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1.
Cancers (Basel) ; 14(5)2022 Mar 03.
Artigo em Inglês | MEDLINE | ID: mdl-35267607

RESUMO

GD3 synthase controls the biosynthesis of complex gangliosides, bearing two or more sialic acid residues. Disialylated gangliosides GD3 and GD2 are tumor-associated carbohydrate antigens (TACA) in neuro-ectoderm-derived cancers, and are directly involved in cell malignant properties, i.e., migration, invasion, stemness, and epithelial-mesenchymal transition. Since GD3 and GD2 levels are directly linked to GD3 synthase expression and activity, targeting GD3 synthase appears to be a promising strategy through which to interfere with ganglioside-associated malignant properties. We review here the current knowledge on GD3 synthase expression and regulation in cancers, and the consequences of complex ganglioside expression on cancer cell signaling and properties, highlighting the relationships between GD3 synthase expression and epithelial-mesenchymal transition and stemness. Different strategies were used to modulate GD3 synthase expression in cancer cells in vitro and in animal models, such as inhibitors or siRNA/lncRNA, which efficiently reduced cancer cell malignant properties and the proportion of GD2 positive cancer stem cells, which are associated with high metastatic properties, resistance to therapy, and cancer relapse. These data show the relevance of targeting GD3 synthase in association with conventional therapies, to decrease the number of cancer stem cells in tumors.

2.
Cells ; 10(6)2021 06 11.
Artigo em Inglês | MEDLINE | ID: mdl-34208013

RESUMO

The O-acetylated form of GD2, almost exclusively expressed in cancerous tissues, is considered to be a promising therapeutic target for neuroectoderm-derived tumors, especially for breast cancer. Our recent data have shown that 9-O-acetylated GD2 (9-OAcGD2) is the major O-acetylated ganglioside species in breast cancer cells. In 2015, Baumann et al. proposed that Cas 1 domain containing 1 (CASD1), which is the only known human sialyl-O-acetyltransferase, plays a role in GD3 O-acetylation. However, the mechanisms of ganglioside O-acetylation remain poorly understood. The aim of this study was to determine the involvement of CASD1 in GD2 O-acetylation in breast cancer. The role of CASD1 in OAcGD2 synthesis was first demonstrated using wild type CHO and CHOΔCasd1 cells as cellular models. Overexpression using plasmid transfection and siRNA strategies was used to modulate CASD1 expression in SUM159PT breast cancer cell line. Our results showed that OAcGD2 expression was reduced in SUM159PT that was transiently depleted for CASD1 expression. Additionally, OAcGD2 expression was increased in SUM159PT cells transiently overexpressing CASD1. The modulation of CASD1 expression using transient transfection strategies provided interesting insights into the role of CASD1 in OAcGD2 and OAcGD3 biosynthesis, and it highlights the importance of further studies on O-acetylation mechanisms.


Assuntos
Acetiltransferases/metabolismo , Neoplasias da Mama/patologia , Gangliosídeos/química , Acetilação , Acetiltransferases/genética , Apoptose , Neoplasias da Mama/genética , Neoplasias da Mama/metabolismo , Proliferação de Células , Feminino , Humanos , Prognóstico , Taxa de Sobrevida , Células Tumorais Cultivadas
3.
Int J Mol Sci ; 22(11)2021 Jun 07.
Artigo em Inglês | MEDLINE | ID: mdl-34200284

RESUMO

Aberrant expression of glycosphingolipids is a hallmark of cancer cells and is associated with their malignant properties. Disialylated gangliosides GD2 and GD3 are considered as markers of neuroectoderm origin in tumors, whereas fucosyl-GM1 is expressed in very few normal tissues but overexpressed in a variety of cancers, especially in small cell lung carcinoma. These gangliosides are absent in most normal adult tissues, making them targets of interest in immuno-oncology. Passive and active immunotherapy strategies have been developed, and have shown promising results in clinical trials. In this review, we summarized the current knowledge on GD2, GD3, and fucosyl-GM1 expression in health and cancer, their biosynthesis pathways in the Golgi apparatus, and their biological roles. We described how their overexpression can affect intracellular signaling pathways, increasing the malignant phenotypes of cancer cells, including their metastatic potential and invasiveness. Finally, the different strategies used to target these tumor-associated gangliosides for immunotherapy were discussed, including the use and development of monoclonal antibodies, vaccines, immune system modulators, and immune effector-cell therapy, with a special focus on adoptive cellular therapy with T cells engineered to express chimeric antigen receptors.


