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1.
Yakugaku Zasshi ; 144(1): 99-117, 2024.
Artigo em Japonês | MEDLINE | ID: mdl-38171801

RESUMO

In 1985, I was accepted as postdoc by Professor Forte of UC Berkeley. He discovered H+,K+-ATPase and established the membrane recycling theory as the activation mechanism for acid secretion using whole animals. H+,K+-ATPase is an enzyme that exchanges H+ with K+. In resting state, it locates on the tubulovesicles and the pump does not work because the membrane lacks K+ permeability. Upon stimulation, the tubulovesicles fuse to the apical membrane and acquire K+ permeability, turning the pump on. The main route was known to be protein kinase A (PKA), but its specific targets remained unknown. Right after I joined Forte's lab, I was fortunate enough to reproduce the above mechanism in vitro, and I discovered proteins of molecular weight 120 kDa and 80 kDa that were specifically phosphorylated in stimulated parietal cells. After I returned to Japan, the former was cloned and named as parchorin, which is one of the chloride intracellular channels. Although no progress was made on ezrin, I found out the importance of PIP2 and Arf6 using permeabilized gland models. After I left parietal cell research, the link between ezrin and Arf6 was revealed. PKA phosphorylates S66 of ezrin and also MST4. The former changes the N-terminal structure of ezrin to bind syntaxin3, and the latter phosphorylates ACAP4, an Arf6-GAP, to accelerate binding to ezrin. Subsequently, H+,K+-ATPase, SNAREs, ezrin, and Arf6-GAP are aligned on the apical membrane. However, there are still many unsolved questions and the intracellular mechanism of parietal cells remains an attractive research area.


Assuntos
Ácido Gástrico , Células Parietais Gástricas , Animais , Ácido Gástrico/metabolismo , Fosforilação , Células Parietais Gástricas/metabolismo , Transporte Biológico , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Proteínas Quinases Dependentes de AMP Cíclico/metabolismo
2.
J Biol Chem ; 300(1): 105542, 2024 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-38072058

RESUMO

The gastric proton pump (H+,K+-ATPase) transports a proton into the stomach lumen for every K+ ion exchanged in the opposite direction. In the lumen-facing state of the pump (E2), the pump selectively binds K+ despite the presence of a 10-fold higher concentration of Na+. The molecular basis for the ion selectivity of the pump is unknown. Using molecular dynamics simulations, free energy calculations, and Na+ and K+-dependent ATPase activity assays, we demonstrate that the K+ selectivity of the pump depends upon the simultaneous protonation of the acidic residues E343 and E795 in the ion-binding site. We also show that when E936 is protonated, the pump becomes Na+ sensitive. The protonation-mimetic mutant E936Q exhibits weak Na+-activated ATPase activity. A 2.5-Å resolution cryo-EM structure of the E936Q mutant in the K+-occluded E2-Pi form shows, however, no significant structural difference compared with wildtype except less-than-ideal coordination of K+ in the mutant. The selectivity toward a specific ion correlates with a more rigid and less fluctuating ion-binding site. Despite being exposed to a pH of 1, the fundamental principle driving the K+ ion selectivity of H+,K+-ATPase is similar to that of Na+,K+-ATPase: the ionization states of the acidic residues in the ion-binding sites determine ion selectivity. Unlike the Na+,K+-ATPase, however, protonation of an ion-binding glutamate residue (E936) confers Na+ sensitivity.


Assuntos
Simulação de Dinâmica Molecular , Potássio , Potássio/metabolismo , Estômago , Sítios de Ligação , Sódio/metabolismo , Adenosina Trifosfatases/metabolismo , ATPase Trocadora de Sódio-Potássio/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/genética , ATPase Trocadora de Hidrogênio-Potássio/metabolismo
3.
Am J Physiol Renal Physiol ; 326(1): F143-F151, 2024 01 01.
Artigo em Inglês | MEDLINE | ID: mdl-37942538

