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1.
Hum Mol Genet ; 32(5): 825-834, 2023 02 19.
Artículo en Inglés | MEDLINE | ID: mdl-36173926

RESUMEN

In human autosomal recessive woolly hair/hypotrichosis (ARWH/HT), many mutations have been identified in a gene encoding LPA6, a G protein-coupled receptor (GPCR) for lysophosphatidic acid (LPA). However, information regarding the effects of such mutations on receptor function is limited. In this study, we examined functional impacts of selected amino acid changes in LPA6 identified in ARWH/HT patients. In our exogenous expression experiments, all mutants except S3T failed to respond to LPA, indicating that they are loss-of-function mutants. Among the nine mutants, five (D63V, G146R, N246D, L277P and C278Y) displayed impaired expression at the cell surface because of endoplasmic reticulum (ER) retention, indicating that these mutants are trafficking-defective, as reported in other disease-associated GPCRs. Notably, alkyl-OMPT, a potent synthetic agonist for LPA6 restored the defective cell surface expression of two of the ER-retained mutants, D63V and N246D, possibly by its chaperoning function that allows them to escape intracellular retention as well as proteasomal degradation. Furthermore, the alkyl-OMPT-rescued N246D mutant was shown be functional. Our findings encourage future application of pharmacoperone therapy for ARWH/HT patients with specific LPA6 mutations.


Asunto(s)
Enfermedades del Cabello , Hipotricosis , Humanos , Hipotricosis/genética , Cabello , Enfermedades del Cabello/genética , Mutación , Genes Recesivos
2.
FASEB J ; 37(1): e22676, 2023 01.
Artículo en Inglés | MEDLINE | ID: mdl-36468834

RESUMEN

The G protein-coupled receptors, GPR43 (free fatty acid receptor 2, FFA2) and GPR41 (free fatty acid receptor 3, FFA3), are activated by short-chain fatty acids produced under various conditions, including microbial fermentation of carbohydrates. Previous studies have implicated this receptor energy homeostasis and immune responses as well as in cell growth arrest and apoptosis. Here, we observed the expression of both receptors in human blood cells and a remarkable enhancement in leukemia cell lines (HL-60, U937, and THP-1 cells) during differentiation. A reporter assay revealed that GPR43 is coupled with Gαi and Gα12/13 and is constitutively active without any stimuli. Specific blockers of GPR43, GLPG0974 and CATPB function as inverse agonists because treatment with these compounds significantly reduces constitutive activity. In HL-60 cells, enhanced expression of GPR43 led to growth arrest through Gα12/13 . In addition, the blockage of GPR43 activity in these cells significantly impaired their adherent properties due to the reduction of adhesion molecules. We further revealed that enhanced GPR43 activity induces F-actin formation. However, the activity of GPR43 did not contribute to butyrate-induced apoptosis in differentiated HL-60 cells because of the ineffectiveness of the inverse agonist on cell death. Collectively, these results suggest that GPR43, which possesses constitutive activity, is crucial for growth arrest, followed by the proper differentiation of leukocytes.


Asunto(s)
Ácidos Grasos Volátiles , Leucocitos , Receptores de Superficie Celular , Humanos , Ácidos Grasos Volátiles/metabolismo , Leucocitos/metabolismo , Receptores de Superficie Celular/metabolismo , Receptores Acoplados a Proteínas G/metabolismo , Diferenciación Celular , Células HL-60
3.
J Biol Chem ; 298(1): 101470, 2022 01.
Artículo en Inglés | MEDLINE | ID: mdl-34890643

RESUMEN

The diversity of glycerophospholipid species in cellular membranes is immense and affects various biological functions. Glycerol-3-phosphate acyltransferases (GPATs) and lysophospholipid acyltransferases (LPLATs), in concert with phospholipase A1/2s enzymes, contribute to this diversity via selective esterification of fatty acyl chains at the sn-1 or sn-2 positions of membrane phospholipids. These enzymes are conserved across all kingdoms, and in mammals four GPATs of the 1-acylglycerol-3-phosphate O-acyltransferase (AGPAT) family and at least 14 LPLATs, either of the AGPAT or the membrane-bound O-acyltransferase (MBOAT) families, have been identified. Here we provide an overview of the biochemical and biological activities of these mammalian enzymes, including their predicted structures, involvements in human diseases, and essential physiological roles as revealed by gene-deficient mice. Recently, the nomenclature used to refer to these enzymes has generated some confusion due to the use of multiple names to refer to the same enzyme and instances of the same name being used to refer to completely different enzymes. Thus, this review proposes a more uniform LPLAT enzyme nomenclature, as well as providing an update of recent advances made in the study of LPLATs, continuing from our JBC mini review in 2009.