Assuntos
Anticorpos Monoclonais/farmacologia , Biomarcadores Tumorais/metabolismo , Glicoesfingolipídeos/antagonistas & inibidores , Glicoesfingolipídeos/metabolismo , Imunoterapia/métodos , Neoplasias/tratamento farmacológico , Animais , Glicoesfingolipídeos/imunologia , Humanos , Neoplasias/imunologia , Neoplasias/metabolismo , Transdução de Sinais
4.
Med Sci (Paris) ; 37(6-7): 609-617, 2021.
Artigo em Francês | MEDLINE | ID: mdl-34180820

RESUMO

Glycosylation is one of the essential modifications of proteins and lipids. It is carried out mainly in the endoplasmic reticulum and Golgi apparatus, and requires a specific molecular machinery associating several hundreds of glycosyltransferases, glycosidases, transporters and regulating proteins. Modifications of glycosylation are found in numerous diseases, notably in cancers. All types of glycosylation can be affected and this leads to dysfunctions of cellular metabolism. In this review, we present the current knowledge on the regulation of glycosylation mechanisms and illustrate how the alteration of these regulatory mechanisms can lead to abnormal protein and lipid glycosylation, and take part in the development of cancers.


TITLE: Les mécanismes de régulation de la glycosylation - Exemples d'altérations des chaînes glycanniques dans les cancers. ABSTRACT: La glycosylation est l'une des modifications essentielles des protéines et des lipides. Elle s'effectue principalement dans le réticulum endoplasmique et l'appareil de Golgi et fait appel à une machinerie moléculaire spécifique, associant plusieurs centaines de glycosyltransférases, de glycosidases, de transporteurs et de protéines régulatrices. Des modifications de la glycosylation sont retrouvées dans certaines maladies, notamment dans les cancers. Ces altérations peuvent affecter toutes les formes de glycosylation réticulaires et/ou golgiennes, et conduire à des dysfonctionnements du métabolisme cellulaire. Dans cette revue, nous présentons l'état actuel des connaissances des mécanismes de la glycosylation. Nous illustrerons, au travers d'exemples représentatifs, comment l'altération de certains de ces mécanismes de régulation peut affecter les différentes formes de glycosylation des protéines et des lipides et participer au développement des cancers.


Assuntos
Complexo de Golgi , Retículo Endoplasmático/metabolismo , Glicosilação , Glicosiltransferases/genética , Humanos
5.
Cells ; 9(3)2020 03 17.
Artigo em Inglês | MEDLINE | ID: mdl-32192217

RESUMO

O-acetylation of sialic acid residues is one of the main modifications of gangliosides, and modulates ganglioside functions. O-acetylation of gangliosides is dependent on sialyl-O-acetyltransferases and sialyl-O-acetyl-esterase activities. CAS1 Domain-Containing Protein 1 (CASD1) is the only human sialyl-O-acetyltransferases (SOAT) described until now. O-acetylated ganglioside species are mainly expressed during embryonic development and in the central nervous system in healthy adults, but are re-expressed during cancer development and are considered as markers of cancers of neuroectodermal origin. However, the specific biological roles of O-acetylated gangliosides in developing and malignant tissues have not been extensively studied, mostly because of the requirement of specific approaches and tools for sample preparation and analysis. In this review, we summarize our current knowledge of ganglioside biosynthesis and expression in normal and pathological conditions, of ganglioside O-acetylation analysis and expression in cancers, and of the possible use of O-acetylated gangliosides as targets for cancer immunotherapy.