RESUMO

There is growing consensus that under physiological conditions, collecting duct H+ secretion is independent of epithelial Na+ channel (ENaC) activity. We have recently shown that the direct ENaC inhibitor benzamil acutely impairs H+ excretion by blocking renal H+-K+-ATPase. However, the question remains whether inhibition of ENaC per se causes alterations in renal H+ excretion. To revisit this question, we studied the effect of the antibiotic trimethoprim (TMP), which is well known to cause K+ retention by direct ENaC inhibition. The acute effect of TMP (5 µg/g body wt) was assessed in bladder-catheterized mice, allowing real-time measurement of urinary pH, electrolyte, and acid excretion. Dietary K+ depletion was used to increase renal H+-K+-ATPase activity. In addition, the effect of TMP was investigated in vitro using pig gastric H+-K+-ATPase-enriched membrane vesicles. TMP acutely increased natriuresis and decreased kaliuresis, confirming its ENaC-inhibiting property. Under control diet conditions, TMP had no effect on urinary pH or acid excretion. Interestingly, K+ depletion unmasked an acute urine alkalizing effect of TMP. This finding was corroborated by in vitro experiments showing that TMP inhibits H+-K+-ATPase activity, albeit at much higher concentrations than benzamil. In conclusion, under control diet conditions, TMP inhibited ENaC function without changing urinary H+ excretion. This finding further supports the hypothesis that the inhibition of ENaC per se does not impair H+ excretion in the collecting duct. Moreover, TMP-induced urinary alkalization in animals fed a low-K+ diet highlights the importance of renal H+-K+-ATPase-mediated H+ secretion in states of K+ depletion.NEW & NOTEWORTHY The antibiotic trimethoprim (TMP) often mediates K+ retention and metabolic acidosis. We suggest a revision of the underlying mechanism that causes metabolic acidosis. Our results indicate that TMP-induced metabolic acidosis is secondary to epithelial Na+ channel-dependent K+ retention. Under control dietary conditions, TMP does not per se inhibit collecting duct H+ secretion. These findings add further argument against a physiologically relevant voltage-dependent mechanism of collecting duct H+ excretion.


Assuntos
Acidose , Túbulos Renais Coletores , Camundongos , Animais , Suínos , Trimetoprima/farmacologia , Trimetoprima/metabolismo , Túbulos Renais Coletores/metabolismo , Canais Epiteliais de Sódio/metabolismo , Sódio/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Antibacterianos/farmacologia , Acidose/metabolismo
4.
Biomolecules ; 13(10)2023 09 27.
Artigo em Inglês | MEDLINE | ID: mdl-37892136

RESUMO

ATP12A encodes the catalytic subunit of the non-gastric proton pump, which is expressed in many epithelial tissues and mediates the secretion of protons in exchange for potassium ions. In the airways, ATP12A-dependent proton secretion contributes to complex mechanisms regulating the composition and properties of the fluid and mucus lining the respiratory epithelia, which are essential to maintain the airway host defense and the respiratory health. Increased expression and activity of ATP12A in combination with the loss of other balancing activities, such as the bicarbonate secretion mediated by CFTR, leads to excessive acidification of the airway surface liquid and mucus dysfunction, processes that play relevant roles in the pathogenesis of cystic fibrosis and other chronic inflammatory respiratory disorders. In this review, we summarize the findings dealing with ATP12A expression, function, and modulation in the airways, which led to the consideration of ATP12A as a potential therapeutic target for the treatment of cystic fibrosis and other airway diseases; we also highlight the current advances and gaps regarding the development of therapeutic strategies aimed at ATP12A inhibition.


Assuntos
Fibrose Cística , Transtornos Respiratórios , Doenças Respiratórias , Humanos , Fibrose Cística/tratamento farmacológico , Fibrose Cística/metabolismo , Regulador de Condutância Transmembrana em Fibrose Cística/genética , Regulador de Condutância Transmembrana em Fibrose Cística/metabolismo , Doenças Respiratórias/tratamento farmacológico , Transporte de Íons , Prótons , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/uso terapêutico
5.
Drug Res (Stuttg) ; 73(8): 448-458, 2023 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-37625445

