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1.
Academic Journal of Second Military Medical University ; (12): 547-553, 2019.
Artículo en Chino | WPRIM | ID: wpr-837976

RESUMEN

Objective To explore the expression of C-type lectin domain 1 member B (CLEC1B) in hepatocellular carcinoma (HCC) tissues and its relationship with the clinicopathological characteristics and prognosis of HCC patients. Methods HCC tissue microarray data (GSE49515, GSE115018) were retrieved from Gene Expression Omnibus (GEO) database to analyze the differential expression of genes between cancer tissues and normal control tissues. HCC transcriptome datasets were screened from The Cancer Genome Atlas (TCGA) database to analyze the differential expression of CLEC1B in HCC tissues. Gene Set Enrichment Analysis (GSEA) was used to search for the signaling pathways related to CLEC1B in HCC. The cancer tissues and corresponding paracancerous tissues were collected from 37 HCC patients. The expression of CLEC1B mRNA was detected by quantitative real-time PCR, the expression of CLEC1B protein was detected by Western blotting. χ2 test was performed to analyze the relationship between CLEC1B expression and clinicopathological characteristics of HCC patients. Kaplan-Meier method and log-rank test were performed to analyze the relationship between CLEC1B mRNA expression and prognosis of HCC patients. The blood samples were collected from 37 HCC patients and 37 healthy volunteers. The concentration of CLEC1B in plasma was measured by enzyme-linked immunosorbent assay. The diagnostic value of CLEC1B for HCC was evaluated by receiver operating characteristic (ROC) curve. Results The expression of CLEC1B was low in HCC cancer tissues, and the low expression of CLEC1B in HCC tissues was associated with tumor hemorrhage (P0.01). The concentration of CLEC1B in plasma could be used as a biomarker for the diagnosis of HCC. The best diagnostic efficiency of CLEC1B was obtained by using 62.44 ng/mL as cut-off value (the area under the ROC curve was 0.966, the sensitivity was 92.7%, and the specificity was 91.3%). The HCC patients with high CLEC1B expression had a longer overall survival than those with low CLEC1B expression, and the difference was significant (P0.01). In HCC, CLEC1B gene showed a consistent trend of differential expression with ATM and Rad3-related pathway (ATR pathway), cell cycle pathway, DNA repair pathway and myc signaling pathway. Conclusion The low expression of CLEC1B in HCC is related to tumor hemorrhage, and the prognosis of HCC patients with low expression of CLEC1B is poor.

2.
J. Health Biol. Sci. (Online) ; 5(4): 306-310, out-dez/2017. ilus
Artículo en Inglés | LILACS | ID: biblio-868025

RESUMEN

Background: The vasorelaxant effect of lectins from leguminous plants (Diocleinae subtribe) is well described. However, this effect has been little explored for lectins isolated from Dalbergieae tribe, except for that of Vatairea guianensis, that induces vasorelaxation involving nitric oxide and the lectin domain. Objective: To evaluate the vasorelaxant effect of a lectin isolated from Lonchocarpus araripensis (LAL), Dalbergieae tribe, and the involvement of the lectin domain and endothelium derived relaxing factors. Methods: Aortic rings of Wistar rats (250 - 300 g) were mounted in organ bath and mantained in physiological conditions (CEUA No. 10130208-8/40). LAL (0.1­100 µg/ml) was added to phenylephrine (0.1 µM)-contracted tissues with either endothelium intact or denuded. In order to investigate the mechanisms of LAL relaxation, inhibitors of NOS (L-NAME: 100 µM), cyclooxygenase (indomethacin: 10 µM), or potassium channels (TEA: 5 mM) were added to endothelized tissues 30 min before contraction. The involvement of lectin domain was assessed by previous incubation of LAL (30 µg/ml) with GlcNAc (0.1 M). Results: LAL (0.1-100 µg/ml) induced relaxation only in endothelized aorta, being maximal at 100 µg/ml (62.57 ± 7.8%). The relaxant effect induced by LAL at 30 µg/ml (52.49 ± 10.32%) was abolished by previous incubation with GlcNAc. LAL relaxant effect (IC50 9.75 ± 7.1) was partially reversed by indomethacin (IC50 LAL + indomethacin: 30.47 ± 10.93) and was abolished by L-NAME or TEA. Conclusion: LAL exhibits vasorelaxant activity in contracted endothelized aorta of rats, involving the lectin domain, muscarinic receptor of acetylcholine and endothelial derived relaxing factors. (AU)