Assuntos
Gangliosídeos/metabolismo , Imunoterapia , Terapia de Alvo Molecular , Neoplasias/terapia , Acetilação , Animais , Gangliosídeos/biossíntese , Gangliosídeos/química , Humanos , Ácido N-Acetilneuramínico/metabolismo , Neoplasias/patologia
6.
Adv Protein Chem Struct Biol ; 119: 111-156, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-31997767

RESUMO

Glycosylation is one of the most important modifications of proteins and lipids, and cell surface glycoconjugates are thought to play important roles in a variety of biological functions including cell-cell and cell-substrate interactions, bacterial adhesion, cell immunogenicity and cell signaling. Alterations of glycosylation are observed in a number of inflammatory diseases. Pro-inflammatory cytokines have been shown to modulate cell surface glycosylation by regulating the expression of glycosyltransferases and sulfotransferases involved in the biosynthesis of glycan chains, inducing the expression of specific carbohydrate antigens at the cell surface that can be recognized by different types of lectins or by bacterial adhesins, contributing to the development of diseases. Glycosylation can also regulate biological functions of immune cells by recruiting leukocytes to inflammation sites with pro- or anti-inflammatory effects. Cell surface proteoglycans provide a large panel of binding sites for many mediators of inflammation, and regulate their bio-availability and functions. In this review, we summarize the current knowledge of the glycosylation changes occurring in mucin type O-linked glycans, glycosaminoglycans, as well as in glycosphingolipids, with a particular focus on cystic fibrosis and neurodegenerative diseases, and their consequences on cell interactions and disease progression.


Assuntos
Inflamação/metabolismo , Doenças Inflamatórias Intestinais/metabolismo , Doenças Neurodegenerativas/metabolismo , Animais , Glicosilação , Humanos
7.
Int J Mol Sci ; 21(1)2020 Jan 06.
Artigo em Inglês | MEDLINE | ID: mdl-31935967

RESUMO

The expression and biological functions of oncofetal markers GD2 and GD3 were extensively studied in neuroectoderm-derived cancers in order to characterize their potential as therapeutic targets. Using immunological approaches, we previously identified GD3, GD2, and OAcGD2 expression in breast cancer (BC) cell lines. However, antibodies specific for O-acetylated gangliosides are not exempt of limitations, as they only provide information on the expression of a limited set of O-acetylated ganglioside species. Consequently, the aim of the present study was to use structural approaches in order to apprehend ganglioside diversity in melanoma, neuroblastoma, and breast cancer cells, focusing on O-acetylated species that are usually lost under alkaline conditions and require specific analytical procedures. We used purification and extraction methods that preserve the O-acetyl modification for the analysis of native gangliosides by MALDI-TOF. We identified the expression of GM1, GM2, GM3, GD2, GD3, GT2, and GT3 in SK-Mel28 (melanoma), LAN-1 (neuroblastoma), Hs 578T, SUM 159PT, MDA-MB-231, MCF-7 (BC), and BC cell lines over-expressing GD3 synthase. Among O-acetylated gangliosides, we characterized the expression of OAcGM1, OAcGD3, OAcGD2, OAcGT2, and OAcGT3. Furthermore, the experimental procedure allowed us to clearly identify the position of the sialic acid residue that carries the O-acetyl group on b- and c-series gangliosides by MS/MS fragmentation. These results show that ganglioside O-acetylation occurs on both inner and terminal sialic acid residue in a cell type-dependent manner, suggesting different O-acetylation pathways for gangliosides. They also highlight the limitation of immuno-detection for the complete identification of O-acetylated ganglioside profiles in cancer cells.


Assuntos
Acetiltransferases/metabolismo , Gangliosídeos/metabolismo , Placa Neural/citologia , Acetilação , Acetiltransferases/genética , Neoplasias da Mama/metabolismo , Feminino , Gangliosídeos/química , Humanos , Células MCF-7 , Melanoma/metabolismo , Ácido N-Acetilneuramínico/química , Ácido N-Acetilneuramínico/metabolismo , Placa Neural/metabolismo , Neuroblastoma/metabolismo
8.
Biomolecules ; 9(8)2019 07 27.
Artigo em Inglês | MEDLINE | ID: mdl-31357634

RESUMO

Gangliosides, the glycosphingolipids carrying one or several sialic acid residues, are mostly localized at the plasma membrane in lipid raft domains and implicated in many cellular signaling pathways mostly by interacting with tyrosine kinase receptors. Gangliosides are divided into four series according to the number of sialic acid residues, which can be also modified by O-acetylation. Both ganglioside expression and sialic acid modifications can be modified in pathological conditions such as cancer, which can induce either pro-cancerous or anti-cancerous effects. In this review, we summarize the specific functions of gangliosides in neuro-ectodermal derived tumors, and their roles in reprogramming the lipidomic profile of cell membrane occurring with the induction of epithelial-mesenchymal transition.