RESUMO

BACKGROUND: Hymenocardia acida (HA) is one of the numerous medicinal plants in Nigeria with ethnomedicinal history of usage in the treatment of ulcer. The study aimed at isolating antiulcer principle(s) from the stem bark of HA as well as the mechanism of action determination. METHODS: Antiulcer screenings of the crude extract, aqueous fraction, and bulked VLC fractions were performed using in vivo and in vitro models. Docking was carried out by using PyRx. RESULTS: Crude extract (HA; 1 mg/mL) and the aqueous fraction of H. acida (HAA; 1 mg/mL) showed an acid neutralizing capacity (MEq) of 0.3948 and 0.4035, respectively which is significantly different from 0.431 MEq showed by negative control (distilled water) at p<0.05. BVLC 3 (1 mg/mL) showed a significant value of 0.4049 MEq. However, HA showed a dose-dependent decrease in activity across doses examined, with 100 mg/kg showing an ulcer index of 10.00±2.89 (61.50%) and cimetidine (positive control; 100 mg/kg), also showed the highest ulcer index of 3.67±0.88 (85.9%), which is significantly different from ulcer index of 26.00±6.35 (0.00%) p<0.05 observed in the negative control (5% dimethylsulphoxide). The highest ulcer index of 8.00±1.32 (65.10%) was noted in BVLC 3. Bioactive BVLC 3, resulted in an isolated compound (BF3B2A). The compound was suggested to be lupeol, with a docking score of -7.7. It showed a van der Waal interaction with some key amino acid residues in the vonoprazan binding site. CONCLUSION: The experimental studies justify the ethnomedicinal claim of usage among locals.


Assuntos
Antiulcerosos , Úlcera Gástrica , Triterpenos , Ratos , Animais , Extratos Vegetais/uso terapêutico , Fitoterapia , Úlcera/tratamento farmacológico , Antiulcerosos/farmacologia , Triterpenos/farmacologia , Triterpenos/análise , Triterpenos/uso terapêutico , Ratos Wistar , ATPase Trocadora de Hidrogênio-Potássio/análise , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/uso terapêutico , Casca de Planta/química , Úlcera Gástrica/tratamento farmacológico
6.
Nucleosides Nucleotides Nucleic Acids ; 42(12): 1019-1027, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37367232

RESUMO

We compared the expression of six genes in stomach tissue samples between healthy men and women in different age groups to study sexually dimorphic gene expression. Real-Time RT-PCR was used to compare gene expression between men and women. Our results showed that the expression of KCNQ1 (p = 0.01) was significantly higher in non-menopausal women compared to post-menopausal women. In addition, the expression level of the ATP4A gene in men under 35 years was significantly higher than in men above 50 (p = 0.026). Sexually and age dimorphic gene expression in some genes throughout life may affect gastric function.


Assuntos
Mucosa Gástrica , Canal de Potássio KCNQ1 , Masculino , Humanos , Feminino , Canal de Potássio KCNQ1/genética , Canal de Potássio KCNQ1/metabolismo , Mucosa Gástrica/metabolismo , Estômago , ATPase Trocadora de Hidrogênio-Potássio/genética , ATPase Trocadora de Hidrogênio-Potássio/metabolismo
7.
Expert Opin Pharmacother ; 24(14): 1545-1565, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37379072

RESUMO

INTRODUCTION: Cystic fibrosis (CF), a potentially fatal genetic disease, is caused by loss-of-function mutations in the gene encoding for the CFTR chloride/bicarbonate channel. Modulator drugs rescuing mutant CFTR traffic and function are now in the clinic, providing unprecedented breakthrough therapies for people with CF (PwCF) carrying specific genotypes. However, several CFTR variants are unresponsive to these therapies. AREA COVERED: We discussed several therapeutic approaches that are under development to tackle the fundamental cause of CF, including strategies targeting defective CFTR mRNA and/or protein expression and function. Alternatively, defective chloride secretion and dehydration in CF epithelia could be restored by exploiting pharmacological modulation of alternative targets, i.e., ion channels/transporters that concur with CFTR to maintain the airway surface liquid homeostasis (e.g., ENaC, TMEM16A, SLC26A4, SLC26A9, and ATP12A). Finally, we assessed progress and challenges in the development of gene-based therapies to replace or correct the mutant CFTR gene. EXPERT OPINION: CFTR modulators are benefiting many PwCF responsive to these drugs, yielding substantial improvements in various clinical outcomes. Meanwhile, the CF therapy development pipeline continues to expand with the development of novel CFTR modulators and alternative therapeutic strategies with the ultimate goal of providing effective therapies for all PwCF in the foreseeable future.