Introdução: O efeito vasorrelaxante de lectinas de plantas leguminosas (Subtribo Diocleinae) já é bem descrito, embora pouco explorado para lectinas isoladas da tribo Dalbergieae, com exceção da lectina de Vatairea guianensis, que induz relaxamento com envolvimento de óxido nítrico e do domínio lectínico. Objetivo: Avaliar o efeito vasorrelaxante da lectina isolada de Lonchocarpus araripensis (LAL), tribo Dalbergieae, e o envolvimento do domínio lectínico e de fatores relaxantes derivados do endotélio (EDRF). Métodos: Anéis de aorta de ratos Wistar (250-300 g) foram montados em banho de órgãos em condições fisiológicas (Tyrode, 37 ° C, 95% de O2 e 5% de CO2, pH = 7,4) (CEUA No. 10130208-8/40). LAL (0,1-100 µg/ml) foi adicionada a tecidos pré-contraídos com fenilefrina (0,1 µM) com ou sem endotélio. Para investigar os mecanismos de relaxamento, foram adicionados inibidores de NOS (L-NAME: 100 µM), guanilato ciclase (ODQ: 10 µM), receptor muscarínico (atropina: 1 µM), ciclooxigenase (indometacina: 10 µM) ou canais de potássio (TEA: 5 mM) aos tecidos endotelizados 30 minutos antes da contração. O envolvimento do domínio lectínico foi avaliado por incubação prévia da LAL (30 µg/ml) com GlcNAc (0,1 M). Resultados: LAL (0,1-100 µg/ml) relaxou apenas anéis de aorta endotelizadas, com efeito máximo na dose de 100 µg/ml (62,57 ± 7,8%). O efeito relaxante da LAL a 30 µg/ml (52,49 ± 10,32%) foi abolido por incubação prévia com GlcNAc, atropina ou ODQ. O relaxamento da LAL (IC50 9,75 ± 7,1) a 10, 30 e 100 µg/ml foi parcialmente revertido por indometacina (IC50 LAL + indometacina: 30,47 ± 10,93) e abolido por L-NAME e TEA. Conclusão: A LAL exibe atividade vasorrelaxante em aorta endotelizada de ratos, no estado contraído, envolvendo o domínio lectínico, receptor muscarínico e fatores relaxantes derivados do endotélio. (AU)


Asunto(s)
Lectinas de Plantas
3.
Artículo en Inglés | IMSEAR | ID: sea-135363

RESUMEN

Background & objectives: Vibrio cholerae cytolysin/hemolysin (VCC) is a 65 kDa pore-forming toxin (PFT) secreted by O1 El Tor and non-O1 strains. The purified toxin, which contains two C-terminus carbohydrate-binding domains in addition to the cytolytic domain at the core, causes lysis of a wide spectrum of eukaryotic cells at picomolar concentrations, apoptogenesis of intestinal and immune cells and accumulation of fluid in rabbit ligated ileal loop. Therefore, it may potentially complement the action of cholera toxin (CT) in diarrheagenic strains that do not produce CT. We showed earlier that β1-galactosyl-terminated glycoconjugates are strong inhibitors of its pore-forming activity, though carbohydrates are not functional receptors of VCC. Here, we investigate how the 15 kDa C-terminus β-prism lectin domain contributed to pore formation in erthrocytes. Methods: VCC was isolated from the culture supernatant of late log phase grown bacteria and purified to homogeneity by chromatography. The 50 kDa truncated variant was generated by restricted proteolysis. Liposome was prepared by sonication of a suspension of phospholipids and calceine release assay was done by spectrofluorometric monitoring of the released dye trapped in liposome. Formation of β-barrel oligomers in erythrocyte stroma was monitored by scanning electron microscopy. Results: Proteolytic truncation of the C-terminus β-prism lectin domain decreased hemolytic activity of the toxin by ~800-fold without causing a significant change in pore-forming activity toward synthetic lipid vesicles devoid of incorporated glycoproteins/glycolipids. Truncation at the C-terminus did not impair membrane-binding or assembly to the oligomeric pore. Interpretation & conclusions: Our data indicated that the C-terminus domain played a critical role in translocation of the pre-pore oligomeric assembly from the cell surface or lipid-water interface to the hydrocarbon core of the membrane bilayer, signaling the formation of functional diffusion channels.


Asunto(s)
Secuencia de Aminoácidos , Animales , Proteínas Bacterianas/química , Proteínas Bacterianas/genética , Proteínas Bacterianas/metabolismo , Proteínas Bacterianas/ultraestructura , Difusión , Eritrocitos/microbiología , Proteínas Hemolisinas/química , Proteínas Hemolisinas/genética , Proteínas Hemolisinas/metabolismo , Hemólisis/fisiología , Liposomas/química , Liposomas/ultraestructura , Datos de Secuencia Molecular , Estructura Secundaria de Proteína , Estructura Terciaria de Proteína , Conejos , Vibrio cholerae/química
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