Assuntos
Gangliosídeos/metabolismo , Tumores Neuroectodérmicos/metabolismo , Acetilação , Membrana Celular/metabolismo , Transição Epitelial-Mesenquimal , Gangliosídeos/química , Humanos , Receptores Proteína Tirosina Quinases/metabolismo , Transdução de Sinais
9.
Int J Mol Sci ; 20(3)2019 Jan 31.
Artigo em Inglês | MEDLINE | ID: mdl-30709055

RESUMO

The mammalian mono-α2,8-sialyltransferase ST8Sia VI has been shown to catalyze the transfer of a unique sialic acid residues onto core 1 O-glycans leading to the formation of di-sialylated O-glycosylproteins and to a lesser extent to diSia motifs onto glycolipids like GD1a. Previous studies also reported the identification of an orthologue of the ST8SIA6 gene in the zebrafish genome. Trying to get insights into the biosynthesis and function of the oligo-sialylated glycoproteins during zebrafish development, we cloned and studied this fish α2,8-sialyltransferase homologue. In situ hybridization experiments demonstrate that expression of this gene is always detectable during zebrafish development both in the central nervous system and in non-neuronal tissues. Intriguingly, using biochemical approaches and the newly developed in vitro MicroPlate Sialyltransferase Assay (MPSA), we found that the zebrafish recombinant enzyme does not synthetize diSia motifs on glycoproteins or glycolipids as the human homologue does. Using comparative genomics and molecular phylogeny approaches, we show in this work that the human ST8Sia VI orthologue has disappeared in the ray-finned fish and that the homologue described in fish correspond to a new subfamily of α2,8-sialyltransferase named ST8Sia VIII that was not maintained in Chondrichtyes and Sarcopterygii.


Assuntos
Sialiltransferases/genética , Sialiltransferases/metabolismo , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/crescimento & desenvolvimento , Animais , Células COS , Sistema Nervoso Central/metabolismo , Chlorocebus aethiops , Simulação por Computador , Evolução Molecular , Regulação da Expressão Gênica no Desenvolvimento , Glicolipídeos/química , Glicoproteínas/química , Células HEK293 , Humanos , Filogenia , Homologia de Sequência do Ácido Nucleico , Especificidade por Substrato , Distribuição Tecidual , Peixe-Zebra/genética , Peixe-Zebra/metabolismo , Proteínas de Peixe-Zebra/genética
10.
Glycoconj J ; 36(1): 79-90, 2019 02.
Artigo em Inglês | MEDLINE | ID: mdl-30612272

RESUMO

Mainly restricted to the nervous system in healthy adults, complex gangliosides such as GD3 and GD2 have been shown to be involved in aggressiveness and metastasis of neuro-ectoderm derived tumors such as melanoma and neuroblastoma. Interestingly, O-acetylated forms of GD2, not expressed in human peripheral nerve fibers, are highly expressed in GD2+ tumor cells. Very little information is known regarding the expression of O-acetylated disialogangliosides in breast cancer (BC) cell lines. Here, we analyzed the expression of GD2, GD3 and their O-acetylated forms O-acetyl-GD2 (OAcGD2) and O-acetyl-GD3 (OAcGD3) in BC cells. We used Hs 578T and SUM159PT cell lines, as well as cell clones over-expressing GD3 synthase derived from MDA-MB-231 and MCF-7. Using flow cytometry and immunocytochemistry/confocal microscopy, we report that BC cells express b-series gangliosides GD3 and GD2, as well as significant amounts of OAcGD2. However, OAcGD3 expression was not detected in these cells. O-acetylation of gangliosides isolated from BC cells was examined by LC-MS analysis of sialic acid DMB-derivatives. We report that the main acetylated form of sialic acid expressed in BC gangliosides is 9-O-acetyl-N-acetylneuraminic acid (Neu5,9Ac2). These results highlight a close interrelationship between Neu5,9Ac2 and OAcGD2 expression, and suggest that OAcGD2 is synthetized from GD2 and not from OAcGD3 in BC cells.


