Hidrocarboneto Arílico/metabolismo , Transporte Ativo do Núcleo Celular/efeitos dos fármacos , Transporte Ativo do Núcleo Celular/fisiologia , Animais , Células COS , Proteínas de Transporte/genética , Núcleo Celular/genética , Chlorocebus aethiops , AMP Cíclico/metabolismo , GMP Cíclico/metabolismo , Nucleotídeo Cíclico Fosfodiesterase do Tipo 2 , Regulação da Expressão Gênica/efeitos dos fármacos , Regulação da Expressão Gênica/fisiologia , Células HeLa , Humanos , Peptídeos e Proteínas de Sinalização Intracelular , Chaperonas Moleculares/genética , Complexos Multiproteicos/genética , Complexos Multiproteicos/metabolismo , Mapeamento de Peptídeos , Diester Fosfórico Hidrolases/genética , Dibenzodioxinas Policloradas/farmacologia , Estrutura Terciária de Proteína/genética , Proteínas/genética , Receptores de Hidrocarboneto Arílico/genética , Teratogênicos/farmacologia , Transcrição Gênica/efeitos dos fármacos , Transcrição Gênica/fisiologia , Técnicas do Sistema de Duplo-Híbrido
5.
Blood ; 105(8): 3185-92, 2005 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-15632203

RESUMO

The Ras-like guanine-nucleotide-binding protein Rap1 controls integrin alpha(IIb)beta3 activity and platelet aggregation. Recently, we have found that Rap1 activation can be blocked by the nitric oxide/cyclic guanosine monophosphate (NO/cGMP) signaling pathway by type 1 cGMP-dependent protein kinase (cGKI). In search of possible targets of NO/cGMP/cGKI, we studied the expression of Rap1-specific GTPase-activating proteins (GAPs) and guanine nucleotide exchange factors (GEFs) in platelets. We could detect mRNAs for a new protein most closely related to Rap1GAP and for postsynaptic density-95 discs-large and zona occludens protein 1 (PDZ)-GEF1 and CalDAG-GEFs I and III. Using 5'-rapid amplification of cDNA ends (RACE), we isolated the complete cDNA of the new GAP encoding a 715-amino acid protein, which we have termed Rap1GAP2. Rap1GAP2 is expressed in at least 3 splice variants, 2 of which are detectable in platelets. Endogenous Rap1GAP2 protein partially colocalizes with Rap1 in human platelets. In transfected cells, we show that Rap1GAP2 exhibits strong GTPase-stimulating activity toward Rap1. Rap1GAP2 is highly phosphorylated, and we have identified cGKI as a Rap1GAP2 kinase. cGKI phosphorylates Rap1GAP2 exclusively on serine 7, a residue present only in the platelet splice variants of Rap1GAP2. Phosphorylation of Rap1GAP2 by cGKI might mediate inhibitory effects of NO/cGMP on Rap1. Rap1GAP2 is the first GTPase-activating protein of Rap1 found in platelets and is likely to have an important regulatory role in platelet aggregation.


Assuntos
Plaquetas/fisiologia , Proteínas Ativadoras de GTPase/genética , Proteínas Ativadoras de GTPase/metabolismo , Animais , Células COS , Chlorocebus aethiops , Clonagem Molecular , Feminino , Expressão Gênica/fisiologia , Fatores de Troca do Nucleotídeo Guanina/metabolismo , Humanos , Fosforilação , Splicing de RNA , Coelhos , Serina/metabolismo
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