Asunto(s)
1-Acilglicerofosfocolina O-Aciltransferasa , Glicerofosfolípidos , Lisofosfolípidos , 1-Acilglicerofosfocolina O-Aciltransferasa/clasificación , 1-Acilglicerofosfocolina O-Aciltransferasa/metabolismo , Animales , Glicerofosfolípidos/metabolismo , Humanos , Lisofosfolípidos/metabolismo , Terminología como Asunto
4.
Biochem Biophys Res Commun ; 663: 179-185, 2023 06 30.
Artículo en Inglés | MEDLINE | ID: mdl-37121128

RESUMEN

Docosahexaenoic acid (DHA), an omega-3 fatty acid, usually presents as a constituent of phospholipids in the cellular membrane. Lysophospholipid acyltransferase 3 (LPLAT3; AGPAT3) is the primary enzyme that incorporates DHA into phospholipids. LPLAT3-KO mice show male infertility and visual dysfunction accompanied by decreased phospholipids (PLs) containing DHA (PL-DHA) in the testis and retina, respectively. In this study, we evaluated the effect of diets consisting mainly of triacylglycerol-bound DHA (fish oil) and PL-bound DHA (salmon roe oil) on the amount of PL-DHA in a broad range of tissues and on reproductive functions. Both diets elevated phosphatidylcholines (PCs)-containing DHA in most tissues of wild type (WT) mice. Although LPLAT3-KO mice acquired a minimal amount of PC-DHA in the testes and sperm by eating either of the diets, reproductive function did not improve. The present study suggests that DHA-rich diets do not restore sufficient PL-DHA to improve male infertility in LPLAT3-KO mice. Alternatively, PL-DHA can be biosynthesized by LPLAT3 but not by external supplementation, which may be necessary for normal reproductive function.


Asunto(s)
Ácidos Grasos Omega-3 , Infertilidad Masculina , Masculino , Ratones , Animales , Humanos , 1-Acilglicerofosfocolina O-Aciltransferasa/genética , Semen , Fosfolípidos , Dieta , Ácidos Docosahexaenoicos
5.
Hepatology ; 76(1): 112-125, 2022 07.
Artículo en Inglés | MEDLINE | ID: mdl-34855990

RESUMEN

BACKGROUND AND AIMS: Chronic liver congestion reflecting right-sided heart failure (RHF), Budd-Chiari syndrome, or Fontan-associated liver disease (FALD) is involved in liver fibrosis and HCC. However, molecular mechanisms of fibrosis and HCC in chronic liver congestion remain poorly understood. APPROACH AND RESULTS: Here, we first demonstrated that chronic liver congestion promoted HCC and metastatic liver tumor growth using murine model of chronic liver congestion by partial inferior vena cava ligation (pIVCL). As the initial step triggering HCC promotion and fibrosis, gut-derived lipopolysaccharide (LPS) appeared to induce LSECs capillarization in mice and in vitro. LSEC capillarization was also confirmed in patients with FALD. Mitogenic factor, sphingosine-1-phosphate (S1P), was increased in congestive liver and expression of sphingosine kinase 1, a major synthetase of S1P, was increased in capillarized LSECs after pIVCL. Inhibition of S1P receptor (S1PR) 1 (Ex26) and S1PR2 (JTE013) mitigated HCC development and liver fibrosis, respectively. Antimicrobial treatment lowered portal blood LPS concentration, LSEC capillarization, and liver S1P concentration accompanied by reduction of HCC development and fibrosis in the congestive liver. CONCLUSIONS: In conclusion, chronic liver congestion promotes HCC development and liver fibrosis by S1P production from LPS-induced capillarized LSECs. Careful treatment of both RHF and liver cancer might be necessary for patients with RHF with primary or metastatic liver cancer.