Assuntos
Neoplasias da Mama/metabolismo , Gangliosídeos/química , Ácidos Siálicos/análise , Feminino , Gangliosídeos/metabolismo , Humanos , Células MCF-7 , Ácidos Siálicos/química
11.
Prog Mol Biol Transl Sci ; 156: 197-227, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29747814

RESUMO

At the outer leaflet of the plasma membrane, gangliosides are found with other glycosphingolipids, phospholipids, and cholesterol in glycolipid-enriched microdomains, in which they interact with signaling molecules including receptor tyrosine kinases and signal transducers. The role of gangliosides in the regulation of signal transduction has been reported for many cases and in different cell types. The biosynthesis of gangliosides involves specific enzymes, mainly glycosyltransferases that control together with glycohydrolases, the steady state of gangliosides at the cell surface. Changes in ganglioside composition are therefore correlated with modifications of glycosyltransferases or glycohydrolases expression and result in the deregulation of cellular signals. In several types of cancers, the overexpression of disialogangliosides, such as GD3 or GD2 mainly results in the activation of cell signaling, increasing cell proliferation and migration, as well as tumor growth. In this chapter, we summarize our current knowledge of ganglioside biosynthesis, degradation, and of their role in cell signaling regulation in cancers.


Assuntos
Gangliosídeos/metabolismo , Neoplasias/fisiopatologia , Transdução de Sinais , Animais , Humanos
12.
PLoS One ; 13(4): e0196369, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29698439

RESUMO

Gangliosides are glycosphingolipids concentrated in glycolipid-enriched membrane microdomains. Mainly restricted to the nervous system in healthy adult, complex gangliosides such as GD3 and GD2 have been shown to be involved in aggressiveness and metastasis of neuro-ectoderm derived tumors such as melanoma and neuroblastoma. GD3 synthase (GD3S), the key enzyme that controls the biosynthesis of complex gangliosides, was shown to be over-expressed in Estrogen Receptor (ER)-negative breast cancer tumors, and associated with a decreased overall survival of patients. We previously demonstrated that GD3S expression in ER-negative breast cancer cells induced a proliferative phenotype and an increased tumor growth. In addition, our results clearly indicate that Tumor Necrosis Factor (TNF) induced GD3S over-expression in breast cancer cells via NFκB pathway. In this study, we analyzed the effect of TNF on ganglioside biosynthesis and expression in breast cancer cells from different molecular subtypes. We showed that TNF up-regulated the expression of GD3S in MCF-7 and Hs578T cells, whereas no change was observed for MDA-MB-231. We also showed that TNF induced an increased expression of complex gangliosides at the cell surface of a small proportion of MCF-7 cells. These results demonstrate that TNF differentially regulates gangliosides expression in breast cancer cell lines and establish a possible link between inflammation at the tumor site environment, expression of complex gangliosides and tumor development.


Assuntos
Gangliosídeos/biossíntese , Regulação Neoplásica da Expressão Gênica/efeitos dos fármacos , Fator de Necrose Tumoral alfa/farmacologia , Neoplasias da Mama/metabolismo , Neoplasias da Mama/patologia , Linhagem Celular Tumoral , Ácidos Graxos/química , Feminino , Gangliosídeos/análise , Glicosiltransferases/genética , Glicosiltransferases/metabolismo , Humanos , Células MCF-7 , Microscopia de Fluorescência , Sialiltransferases/genética , Sialiltransferases/metabolismo , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz
13.
Chembiochem ; 18(13): 1146-1154, 2017 07 04.
Artigo em Inglês | MEDLINE | ID: mdl-28295942

RESUMO

Gangliosides are acidic glycosphingolipids containing one or more sialic acid residues. They are essential compounds at the outer leaflet of the plasma membrane, where they interact with phospholipids, cholesterol, and transmembrane proteins, forming lipid rafts. They are involved in cell adhesion, proliferation, and recognition processes, as well as in the modulation of signal transduction pathways. These functions are mainly governed by the glycan moiety, and changes in the structures of gangliosides occur under pathological conditions, particularly in neuro-ectoderm-derived cancers. With the progress in mass spectrometry analysis of gangliosides, their role in cancer progression can be now investigated in more detail. In this review we summarize the current knowledge on the biosynthesis of gangliosides and their role in cancers, together with the recent development of cancer immunotherapy targeting gangliosides.


