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1.
Front Mol Biosci ; 9: 940449, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-36032664

RESUMO

Functional loss of E-cadherin is frequent during tumor progression and occurs through a variety of mechanisms, including proteolytic cleavage. E-cadherin downregulation leads to the conversion of a more malignant phenotype promoting Epithelial to Mesenchymal Transition (EMT). The UBC9/SUMO pathway has been also shown to be involved in the regulation of EMT in different cancers. Here we found an increased expression of UBC9 in the progression of Head and Neck Cancer (HNC) and uncovered a role for UBC9/SUMO in hampering the HPV-mediated E-cadherin cleavage in HNC.

2.
Planta ; 251(5): 102, 2020 Apr 29.
Artigo em Inglês | MEDLINE | ID: mdl-32350684

RESUMO

MAIN CONCLUSION: Sodium butyrate applied to Petunia hybrida seeds under a long-day photoperiod has a negative impact (reduced seedling length, decreased production of photosynthetic pigments, and accumulation of DNA damage) on early seedling development, whereas its administration under dark/light conditions (complete dark conditions for 5 days followed by exposure to long-day photoperiod for 5 days) bypasses some of the adverse effects. Genotoxic stress impairs plant development. To circumvent DNA damage, plants activate DNA repair pathways in concert with chromatin dynamics. These are essential during seed germination and seedling establishment, and may be influenced by photoperiod variations. To assess this interplay, an experimental design was developed in Petunia hybrida, a relevant horticultural crop and model species. Seeds were treated with different doses of sodium butyrate (NaB, 1 mM and 5 mM) as a stress agent applied under different light/dark conditions throughout a time period of 10 days. Phenotypic (germination percentage and speed, seedling length, and photosynthetic pigments) and molecular (DNA damage and gene expression profiles) analyses were performed to monitor the response to the imposed conditions. Seed germination was not affected by the treatments. Seedling development was hampered by increasing NaB concentrations applied under a long-day photoperiod (L) as reflected by the decreased seedling length accompanied by increased DNA damage. When seedlings were grown under dark conditions for 5 days and then exposed to long-day photoperiod for the remaining 5 days (D/L), the damaging effects of NaB were circumvented. NaB exposure under L conditions resulted in enhanced expression of HAT/HDAC (HISTONE ACETYLTRANSFERASES/HISTONE DEACTEYLASES) genes along with repression of genes involved in DNA repair. Differently, under D/L conditions, the expression of DNA repair genes was increased by NaB treatment and this was associated with lower levels of DNA damage. The observed DNA damage and gene expression profiles suggest the involvement of chromatin modification- and DNA repair-associated pathways in response to NaB and dark/light exposure during seedling development.


Assuntos
Ácido Butírico/efeitos adversos , Dano ao DNA/efeitos dos fármacos , Reparo do DNA/efeitos dos fármacos , Regulação da Expressão Gênica de Plantas/efeitos dos fármacos , Petunia/fisiologia , Cromatina/genética , Germinação/efeitos dos fármacos , Petunia/genética , Petunia/efeitos da radiação , Fotoperíodo , Fotossíntese , Plântula/genética , Plântula/fisiologia , Plântula/efeitos da radiação , Sementes/genética , Sementes/fisiologia , Sementes/efeitos da radiação
3.
Artigo em Inglês | MEDLINE | ID: mdl-32322564

RESUMO

P63, and in particular the most expressed ΔNp63α isoform, seems to have a critical role in the outcome of head and neck cancer. Many studies have been conducted to assess the possible use of p63 as a prognostic marker in squamous cell carcinoma cancers, but the results are still not well-defined. Moreover, a clear relationship between the expression of ΔNp63α and the presence of high-risk HPV E6 and E7 oncoproteins has been delineated. Here we describe how ΔNp63α is mostly expressed in HPV-positive compared to HPV-negative head and neck cancer cell lines, with a very good correlation between ΔNp63α mRNA and protein levels.


Assuntos
Alphapapillomavirus , Neoplasias de Cabeça e Pescoço , Proteínas Oncogênicas Virais , Infecções por Papillomavirus , Humanos , Proteínas Oncogênicas Virais/genética , Papillomaviridae/genética , Carcinoma de Células Escamosas de Cabeça e Pescoço
4.
Br J Cancer ; 122(3): 306-314, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31708575

RESUMO

The human papillomavirus (HPV) family includes more than 170 different types of virus that infect stratified epithelium. High-risk HPV is well established as the primary cause of cervical cancer, but in recent years, a clear role for this virus in other malignancies is also emerging. Indeed, HPV plays a pathogenic role in a subset of head and neck cancers-mostly cancers of the oropharynx-with distinct epidemiological, clinical and molecular characteristics compared with head and neck cancers not caused by HPV. This review summarises our current understanding of HPV in these cancers, specifically detailing HPV infection in head and neck cancers within different racial/ethnic subpopulations, and the differences in various aspects of these diseases between women and men. Finally, we provide an outlook for this disease, in terms of clinical management, and consider the issues of 'diagnostic biomarkers' and targeted therapies.