Assuntos
Fibrose Cística , Humanos , Fibrose Cística/tratamento farmacológico , Fibrose Cística/genética , Regulador de Condutância Transmembrana em Fibrose Cística/genética , Cloretos/metabolismo , Cloretos/uso terapêutico , Terapia de Alvo Molecular , Genótipo , Mutação , Transportadores de Sulfato/genética , Transportadores de Sulfato/uso terapêutico , Antiporters/genética , ATPase Trocadora de Hidrogênio-Potássio/genética , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/uso terapêutico
8.
Bioorg Chem ; 137: 106588, 2023 08.
Artigo em Inglês | MEDLINE | ID: mdl-37167705

RESUMO

H+, K+-ATPase, as the most critical enzyme in gastric acid secretion, has long been an attractive target for the treatment of acid-related diseases. In this study, a series of benzimidazole derivatives were designed and synthesized through conformational restriction and skeleton hopping strategies by using vonoprazan as the lead compound. Among them, compounds A12 (IC50 = 9.32 µM) and A18 (IC50 = 5.83 µM) showed better inhibition at the enzyme level. In addition, gastric acid secretion inhibition was assessed in vivo, and the results showed that A12 and A18 significantly inhibited basal gastric acid secretion, 2-deoxy-d-glucose (2DG) stimulated gastric acid secretion and histamine-stimulated gastric acid secretion. In further in vitro metabolic experiments, A12 and A18 demonstrated excellent stability and low toxicity. Pharmacokinetic studies showed that the p.o. and i.v. half-lives of A18 were 3.21 h and 8.67 ± 1.15 h, respectively. In summary, A18 might be a novel and effective potassium-competitive acid blocker, and this study provides strong support for it use in the treatment of acid-related diseases.


Assuntos
Ácido Gástrico , Inibidores da Bomba de Prótons , Inibidores da Bomba de Prótons/farmacologia , Ácido Gástrico/metabolismo , Potássio , Histamina/metabolismo , Benzimidazóis/farmacologia , Benzimidazóis/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/metabolismo
9.
Nat Commun ; 14(1): 2174, 2023 04 20.
Artigo em Inglês | MEDLINE | ID: mdl-37080960

RESUMO

Mutations in the human ATP13A2 (PARK9), a lysosomal ATPase, cause Kufor-Rakeb Syndrome, an early-onset form of Parkinson's disease (PD). Here, we demonstrate that ATP13A2 functions as a lysosomal H+,K+-ATPase. The K+-dependent ATPase activity and the lysosomal K+-transport activity of ATP13A2 are inhibited by an inhibitor of sarco/endoplasmic reticulum Ca2+-ATPase, thapsigargin, and K+-competitive inhibitors of gastric H+,K+-ATPase, such as vonoprazan and SCH28080. Interestingly, these H+,K+-ATPase inhibitors cause lysosomal alkalinization and α-synuclein accumulation, which are pathological hallmarks of PD. Furthermore, PD-associated mutants of ATP13A2 show abnormal expression and function. Our results suggest that the H+/K+-transporting function of ATP13A2 contributes to acidification and α-synuclein degradation in lysosomes.


Assuntos
Doença de Parkinson , Humanos , Doença de Parkinson/metabolismo , alfa-Sinucleína/genética , alfa-Sinucleína/metabolismo , ATPases Translocadoras de Prótons/genética , ATPases Translocadoras de Prótons/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/genética , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Lisossomos/metabolismo , Mutação
11.
Am J Respir Cell Mol Biol ; 68(6): 638-650, 2023 06.
Artigo em Inglês | MEDLINE | ID: mdl-36780662

RESUMO

Idiopathic pulmonary fibrosis (IPF) is a pathological condition of unknown etiology that results from injury to the lung and an ensuing fibrotic response that leads to the thickening of the alveolar walls and obliteration of the alveolar space. The pathogenesis is not clear, and there are currently no effective therapies for IPF. Small airway disease and mucus accumulation are prominent features in IPF lungs, similar to cystic fibrosis lung disease. The ATP12A gene encodes the α-subunit of the nongastric H+, K+-ATPase, which functions to acidify the airway surface fluid and impairs mucociliary transport function in patients with cystic fibrosis. It is hypothesized that the ATP12A protein may play a role in the pathogenesis of IPF. The authors' studies demonstrate that ATP12A protein is overexpressed in distal small airways from the lungs of patients with IPF compared with normal human lungs. In addition, overexpression of the ATP12A protein in mouse lungs worsened bleomycin induced experimental pulmonary fibrosis. This was prevented by a potassium competitive proton pump blocker, vonoprazan. These data support the concept that the ATP12A protein plays an important role in the pathogenesis of lung fibrosis. Inhibition of the ATP12A protein has potential as a novel therapeutic strategy in IPF treatment.