Asunto(s)
Carcinoma Hepatocelular , Insuficiencia Cardíaca , Neoplasias Hepáticas , Enfermedades Vasculares , Animales , Carcinoma Hepatocelular/patología , Modelos Animales de Enfermedad , Fibrosis , Humanos , Lipopolisacáridos , Cirrosis Hepática/patología , Neoplasias Hepáticas/patología , Lisofosfolípidos/metabolismo , Ratones , Receptores de Lisoesfingolípidos/metabolismo , Esfingosina/análogos & derivados , Esfingosina/metabolismo
6.
Annu Rev Physiol ; 79: 67-91, 2017 02 10.
Artículo en Inglés | MEDLINE | ID: mdl-27813829

RESUMEN

Vertebrates are endowed with a closed circulatory system, the evolution of which required novel structural and regulatory changes. Furthermore, immune cell trafficking paradigms adapted to the barriers imposed by the closed circulatory system. How did such changes occur mechanistically? We propose that spatial compartmentalization of the lipid mediator sphingosine 1-phosphate (S1P) may be one such mechanism. In vertebrates, S1P is spatially compartmentalized in the blood and lymphatic circulation, thus comprising a sharp S1P gradient across the endothelial barrier. Circulatory S1P has critical roles in maturation and homeostasis of the vascular system as well as in immune cell trafficking. Physiological functions of S1P are tightly linked to shear stress, the key biophysical stimulus from blood flow. Thus, circulatory S1P confinement could be a primordial strategy of vertebrates in the development of a closed circulatory system. This review discusses the cellular and molecular basis of the S1P gradients and aims to interpret its physiological significance as a key feature of the closed circulatory system.


Asunto(s)
Sistema Cardiovascular/inmunología , Sistema Cardiovascular/metabolismo , Lisofosfolípidos/inmunología , Lisofosfolípidos/metabolismo , Esfingosina/análogos & derivados , Animales , Homeostasis/inmunología , Homeostasis/fisiología , Humanos , Esfingosina/inmunología , Esfingosina/metabolismo
7.
Adv Exp Med Biol ; 1274: 137-176, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32894510

RESUMEN

Lysophosphatidic acid (LPA) has major roles as a bioactive signaling molecule, with multiple physiological and pathological roles being described in almost every major organ system. In this review we discuss LPA signaling pathways as emerging drug targets for multiple conditions relevant to human health and disease. LPA signals through the six G protein-coupled receptors LPA1-6, and several of these receptors along with the LPA-producing enzyme including autotaxin (ATX) are now established as therapeutic targets with potential to treat various human diseases as exemplified by several LPA signaling targeting compounds now in clinical trials for idiopathic pulmonary fibrosis and systemic sclerosis. Several crystal structures of LPA receptors and ATX have been solved, which will accelerate development of highly selective and effective LPA signaling targeting compounds. We also review additional bioactive lysophospholipid (LPL) signaling molecules including lysophosphatidylserine and lysophosphatidylinositol, which represent the next wave of LPL druggable targets. An emerging theme in bioactive LPL signaling is that where the ligand is produced and how it is delivered to the cognate receptor are critical determinants of the biological responses. We will also discuss how connecting the production and function of bioactive LPLs will identify new therapeutic strategies to effectively target LPL signaling pathways.


Asunto(s)
Lisofosfolípidos/metabolismo , Terapia Molecular Dirigida , Transducción de Señal/efectos de los fármacos , Humanos , Fibrosis Pulmonar Idiopática/tratamiento farmacológico , Fibrosis Pulmonar Idiopática/metabolismo , Receptores del Ácido Lisofosfatídico/química , Receptores del Ácido Lisofosfatídico/metabolismo , Esclerodermia Sistémica/tratamiento farmacológico , Esclerodermia Sistémica/metabolismo
8.
Proc Natl Acad Sci U S A ; 114(17): 4531-4536, 2017 04 25.
Artículo en Inglés | MEDLINE | ID: mdl-28396408

RESUMEN

The vasculature of the central nervous system (CNS) forms a selective barrier termed the blood-brain barrier (BBB). Disruption of the BBB may contribute to various CNS diseases. Conversely, the intact BBB restricts efficient penetration of CNS-targeted drugs. Here, we report the BBB-regulatory role of endothelial sphingosine 1-phosphate (S1P) receptor-1, a G protein-coupled receptor known to promote the barrier function in peripheral vessels. Endothelial-specific S1pr1 knockout mice (S1pr1iECKO ) showed BBB breach for small-molecular-mass fluorescence tracers (<3 kDa), but not larger tracers (>10 kDa). Chronic BBB leakiness was associated with cognitive impairment, as assessed by the novel object recognition test, but not signs of brain inflammation. Brain microvessels of S1pr1iECKO mice showed altered subcellular distribution of tight junctional proteins. Pharmacological inhibition of S1P1 function led to transient BBB breach. These data suggest that brain endothelial S1P1 maintain the BBB by regulating the proper localization of tight junction proteins and raise the possibility that endothelial S1P1 inhibition may be a strategy for transient BBB opening and delivery of small molecules into the CNS.