Assuntos
Anticorpos Monoclonais/uso terapêutico , Antineoplásicos/uso terapêutico , Gangliosídeos/antagonistas & inibidores , Microdomínios da Membrana/efeitos dos fármacos , Neoplasias/imunologia , Animais , Configuração de Carboidratos , Sequência de Carboidratos , Adesão Celular/efeitos dos fármacos , Proliferação de Células/efeitos dos fármacos , Progressão da Doença , Gangliosídeos/biossíntese , Gangliosídeos/química , Humanos , Imunoterapia , Microdomínios da Membrana/química , Microdomínios da Membrana/metabolismo , Terapia de Alvo Molecular , Neoplasias/genética , Neoplasias/patologia , Neoplasias/terapia , Ácidos Siálicos/química , Ácidos Siálicos/metabolismo , Sialiltransferases/antagonistas & inibidores , Sialiltransferases/genética , Sialiltransferases/metabolismo , Transdução de Sinais
14.
Glycobiology ; 27(4): 329-341, 2017 04 01.
Artigo em Inglês | MEDLINE | ID: mdl-27986833

RESUMO

The occurrence and biological importance of sialic acid (Sia) and its metabolic enzymes in insects have been studied using Drosophila melanogaster. The most prominent feature of D. melanogaster CMP-Sia synthetase (DmCSS) is its Golgi-localization, contrasted with nuclear localization of vertebrate CSSs. However, it remains unclear if the Golgi-localization is common to other insect CSSs and why it happens. To answer these questions, Aedes aegypti (mosquito) CSS (AaCSS) and Tribolium castaneum (beetle) CSS (TcCSS) were cloned and characterized for their activity and subcellular localization. Our new findings show: (1) AaCSS and TcCSS share a common overall structure with DmCSS in terms of evolutionarily conserved motifs and the absence of the C-terminal domain typical to vertebrate CSSs; (2) when expressed in mammalian and insect cells, AaCSS and TcCSS showed in vivo and in vitro CSS activities, similar to DmCSS. In contrast, when expressed in bacteria, they lacked CSS activity because the N-terminal hydrophobic region appeared to induce protein aggregation; (3) when expressed in Drosophila S2 cells, AaCSS and TcCSS were predominantly localized in the ER, but not in the Golgi. Surprisingly, DmCSS was mainly secreted into the culture medium, although partially detected in Golgi. Consistent with these results, the N-terminal hydrophobic regions of AaCSS and TcCSS functioned as a signal peptide to render them soluble in the ER, while the N-terminus of DmCSS functioned as a membrane-spanning region of type II transmembrane proteins whose cytosolic KLK sequence functioned as an ER export signal. Accordingly, the differential subcellular localization of insect CSSs are distinctively more diverse than previously recognized.


Assuntos
Ácido N-Acetilneuramínico/genética , N-Acilneuraminato Citidililtransferase/química , N-Acilneuraminato Citidililtransferase/genética , Aedes/enzimologia , Motivos de Aminoácidos/genética , Animais , Drosophila melanogaster/enzimologia , Drosophila melanogaster/genética , Complexo de Golgi/enzimologia , Complexo de Golgi/genética , Mutação , Ácido N-Acetilneuramínico/química , Ácido N-Acetilneuramínico/metabolismo , N-Acilneuraminato Citidililtransferase/metabolismo , Conformação Proteica , Tribolium/enzimologia
15.
Biochem J ; 474(1): 65-78, 2017 01 01.
Artigo em Inglês | MEDLINE | ID: mdl-27821620