Assuntos
Fibrose Cística , Fibrose Pulmonar Idiopática , Camundongos , Animais , Humanos , Fibrose Cística/metabolismo , Bombas de Próton/metabolismo , Bombas de Próton/farmacologia , Bombas de Próton/uso terapêutico , Fibrose Pulmonar Idiopática/patologia , Pulmão/patologia , Bleomicina/farmacologia , Fibrose , ATPase Trocadora de Hidrogênio-Potássio/genética , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/farmacologia
12.
Biomed Pharmacother ; 153: 113468, 2022 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-36076494

RESUMO

Calanthe fimbriata Franch. is a Tujia ethnic herb, which has traditionally been used to treat gastric ulcers, chronic hepatitis, etc. We explored the chemical constitutes, gastroprotective effects, and the active fraction of C. fimbriata, as well as elucidating the underlying mechanisms. Firstly, four in vitro antioxidant tests were applied to determine the oxidation resistance of C. fimbriata methanol extract and its fractions. The gastroprotective effects were evaluated in ethanol-induced gastric ulcer rats, gastric histopathology was visualized by H&E staining, and the acidity of gastric juice was measured by titrating with NaOH solution. The contents of malondialdehyde, catalase, superoxide dismutase, gastrin, and the activity of H+K+-ATPase were estimated using commercial kits. EtOAc fraction of C. fimbriata methanol extract (CfEF) exhibited significant gastroprotective effects by ameliorating stomach pathological changes and elevating the pH value of gastric juice. It also manifested remarkable antioxidant activities in vitro and in vivo. Using various chromatographic methods and spectroscopic techniques, 22 compounds were isolated and characterized from CfEF, in which alkaloids were the predominant components. All of these substances were derived from C. fimbriata for the first time. The results indicated that CfEF is a promising source of gastroprotective agents. The antioxidant activity of this herb, as well as prevention of gastrin secretion and inhibition of H+K+ -ATPase, was found to be the underlying mechanism of action.


Assuntos
Antiulcerosos , Orchidaceae , Úlcera Gástrica , Animais , Antiulcerosos/uso terapêutico , Antioxidantes/uso terapêutico , Mucosa Gástrica , Gastrinas/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Metanol/química , Extratos Vegetais/uso terapêutico , Ratos , Úlcera Gástrica/tratamento farmacológico , Úlcera Gástrica/prevenção & controle
14.
Molecules ; 27(16)2022 Aug 09.
Artigo em Inglês | MEDLINE | ID: mdl-36014311

RESUMO

Isoxazole derivatives are significant enough due to their wide range of pharmacological and therapeutic activities. The purpose of the current study is to use computational, in vitro, in vivo, and extensive molecular approaches to examine the possible anti-ulcer activity of 4-benzylidene-3 methyl-1,2-isoxazol-5(4H)-one (MBO). Biovia Discovery Studio visualizer (DSV) was utilized for virtual screening. A tissue antioxidant investigation, H+/K+-ATPase test, and anti-H. pylori activities were carried out. ELISA, immunohistochemistry, and PCR methods were employed for the proteome analysis. An ethanol-induced stomach ulcer model was used to examine the anti-ulcer potential in rats. The binding affinities for MBO ranged from -5.4 to -8.2 Kcal/mol. In vitro findings revealed inhibitory activity against H. pylori and the H+/K+-ATPase pump. It also enhanced levels of glutathione, catalase, and glutathione-S-transferase and reduced lipid peroxidation levels in gastric tissues of rats. In vivo results showed the gastro-protective effect of MBO (30 mg/kg) in ulcerative rat stomachs. The proteomic study revealed decreased expression of inflammatory markers (cyclooxygenase-2, p-NFkB, and TNF-α). In RT-PCR analysis, the expression levels of H+/K+-ATPase were reduced. Furthermore, ADMET (absorption, distribution, metabolism, excretion and toxicity) studies revealed that MBO has high GIT solubility and has a safer profile for cardiac toxicity. This study suggests that MBO displayed anti-ulcer potential, which may have been mediated through the inhibition of the H+/K+-ATPase pump, as well as antioxidant and anti-inflammatory pathways. It has the potential to be a lead molecule in the treatment of peptic ulcers with fewer adverse effects.