Asunto(s)
Barrera Hematoencefálica/fisiología , Endotelio Vascular/fisiología , Receptores de Lisoesfingolípidos/metabolismo , Animales , Transporte Biológico , Encéfalo/irrigación sanguínea , Células Endoteliales/fisiología , Regulación de la Expresión Génica , Lisofosfolípidos , Ratones , Ratones Noqueados , Receptores de Lisoesfingolípidos/genética , Esfingosina/análogos & derivados , Uniones Estrechas/metabolismo
9.
Biochem Biophys Res Commun ; 501(4): 1048-1054, 2018 07 02.
Artículo en Inglés | MEDLINE | ID: mdl-29778535

RESUMEN

Cerebral edema is a life-threatening neurological condition characterized by brain swelling due to the accumulation of excess fluid both intracellularly and extracellularly. Fulminant hepatic failure (FHF) develops cerebral edema by disrupting blood-brain barrier (BBB). However, the mechanisms by which mediator induces brain edema in FHF remain to be elucidated. Here, we assessed a linkage between brain edema and lysophosphatidic acid (LPA) signaling by utilizing an animal model of FHF and in vitro BBB model. Azoxymethane-treated mice developed FHF and hepatic encephalopathy, associated with higher autotaxin (ATX) activities in serum than controls. Using in vitro BBB model, LPA disrupted the structural integrity of tight junction proteins including claudin-5, occludin, and ZO-1. Furthermore, LPA decreased transendothelial electrical resistances in in vitro BBB model, and induced cell contraction in brain endothelial monolayer cultures, both being inhibited by a Rho-associated protein kinase inhibitor, Y-27632. The brain capillary endothelial cells predominantly expressed LPA6 mRNA, whose knockdown blocked the LPA-induced endothelial cell contraction. Taken together, the up-regulation of serum ATX in hepatic encephalopathy may activate the LPA-LPA6-G12/13-Rho pathway in brain capillary endothelial cells, leading to enhancement of BBB permeability and brain edema.


Asunto(s)
Barrera Hematoencefálica/metabolismo , Células Endoteliales/metabolismo , Encefalopatía Hepática/metabolismo , Encefalopatía Hepática/patología , Receptores del Ácido Lisofosfatídico/metabolismo , Animales , Azoximetano , Barrera Hematoencefálica/efectos de los fármacos , Barrera Hematoencefálica/patología , Edema Encefálico/complicaciones , Edema Encefálico/patología , Permeabilidad Capilar/efectos de los fármacos , Células Cultivadas , Células Endoteliales/efectos de los fármacos , Células Endoteliales/patología , Fallo Hepático Agudo/complicaciones , Fallo Hepático Agudo/metabolismo , Fallo Hepático Agudo/patología , Lisofosfolípidos/farmacología , Masculino , Ratones Endogámicos C57BL , Modelos Biológicos , Hidrolasas Diéster Fosfóricas/metabolismo , Ratas , Transducción de Señal/efectos de los fármacos , Proteínas de Unión al GTP rho/metabolismo , Quinasas Asociadas a rho/metabolismo
10.
J Pharmacol Sci ; 136(2): 93-96, 2018 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-29409686

RESUMEN

Lysophosphatidic acid (LPA) and LPA1 receptor signaling play a crucial role in the initiation of peripheral nerve injury-induced neuropathic pain through the alternation of pain-related genes/proteins expression and demyelination. However, LPA and its signaling in the brain are still poorly understood. In the present study, we revealed that the LPA5 receptor expression in corpus callosum elevated after the initiation of demyelination, and the hyperalgesia through Aδ-fibers following cuprizone-induced demyelination was mediated by LPA5 signaling. These data suggest that LPA5 signaling may play a key role in the mechanisms underlying neuropathic pain following demyelination in the brain.