RESUMO

We have previously shown that tumor necrosis factor (TNF) induced the up-regulation of the sialyltransferase gene ST3GAL4 (α2,3-sialyltransferase gene) BX transcript through mitogen- and stress-activated kinase 1/2 (MSK1/2), extracellular signal-regulated kinase (ERK) and p38 mitogen-activated protein kinase (MAPK) signaling pathways. This up-regulation resulted in sialyl-Lewisx (sLex) overexpression on high-molecular-weight glycoproteins in inflamed airway epithelium and increased the adhesion of Pseudomonas aeruginosa PAO1 and PAK strains to lung epithelial cells. In the present study, we describe a TNF-responsive element in an intronic region of the ST3GAL4 gene, whose TNF-dependent activity is repressed by ERK/p38 and MSK1/2 inhibitors. This TNF-responsive element contains potential binding sites for ETS1 and ATF2 transcription factors related to TNF signaling. We also show that ATF2 is involved in TNF responsiveness, as well as in TNF-induced ST3GAL4 BX transcript and sLex overexpression in A549 lung epithelial cells. Moreover, we show that TNF induces the binding of ATF2 to the TNF-responsive element. Altogether, these data suggest that ATF2 could be a potential target to prevent inflammation-induced P. aeruginosa binding in the lung of patients suffering from lung diseases such as chronic bronchitis or cystic fibrosis.


Assuntos
Fator 2 Ativador da Transcrição/metabolismo , Células Epiteliais/metabolismo , Pulmão/metabolismo , Sistema de Sinalização das MAP Quinases , Oligossacarídeos/biossíntese , Mucosa Respiratória/metabolismo , Elementos de Resposta , Sialiltransferases/biossíntese , Fator de Necrose Tumoral alfa/metabolismo , Células A549 , MAP Quinases Reguladas por Sinal Extracelular/genética , MAP Quinases Reguladas por Sinal Extracelular/metabolismo , Humanos , Proteína Proto-Oncogênica c-ets-1/genética , Proteína Proto-Oncogênica c-ets-1/metabolismo , Pseudomonas aeruginosa/metabolismo , Antígeno Sialil Lewis X , Sialiltransferases/genética , Fator de Necrose Tumoral alfa/genética , beta-Galactosídeo alfa-2,3-Sialiltransferase
16.
Cells ; 5(4)2016 Nov 29.
Artigo em Inglês | MEDLINE | ID: mdl-27916834

RESUMO

Glycosylation is one of the most important modifications of proteins and lipids, and cell surface glycoconjugates are thought to play important roles in a variety of biological functions including cell-cell and cell-substrate interactions, bacterial adhesion, cell immunogenicity and cell signaling. Alterations of glycosylation are observed in number of diseases such as cancer and chronic inflammation. In that context, pro-inflammatory cytokines have been shown to modulate cell surface glycosylation by regulating the expression of glycosyltransferases involved in the biosynthesis of carbohydrate chains. These changes in cell surface glycosylation are also known to regulate cell signaling and could contribute to disease pathogenesis. This review summarizes our current knowledge of the glycosylation changes induced by pro-inflammatory cytokines, with a particular focus on cancer and cystic fibrosis, and their consequences on cell interactions and signaling.

17.
Int J Mol Sci ; 17(8)2016 Aug 11.
Artigo em Inglês | MEDLINE | ID: mdl-27529215

RESUMO

The ST6GALNAC5 gene that encodes an α2,6-sialyltransferase involved in the biosynthesis of α-series gangliosides, was previously identified as one of the genes that mediate breast cancer metastasis to the brain. We have shown that the expression of ST6GALNAC5 in MDA-MB-231 breast cancer cells resulted in the expression of GD1α ganglioside at the cell surface. By using a human blood-brain barrier in vitro model recently developed, consisting in CD34⁺ derived endothelial cells co-cultivated with pericytes, we show that ST6GALNAC5 expression decreased the interactions between the breast cancer cells and the human blood-brain barrier.


Assuntos
Barreira Hematoencefálica/metabolismo , Neoplasias da Mama/metabolismo , Sialiltransferases/metabolismo , Animais , Antígenos CD34/metabolismo , Neoplasias da Mama/genética , Linhagem Celular Tumoral , Feminino , Gangliosídeo G(M1)/análogos & derivados , Gangliosídeo G(M1)/metabolismo , Humanos , Camundongos , Pericitos/metabolismo , Sialiltransferases/genética
18.
Int J Oncol ; 49(1): 265-75, 2016 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-27176937