Assuntos
Antiulcerosos , Helicobacter pylori , Úlcera Gástrica , Animais , Antiulcerosos/química , Antioxidantes/metabolismo , Etanol/metabolismo , Mucosa Gástrica , Glutationa/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Isoxazóis/farmacologia , Estresse Oxidativo , Extratos Vegetais/química , Proteômica , Ratos , Úlcera Gástrica/induzido quimicamente , Úlcera Gástrica/tratamento farmacológico , Úlcera Gástrica/prevenção & controle
15.
BMC Pharmacol Toxicol ; 23(1): 58, 2022 07 29.
Artigo em Inglês | MEDLINE | ID: mdl-35906691

RESUMO

The present study aims to investigate the newly synthesized organotin (IV) complex (2E, 2'E) dibutylstannanediyl bis (4-(4-nitrophenyl) amino)-4-oxobut-2-enoate (DTN) for its anti-ulcer potential. Characterization performed by carbon nuclear magnetic resonance spectroscopy proved that all values are in the expected ranges of the new compound. Gastroprotective activity of DTN was evaluated through in-silico, anti-H. pylori, in-vitro, in-vivo, and ex-vivo proteomic analysis. In-silico analysis shows that DTN possess stable binding with protein targets involved in gastric ulcer pathophysiology. DTN exhibited an inhibitory effect against 2,2-diphenyl-1-picrylhydrazyl, H. pylori and hydrogen potassium ATPase (H+/K+-ATPase). The antiulcer activity was performed using an ethanol-induced gastric ulcer model in rats. Anti-oxidant profile of DTN showed a significant increase in glutathione-S-transferase, glutathione and catalase levels whereas lipid peroxidation levels were reduced. Histopathological findings confirmed that DTN protected the gastric mucosa of rats. Inflammatory markers tumor necrosis factor-alpha, nuclear factor kappa B, cyclooxygenase-2, interleukin 6 and interleukin-1ß were reduced and prostaglandin-E2 restored expression of these cytokines in DTN pretreated animals when analyzed by using immunohistochemistry, enzyme-linked immunosorbent assay and western blot techniques. In real-time polymerase chain reaction technique, the expression of H+/K+-ATPase was downregulated in DTN pretreated group. DTN did not cause any mortality up to 400 mg/Kg. This study indicates that the newly synthesized compound DTN, possess stable binding against selected targets. DTN exhibits a gastro-protective effect, mediated via anti-H. pylori, H+/K+-ATPase inhibition, anti-oxidant and anti-inflammatory pathways, exploring its therapeutic potential in gastric ulcer management.


Assuntos
Antiulcerosos , Helicobacter pylori , Úlcera Gástrica , Animais , Antiulcerosos/farmacologia , Antiulcerosos/uso terapêutico , Antioxidantes/farmacologia , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Helicobacter pylori/metabolismo , Proteômica , Inibidores da Bomba de Prótons/farmacologia , Inibidores da Bomba de Prótons/uso terapêutico , Ratos , Úlcera Gástrica/induzido quimicamente , Úlcera Gástrica/tratamento farmacológico , Úlcera Gástrica/patologia
16.
Biochim Biophys Acta Biomembr ; 1864(11): 184006, 2022 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-35868405

RESUMO

This work analyses the thermostability of a membrane protein, the gastric H,K-ATPase, by means of a detailed kinetic characterization of its inactivation process, which showed to exhibit first-order kinetics. We observed parallel time courses for the decrease of ATPase activity, the decrease of the autophosphorylation capacity and the loss of tertiary structure at 49 °C. Higher temperatures were required to induce a significant change in secondary structure. The correspondence between the kinetics of Trp fluorescence measured at 49 °C and the decrease of the residual activity after heating at that temperature, proves the irreversibility of the inactivation process. Inactivation proceeds at different rates in E1 or E2 conformations. The K+-induced E2 state exhibits a lower inactivation rate; the specific effect is exerted with a K0.5 similar to that found at 25 °C, providing a further inkling that K+ occlusion by the H,K-ATPase is not really favoured. Increasing [H+] from pH 8 to pH 7, which possibly shifts the protein to E1, produces a subtle destabilizing effect on the H,K-ATPase. We performed a prediction of potential intramolecular interactions and found that the differential stability between E1 and E2 may be mainly explained by the higher number of hydrophobic interactions in the α- and ß-subunits of E2 conformation.