Asunto(s)
Cuprizona/efectos adversos , Modelos Animales de Enfermedad , Esclerosis Múltiple/etiología , Esclerosis Múltiple/genética , Neuralgia/etiología , Neuralgia/genética , Receptores del Ácido Lisofosfatídico/fisiología , Transducción de Señal/fisiología , Animales , Cuerpo Calloso/metabolismo , Femenino , Expresión Génica , Lisofosfolípidos/fisiología , Masculino , Ratones Endogámicos , Esclerosis Múltiple/metabolismo , Receptores del Ácido Lisofosfatídico/genética , Receptores del Ácido Lisofosfatídico/metabolismo
11.
Nature ; 552(7684): 180-181, 2017 12 14.
Artículo en Inglés | MEDLINE | ID: mdl-29239390
12.
J Immunol ; 192(9): 4361-9, 2014 May 01.
Artículo en Inglés | MEDLINE | ID: mdl-24663678

RESUMEN

Psoriasis is an inflammatory skin disease with accelerated epidermal cell turnover. Neutrophil accumulation in the skin is one of the histological characteristics of psoriasis. However, the precise mechanism and role of neutrophil infiltration remain largely unknown. In this article, we show that orchestrated action of CXCR2 and leukotriene B4 receptor BLT1 plays a key role in neutrophil recruitment during the development of imiquimod (IMQ)-induced psoriatic skin lesions in mice. Depletion of neutrophils with anti-Ly-6G Ab ameliorated the disease severity, along with reduced expression of proinflammatory cytokine IL-1ß in the skin. Furthermore, CXCR2 and BLT1 coordinately promote neutrophil infiltration into the skin during the early phase of IMQ-induced inflammation. In vitro, CXCR2 ligands augment leukotriene B4 production by murine neutrophils, which, in turn, amplifies chemokine-mediated neutrophil chemotaxis via BLT1 in autocrine and/or paracrine manners. In agreement with the increased IL-19 expression in IMQ-treated mouse skin, IL-1ß markedly upregulated expression of acanthosis-inducing cytokine IL-19 in human keratinocytes. We propose that coordination of chemokines, lipids, and cytokines with multiple positive feedback loops might drive the pathogenesis of psoriasis and, possibly, other inflammatory diseases as well. Interference to this positive feedback or its downstream effectors could be targets of novel anti-inflammatory treatment.


Asunto(s)
Queratinocitos/metabolismo , Infiltración Neutrófila/inmunología , Psoriasis/inmunología , Receptores de Interleucina-8B/metabolismo , Receptores de Leucotrieno B4/metabolismo , Adyuvantes Inmunológicos/toxicidad , Aminoquinolinas/toxicidad , Animales , Quimiotaxis de Leucocito , Modelos Animales de Enfermedad , Imiquimod , Inmunohistoquímica , Queratinocitos/inmunología , Ratones , Ratones Noqueados , Neutrófilos/inmunología , Psoriasis/inducido químicamente , Psoriasis/metabolismo , Reacción en Cadena en Tiempo Real de la Polimerasa , Receptores de Interleucina-8B/inmunología , Receptores de Leucotrieno B4/inmunología
13.
FASEB J ; 28(2): 871-9, 2014 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-24221084

RESUMEN

Although the roles of acids in bone metabolism are well characterized, the function of proton-sensing receptors in bone metabolism remains to be explored. In this study, we evaluated the role of proton-sensing receptor T-cell death-associated gene 8 (TDAG8) in osteoclastic activity during bone loss after ovariectomy. Through observations of bone mineral content, we found that pathological bone resorption was significantly exacerbated in mice homozygous for a gene trap mutation in the Tdag8 gene. Furthermore, osteoclasts from the homozygous mutant mice resorbed calcium in vitro more than the osteoclasts from the heterozygous mice did. Impaired osteoclast formation under acidic conditions was ameliorated in cultures of bone marrow cells by Tdag8 gene mutation. Extracellular acidification changed the cell morphology of osteoclasts via the TDAG8-Rho signaling pathway. These results suggest that the enhancement of TDAG8 function represents a new strategy for preventing bone resorption diseases, such as osteoporosis.


Asunto(s)
Resorción Ósea/metabolismo , Osteoclastos/metabolismo , Animales , Células Cultivadas , Ensayo de Inmunoadsorción Enzimática , Femenino , Inmunohistoquímica , Hibridación in Situ , Ratones , Microscopía Confocal , Ovariectomía , Receptores Acoplados a Proteínas G/genética , Receptores Acoplados a Proteínas G/metabolismo , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa
14.
Biochim Biophys Acta ; 1831(1): 33-41, 2013 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-22902318