RESUMO

Distant metastases account for the majority of cancer-related deaths in breast cancer. The rate and site of metastasis differ between estrogen receptor (ER)-negative and ER-positive tumours, and metastatic fate can be very diverse even within the ER-negative group. Characterisation of new pro-metastatic markers may help to identify patients with higher risk and improve their care accordingly. Selectin ligands aberrantly expressed by cancer cells promote metastasis by enabling interaction between circulating tumour cells and endothelial cells in distant organs. These ligands consist in carbohydrate molecules, such as sialyl-Lewis x antigen (sLex), borne by glycoproteins or glycolipids on the cancer cell surface. We have previously demonstrated that the molecular scaffold presenting sLex to selectins (e.g. glycolipid vs. glycoproteins) was crucial for these interactions to occur. Moreover, we reported that detection of sLex alone in breast carcinomas was only of limited prognostic value. However, since sLex was found to be carried by several glycoproteins in cancer cells, we hypothesized that the combination of the carbohydrate with its carriers could be more relevant than each marker independently. In this study, we addressed this question by analysing sLex expression together with two glycoproteins (BST-2 and LGALS3BP), shown to interact with E-selectin in a carbohydrate-dependent manner, in a cohort of 249 invasive breast cancers. We found both glycoproteins to be associated with distant metastasis risk and poorer survival. Importantly, concomitant high expression of BST-2 with sLex defined a sub-group of patients with ER-negative tumours displaying higher risks of liver and brain metastasis and a 3-fold decreased survival rate.


Assuntos
Antígenos CD/biossíntese , Antígenos de Neoplasias/biossíntese , Biomarcadores Tumorais/biossíntese , Neoplasias da Mama/genética , Proteínas de Transporte/biossíntese , Selectina E/biossíntese , Glicoproteínas/biossíntese , Adulto , Idoso , Idoso de 80 Anos ou mais , Antígenos CD/genética , Antígenos de Neoplasias/genética , Biomarcadores Tumorais/genética , Neoplasias da Mama/patologia , Proteínas de Transporte/genética , Intervalo Livre de Doença , Selectina E/genética , Receptor alfa de Estrogênio/genética , Feminino , Proteínas Ligadas por GPI/biossíntese , Proteínas Ligadas por GPI/genética , Regulação Neoplásica da Expressão Gênica , Glicoproteínas/genética , Humanos , Antígenos CD15/genética , Ligantes , Pessoa de Meia-Idade , Metástase Neoplásica , Prognóstico , Antígeno Sialil Lewis X
19.
PLoS One ; 11(3): e0151155, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-26958843

RESUMO

Around 7-17% of metastatic breast cancer patients will develop brain metastases, associated with a poor prognosis. To reach the brain parenchyma, cancer cells need to cross the highly restrictive endothelium of the Blood-Brain Barrier (BBB). As treatments for brain metastases are mostly inefficient, preventing cancer cells to reach the brain could provide a relevant and important strategy. For that purpose an in vitro approach is required to identify cellular and molecular interaction mechanisms between breast cancer cells and BBB endothelium, notably at the early steps of the interaction. However, while numerous studies are performed with in vitro models, the heterogeneity and the quality of BBB models used is a limitation to the extrapolation of the obtained results to in vivo context, showing that the choice of a model that fulfills the biological BBB characteristics is essential. Therefore, we compared pre-established and currently used in vitro models from different origins (bovine, mice, human) in order to define the most appropriate tool to study interactions between breast cancer cells and the BBB. On each model, the BBB properties and the adhesion capacities of breast cancer cell lines were evaluated. As endothelial cells represent the physical restriction site of the BBB, all the models consisted of endothelial cells from animal or human origins. Among these models, only the in vitro BBB model derived from human stem cells both displayed BBB properties and allowed measurement of meaningful different interaction capacities of the cancer cell lines. Importantly, the measured adhesion and transmigration were found to be in accordance with the cancer cell lines molecular subtypes. In addition, at a molecular level, the inhibition of ganglioside biosynthesis highlights the potential role of glycosylation in breast cancer cells adhesion capacities.


Assuntos
Barreira Hematoencefálica/citologia , Neoplasias da Mama/patologia , Animais , Antígenos CD34/metabolismo , Bovinos , Diferenciação Celular/fisiologia , Linhagem Celular Tumoral , Células Cultivadas , Feminino , Sangue Fetal/citologia , Humanos , Camundongos , Neuroglia/citologia , Neuroglia/metabolismo , Pericitos/citologia , Pericitos/metabolismo , Ratos
20.
Top Curr Chem ; 367: v-vii, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26512370
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