Assuntos
ATPase Trocadora de Sódio-Potássio , Sódio , Cátions/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Cinética , Sódio/metabolismo , ATPase Trocadora de Sódio-Potássio/metabolismo
17.
Bioorg Med Chem ; 64: 116765, 2022 06 15.
Artigo em Inglês | MEDLINE | ID: mdl-35477061

RESUMO

With the aim to discover a novel potent potassium-competitive acid blocker (P-CAB) agent, a series of 5-methyl-2,4,5,6-tetrahydropyrrolo[3,4-c]pyrazole derivatives were synthesized, and their H+/K+-ATPase inhibitory activities and inhibitory action on histamine-stimulated gastric acid secretion in rats were evaluated. Among the compounds synthesized, compound 3'-((3-(2-fluorophenyl)-5-methyl-5,6-dihydropyrrolo[3,4-c]pyrazol-2(4H)-yl)methyl)-[1,1'-biphenyl]-3-carboxamide not only exhibited potent H+/K+-ATPase inhibitory activity but olso showed potent inhibitory action in vivo on histamine-stimulated gastric acid secretion. In addition, the lead compound displayed favourable oral pharmacokinetic properties in rats, which was worthy of further study as a novel P-CAB agent.


Assuntos
Ácido Gástrico , ATPase Trocadora de Hidrogênio-Potássio , Animais , Ácido Gástrico/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Histamina , Potássio/metabolismo , Inibidores da Bomba de Prótons/farmacologia , Pirazóis/farmacologia , Pirróis/farmacologia , Ratos
18.
Int J Mol Sci ; 23(3)2022 Jan 19.
Artigo em Inglês | MEDLINE | ID: mdl-35162971

RESUMO

H+/K+ ATPase Type 2 is an heteromeric membrane protein involved in cation transmembrane transport and consists of two subunits: a specific α subunit (ATP12A) and a non-specific ß subunit. The aim of this study was to demonstrate the presence and establish the localization of ATP12A in spermatozoa from Bubalus bubalis, Bos taurus and Ovis aries. Immunoblotting revealed, in all three species, a major band (100 kDa) corresponding to the expected molecular mass. The ATP12A immunolocalization pattern showed, consistently in the three species, a strong signal at the acrosome. These results, described here for the first time in spermatozoa, are consistent with those observed for the ß1 subunit of Na+/K+ ATPase, suggesting that the latter may assemble with the α subunit to produce a functional ATP12A dimer in sperm cells. The above scenario appeared to be nicely supported by 3D comparative modeling and interaction energy calculations. The expression of ATP12A during different stages of bovine sperm maturation progressively increased, moving from epididymis to deferent ducts. Based on overall results, we hypothesize that ATP12A may play a role in acrosome reactions. Further studies will be required in order to address the functional role of this target protein in sperm physiology.


Assuntos
ATPase Trocadora de Hidrogênio-Potássio , Espermatozoides , Animais , Búfalos/metabolismo , Bovinos , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Transporte de Íons , Masculino , ATPase Trocadora de Sódio-Potássio/metabolismo , Espermatozoides/metabolismo
19.
Am J Surg Pathol ; 46(4): 443-453, 2022 04 01.
Artigo em Inglês | MEDLINE | ID: mdl-34999591