RESUMEN

Lysophosphatidic acid (LPA) is the simplest phospholipid yet possesses myriad biological functions. Until 2003, the functions of LPA were thought to be elicited exclusively by three subtypes of the endothelial differentiation gene (Edg) family of G protein-coupled receptors - LPA(1), LPA(2), and LPA(3). However, several biological functions of LPA could not be assigned to any of these receptors indicating the existence of one or more additional LPA receptor(s). More recently, the discovery of a second cluster of LPA receptors which includes LPA(4), LPA(5), and LPA(6) has paved the way for new avenues of LPA research. Analyses of these non-Edg family LPA receptors have begun to fill in gaps to understand biological functions of LPA such as platelet aggregation and vascular development that could not be ascribed to classical Edg family LPA receptors and are also unveiling new biological functions. Here we review recent progress in the non-Edg family LPA receptor research, with special emphasis on the pharmacology, signaling, and physiological roles of this family of receptors. This article is part of a Special Issue entitled Advances in Lysophospholipid Research.


Asunto(s)
Investigación Biomédica/tendencias , Receptores del Ácido Lisofosfatídico/metabolismo , Animales , Enfermedad , Humanos , Ligandos , Lisofosfolípidos/química , Lisofosfolípidos/metabolismo , Receptores del Ácido Lisofosfatídico/clasificación , Transducción de Señal , Terminología como Asunto
15.
PLoS One ; 19(5): e0303296, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38753743

RESUMEN

AIM: Metabolic dysfunction-associated steatohepatitis (MASH) is one of the most prevalent liver diseases and is characterized by steatosis and the accumulation of bioactive lipids. This study aims to understand the specific lipid species responsible for the progression of liver fibrosis in MASH. METHODS: Changes in bioactive lipid levels were examined in the livers of MASH mice fed a choline-deficient diet (CDD). Additionally, sphingosine kinase (SphK)1 mRNA, which generates sphingosine 1 phosphate (S1P), was examined in the livers of patients with MASH. RESULTS: CDD induced MASH and liver fibrosis were accompanied by elevated levels of S1P and increased expression of SphK1 in capillarized liver sinusoidal endothelial cells (LSECs) in mice. SphK1 mRNA also increased in the livers of patients with MASH. Treatment of primary cultured mouse hepatic stellate cells (HSCs) with S1P stimulated their activation, which was mitigated by the S1P receptor (S1PR)2 inhibitor, JTE013. The inhibition of S1PR2 or its knockout in mice suppressed liver fibrosis without reducing steatosis or hepatocellular damage. CONCLUSION: S1P level is increased in MASH livers and contributes to liver fibrosis via S1PR2.


Asunto(s)
Hígado Graso , Células Estrelladas Hepáticas , Cirrosis Hepática , Lisofosfolípidos , Fosfotransferasas (Aceptor de Grupo Alcohol) , Receptores de Esfingosina-1-Fosfato , Esfingosina , Animales , Esfingosina/análogos & derivados , Esfingosina/metabolismo , Lisofosfolípidos/metabolismo , Cirrosis Hepática/metabolismo , Cirrosis Hepática/patología , Cirrosis Hepática/genética , Cirrosis Hepática/etiología , Ratones , Células Estrelladas Hepáticas/metabolismo , Células Estrelladas Hepáticas/patología , Fosfotransferasas (Aceptor de Grupo Alcohol)/metabolismo , Fosfotransferasas (Aceptor de Grupo Alcohol)/genética , Humanos , Receptores de Esfingosina-1-Fosfato/metabolismo , Hígado Graso/metabolismo , Hígado Graso/patología , Masculino , Ratones Noqueados , Ratones Endogámicos C57BL , Hígado/metabolismo , Hígado/patología , Deficiencia de Colina/complicaciones , Deficiencia de Colina/metabolismo , Células Endoteliales/metabolismo , Células Endoteliales/patología , Receptores de Lisoesfingolípidos/metabolismo , Receptores de Lisoesfingolípidos/genética , Pirazoles , Piridinas
16.
Proc Natl Acad Sci U S A ; 107(40): 17309-14, 2010 Oct 05.
Artículo en Inglés | MEDLINE | ID: mdl-20855608

RESUMEN

Tumors often are associated with a low extracellular pH, which induces a variety of cellular events. However, the mechanisms by which tumor cells recognize and react to the acidic environment have not been fully elucidated. T-cell death-associated gene 8 (TDAG8) is an extracellular pH-sensing G protein-coupled receptor that is overexpressed in various tumors and tumor cell lines. In this report, we show that TDAG8 on the surface of tumor cells facilitates tumor development by sensing the acidic environment. Overexpression of TDAG8 in mouse Lewis lung carcinoma (LLC) cells enhanced tumor development in animal models and rendered LLC cells resistant to acidic culture conditions by increasing activation of protein kinase A and extracellular signal-regulated kinase in vitro. Moreover, shRNA-mediated knockdown of endogenous TDAG8 in NCI-H460 human non-small cell lung cancer cells reduced cell survival in an acidic environment in vitro as well as tumor development in vivo. Microarray analyses of tumor-containing lung tissues of mice injected with TDAG8-expressing LLC cells revealed up-regulation of genes related to cell growth and glycolysis. These results support the hypothesis that TDAG8 enhances tumor development by promoting adaptation to the acidic environment to enhance cell survival/proliferation. TDAG8 may represent a therapeutic target for arresting tumor growth.


Asunto(s)
Concentración de Iones de Hidrógeno , Neoplasias Pulmonares/metabolismo , Neoplasias Pulmonares/patología , Receptores Acoplados a Proteínas G/metabolismo , Animales , Línea Celular Tumoral , Proliferación Celular , Perfilación de la Expresión Génica , Humanos , Neoplasias Pulmonares/genética , Ratones , Ratones Endogámicos C57BL , Análisis por Micromatrices , Receptores Acoplados a Proteínas G/genética
17.
Pharmacol Ther ; 246: 108421, 2023 06.
Artículo en Inglés | MEDLINE | ID: mdl-37080433

RESUMEN

Lysophosphatidic acid (LPA) is a simple phospholipid consisting of a phosphate group, glycerol moiety, and only one hydrocarbon chain. Despite its simple chemical structure, LPA plays an important role as an essential bioactive signaling molecule via its specific six G protein-coupled receptors, LPA1-6. Recent studies, especially those using genetic tools, have revealed diverse physiological and pathological roles of LPA and LPA receptors in almost every organ system. Furthermore, many studies are illuminating detailed mechanisms to orchestrate multiple LPA receptor signaling pathways and to facilitate their coordinated function. Importantly, these extensive "bench" works are now translated into the "bedside" as exemplified by approaches targeting LPA1 signaling to combat fibrotic diseases. In this review, we discuss the physiological and pathological roles of LPA signaling and their implications for clinical application by focusing on findings revealed by in vivo studies utilizing genetic tools targeting LPA receptors.


Asunto(s)
Lisofosfolípidos , Receptores del Ácido Lisofosfatídico , Humanos , Receptores del Ácido Lisofosfatídico/fisiología , Lisofosfolípidos/metabolismo , Transducción de Señal , Glicerol
18.
JCI Insight ; 8(17)2023 09 08.
Artículo en Inglés | MEDLINE | ID: mdl-37681411

RESUMEN

Nonalcoholic fatty liver disease (NAFLD) and type 2 diabetes are interacting comorbidities of obesity, and increased hepatic de novo lipogenesis (DNL), driven by hyperinsulinemia and carbohydrate overload, contributes to their pathogenesis. Fatty acid synthase (FASN), a key enzyme of hepatic DNL, is upregulated in association with insulin resistance. However, the therapeutic potential of targeting FASN in hepatocytes for obesity-associated metabolic diseases is unknown. Here, we show that hepatic FASN deficiency differentially affects NAFLD and diabetes depending on the etiology of obesity. Hepatocyte-specific ablation of FASN ameliorated NAFLD and diabetes in melanocortin 4 receptor-deficient mice but not in mice with diet-induced obesity. In leptin-deficient mice, FASN ablation alleviated hepatic steatosis and improved glucose tolerance but exacerbated fed hyperglycemia and liver dysfunction. The beneficial effects of hepatic FASN deficiency on NAFLD and glucose metabolism were associated with suppression of DNL and attenuation of gluconeogenesis and fatty acid oxidation, respectively. The exacerbation of fed hyperglycemia by FASN ablation in leptin-deficient mice appeared attributable to impairment of hepatic glucose uptake triggered by glycogen accumulation and citrate-mediated inhibition of glycolysis. Further investigation of the therapeutic potential of hepatic FASN inhibition for NAFLD and diabetes in humans should thus consider the etiology of obesity.