RESUMO

Gastric adenocarcinoma of the fundic gland type (GAFG) has been recently classified by the World Health Organization (WHO), however, clinicopathologic features of pepsinogen I- or H+/K+-ATPase-positive gastric tumors remain unclear. Therefore, this study evaluates the frequency and clinicopathologic features of those tumors, using a tissue microarray block to identify pepsinogen I- or H+/K+-ATPase-positive tumors from 810 endoscopically resected, early gastric epithelial tumors. The frequency of pepsinogen I-positive lesions was 2.1%, and that of H+/K+-ATPase-positive lesions was 2.0%. Pepsinogen I- or H+/K+-ATPase positivity was not observed in undifferentiated-type tumors, while gastric tumors with morphologic similarity to fundic glands were positive for pepsinogen I- or H+/K+-ATPase. We divided pepsinogen I- or H+/K+-ATPase-positive gastric tumors into group A, with fundic gland-like structure, or group B, without fundic gland-like structure. The frequency of group A was 1.6%: 46.2% were positive only for pepsinogen I and 53.8% for H+/K+-ATPase and pepsinogen I. The frequency of group B was 1.5%: 25% were positive only for pepsinogen I, 8.3% for H+/K+-ATPase and pepsinogen I, and 66.7% only for H+/K+-ATPase. The 2 tumor groups differed in location and endoscopic features. Hematoxylin and eosin staining showed that group B had more exposed tumors to the surface, larger nuclei, and more background atrophy than group A. Immunostaining showed significantly higher positivity rates for MUC5AC, CD10, CDX2, and p53 expression, and a higher Ki-67 labeling score. Our results provide novel insights into the pathology of early gastric tumors with histologic or immunohistochemical evidence of fundic gland differentiation.


Assuntos
Adenocarcinoma , ATPase Trocadora de Hidrogênio-Potássio , Neoplasias Gástricas , Adenocarcinoma/enzimologia , Adenocarcinoma/patologia , Adenocarcinoma/cirurgia , Mucosa Gástrica/enzimologia , Mucosa Gástrica/patologia , Mucosa Gástrica/cirurgia , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , Humanos , Pepsinogênio A/metabolismo , Neoplasias Gástricas/enzimologia , Neoplasias Gástricas/patologia , Neoplasias Gástricas/cirurgia
20.
Yakugaku Zasshi ; 141(11): 1217-1222, 2021.
Artigo em Japonês | MEDLINE | ID: mdl-34719540

RESUMO

P-type ion pumps (P-type ATPases) are involved in various fundamental biological processes. For example, the gastric proton pump (H+,K+-ATPase) and sodium pump (Na+,K+-ATPase) are responsible for secretion of gastric acid and maintenance of cell membrane potential, respectively. In this review, we summarize three topics of our studies. The first topic is gastric H+,K+-ATPase associated with Cl--transporting proteins (Cl-/H+ exchanger ClC-5 and K+-Cl- cotransporter KCC4). In gastric parietal cells, we found that ClC-5 is predominantly expressed in intracellular tubulovesicles and that KCC4 is predominantly expressed in the apical membrane. Gastric acid (HCl) secretion may be accomplished by the two different complexes of H+,K+-ATPase and Cl--transporting protein. The second topic focuses on the Na+,K+-ATPase α1-isoform (α1NaK) associated with the volume-regulated anion channel (VRAC). In the cholesterol-enriched membrane microdomains of human cancer cells, we found that α1NaK has a receptor-like (non-pumping) function and that binding of low concentrations (nM level) of cardiac glycosides to α1NaK activates VRAC and exerts anti-cancer effects without affecting the pumping function of α1NaK. The third topic is the Na+,K+-ATPase α3-isoform (α3NaK) in human cancer cells. We found that α3NaK is abnormally expressed in the intracellular vesicles of attached cancer cells and that the plasma membrane translocation of α3NaK upon cell detachment contributes to the survival of metastatic cancer cells. Our results indicate that multiple functions of P-type ion pumps are generated by different membrane environments and their associated proteins.


Assuntos
Ácido Gástrico/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/metabolismo , ATPase Trocadora de Hidrogênio-Potássio/fisiologia , Microdomínios da Membrana/metabolismo , Transporte Biológico , Glicosídeos Cardíacos/metabolismo , Membrana Celular/metabolismo , Canais de Cloreto/metabolismo , Canais de Cloreto/fisiologia , Humanos , Isoenzimas , Neoplasias/metabolismo , Neoplasias/patologia , Células Parietais Gástricas/metabolismo , ATPase Trocadora de Sódio-Potássio/metabolismo , ATPase Trocadora de Sódio-Potássio/fisiologia , Simportadores/metabolismo , Simportadores/fisiologia , Cotransportadores de K e Cl-
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