Asunto(s)
Diabetes Mellitus Tipo 2 , Hiperglucemia , Enfermedad del Hígado Graso no Alcohólico , Animales , Humanos , Ratones , Diabetes Mellitus Tipo 2/complicaciones , Diabetes Mellitus Tipo 2/genética , Acido Graso Sintasa Tipo I/genética , Ácido Graso Sintasas , Hiperglucemia/complicaciones , Leptina , Óxido Nítrico Sintasa , Obesidad/complicaciones , Obesidad/genética
19.
Cancer Sci ; 103(6): 1099-104, 2012 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-22348348

RESUMEN

Pancreatic cancer is highly metastatic and has a poor prognosis. However, there is no established treatment for pancreatic cancer. Lysophosphatidic acid (LPA) has been shown to be present in effluents of cancers and involved in migration and proliferation in a variety of cancer cells, including pancreatic cancer cells, in vitro. In the current study, we examined whether an orally active LPA antagonist is effective for pancreatic cancer tumorigenesis and metastasis in vivo. Oral administration of Ki16198, which is effective for LPA(1) and LPA(3), into YAPC-PD pancreatic cancer cell-inoculated nude mice significantly inhibited tumor weight and remarkably attenuated invasion and metastasis to lung, liver, and brain, in association with inhibition of matrix metalloproteinase (MMP) accumulation in ascites in vivo. Ki16198 inhibited LPA-induced migration and invasion in several pancreatic cancer cells in vitro, which was associated with the inhibition of LPA-induced MMP production. In conclusion, Ki16198 is a promising orally active LPA antagonist for inhibiting the invasion and metastasis of pancreatic cancer cells. The inhibitory effects of the antagonist on invasion and metastasis in vivo may be partially explained by the inhibition of motility activity and MMP production in cancer cells.


Asunto(s)
Isoxazoles/farmacología , Neoplasias Pancreáticas/tratamiento farmacológico , Neoplasias Pancreáticas/patología , Propionatos/farmacología , Receptores del Ácido Lisofosfatídico/antagonistas & inhibidores , Animales , Ascitis/metabolismo , Línea Celular Tumoral , Movimiento Celular/efectos de los fármacos , Humanos , Isoxazoles/administración & dosificación , Isoxazoles/uso terapéutico , Lisofosfolípidos/farmacología , Metaloproteinasa 2 de la Matriz/metabolismo , Metaloproteinasa 9 de la Matriz/metabolismo , Inhibidores de la Metaloproteinasa de la Matriz , Ratones , Ratones Endogámicos BALB C , Ratones Desnudos , Invasividad Neoplásica , Metástasis de la Neoplasia/tratamiento farmacológico , Neoplasias Pancreáticas/metabolismo , Neoplasias Peritoneales/patología , Neoplasias Peritoneales/prevención & control , Neoplasias Peritoneales/secundario , Propionatos/administración & dosificación , Propionatos/uso terapéutico , Ensayos Antitumor por Modelo de Xenoinjerto
20.
Blood ; 116(23): 5060-70, 2010 Dec 02.
Artículo en Inglés | MEDLINE | ID: mdl-20713964

RESUMEN

Lysophosphatidic acid (LPA) is a potent lipid mediator with a wide variety of biological actions mediated through G protein-coupled receptors (LPA(1-6)). LPA(4) has been identified as a G(13) protein-coupled receptor, but its physiological role is unknown. Here we show that a subset of LPA(4)-deficient embryos did not survive gestation and displayed hemorrhages and/or edema in many organs at multiple embryonic stages. The blood vessels of bleeding LPA(4)-deficient embryos were often dilated. The recruitment of mural cells, namely smooth muscle cells and pericytes, was impaired. Consistently, Matrigel plug assays showed decreased mural cell coverage of endothelial cells in the neovessels of LPA(4)-deficient adult mice. In situ hybridization detected Lpa4 mRNA in the endothelium of some vasculatures. Similarly, the lymphatic vessels of edematous embryos were dilated. These results suggest that LPA(4) regulates establishment of the structure and function of blood and lymphatic vessels during mouse embryogenesis. Considering the critical role of autotaxin (an enzyme involved in LPA production) and Gα(13) in vascular development, we suggest that LPA(4) provides a link between these 2 molecules.


Asunto(s)
Vasos Sanguíneos/embriología , Desarrollo Embrionario/fisiología , Vasos Linfáticos/embriología , Receptores Purinérgicos/metabolismo , Animales , Vasos Sanguíneos/metabolismo , Northern Blotting , Southern Blotting , Femenino , Inmunohistoquímica , Hibridación in Situ , Vasos Linfáticos/metabolismo , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa
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