Assuntos
Neoplasias de Cabeça e Pescoço/epidemiologia , Infecções por Papillomavirus/epidemiologia , Carcinoma de Células Escamosas de Cabeça e Pescoço/epidemiologia , DNA Viral/análise , Etnicidade , Neoplasias de Cabeça e Pescoço/etnologia , Neoplasias de Cabeça e Pescoço/virologia , Papillomavirus Humano 16/genética , Papillomavirus Humano 16/patogenicidade , Papillomavirus Humano 18/genética , Papillomavirus Humano 18/patogenicidade , Humanos , Hibridização In Situ , Papillomaviridae/genética , Papillomaviridae/patogenicidade , Infecções por Papillomavirus/diagnóstico , Infecções por Papillomavirus/etnologia , Infecções por Papillomavirus/virologia , Prevalência , Prognóstico , RNA Viral/análise , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Fatores de Risco , Fatores Sexuais , Carcinoma de Células Escamosas de Cabeça e Pescoço/etnologia , Carcinoma de Células Escamosas de Cabeça e Pescoço/virologia
5.
Genes (Basel) ; 9(4)2018 Mar 28.
Artigo em Inglês | MEDLINE | ID: mdl-29597329

RESUMO

The hTdp1 (human tyrosyl-DNA phosphodiesterase 1) inhibitor NSC120686 has been used, along with topoisomerase inhibitors, as a pharmacophoric model to restrain the Tdp1 activity as part of a synergistic treatment for cancer. While this compound has an end-point application in medical research, in plants, its application has not been considered so far. The originality of our study consists in the use of hTdp1 inhibitor in Medicago truncatula cells, which, unlike human cells, contain two Tdp1 genes. Hence, the purpose of this study was to test the hTdp1 inhibitor NSC120686 as an exploratory tool to investigate the plant Tdp1 genes, since their characterization is still in incipient phases. To do so, M. truncatula calli were exposed to increasing (75, 150, 300 µM) concentrations of NSC120686. The levels of cell mortality and DNA damage, measured via diffusion assay and comet assay, respectively, were significantly increased when the highest doses were used, indicative of a cytotoxic and genotoxic threshold. In addition, the NSC120686-treated calli and untreated MtTdp1α-depleted calli shared a similar response in terms of programmed cell death (PCD)/necrosis and DNA damage. Interestingly, the expression profiles of MtTdp1α and MtTdp1ß genes were differently affected by the NSC120686 treatment, as MtTdp1α was upregulated while MtTdp1ß was downregulated. The NSC120686 treatment affected not only the MtTdp1 genes but also other genes with roles in alternative DNA repair pathways. Since the expression patterns of these genes were different than what was observed in the MtTdp1α-depleted plants, it could be hypothesized that the NSC120686 treatment exerts a different influence compared to that resulting from the lack of the MtTdp1α gene function.

6.
Genes (Basel) ; 8(11)2017 Nov 03.
Artigo em Inglês | MEDLINE | ID: mdl-29099800

RESUMO

Tyrosyl-DNA phosphodiesterase 1 (Tdp1) is involved in DNA repair pathways as it mends the topoisomerase I-DNA covalent complexes. In plants, a small Tdp1 gene family, composed by Tdp1α and Tdp1ß genes, was identified, but the roles of these genes in abiotic stress responses are not fully understood. To investigate their specific stress response patterns, the present study made use of bioinformatic and molecular tools to look into the Tdp1ß gene function, so far described only in the plant kingdom, and compare it with Tdp1α gene coding for the canonical, highly conserved α isoform. The expression profiles of Tdp1α and Tdp1ß genes were examined under abiotic stress conditions (cold, heat, high osmolarity, salt, and UV-B) in two model species, Arabidopsis thaliana and Medicagotruncatula. The two isoforms of topoisomerase I (TOP1α and TOP1ß) were also taken into consideration in view of their known roles in DNA metabolism and cell proliferation. Data relative to gene expression in Arabidopsis were retrieved from the AtGenExpress microarray dataset, while quantitative Real-Time PCR was carried out to evaluate the stress response in M.truncatula cell cultures. These analyses revealed that Tdp1ß gene expression was enhanced during the first hour of treatment, whereas Tdp1α enhanced expression succeeded at subsequent timepoints. In agreement with the gene-specific responses to abiotic stress conditions, the promoter regions of Tdp1α and Tdp1ß genes are well equipped with stress-related cis-elements. An in-depth bioinformatic characterization of the HIRAN motif, a distinctive feature of the Tdp1ß protein, showed its wide distribution in chromatin remodeling and DNA repair proteins. The reported data suggests that Tdp1ß functions in the early response to abiotic stresses.

7.
J Integr Plant Biol ; 58(7): 618-22, 2016 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-26699667

RESUMO

The role of plant tyrosyl-DNA phosphodiesterase 1α in genome stability is studied using a Medicago truncatula MtTdp1α-depleted line. Lack of MtTdp1α results in a 39% reduction of methylated cytosines as compared to control. RNA-Seq analyses revealed that 11 DNA transposons and 22 retrotransposons were differentially expressed in the Tdp1α-2a line. Among them all, DNA transposons (MuDR, hAT, DNA3-11_Mad) and seven retrotransposons (LTR (Long Terminal Repeat)/Gipsy, LTR/Copia, LTR and NonLTR/L1) were down-regulated, while the 15 retrotransposons were up-regulated. Results suggest that the occurrence of stress-responsive cis-elements as well as changes in the methylation pattern at the LTR promoters might be responsible for the enhanced retrotransposon transcription.


Assuntos
Elementos de DNA Transponíveis/genética , Deleção de Genes , Regulação da Expressão Gênica de Plantas , Medicago truncatula/enzimologia , Medicago truncatula/genética , Diester Fosfórico Hidrolases/genética , Citosina/metabolismo , Metilação de DNA/genética , Instabilidade Genômica/genética , Diester Fosfórico Hidrolases/metabolismo , Retroelementos/genética
8.
Radiat Prot Dosimetry ; 166(1-4): 174-7, 2015 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-25897138

RESUMO

Animals and plants show different levels of radio-sensitivity, with safe dose values in the 0.001-1 and 1-100 Gy range, respectively. The increased radio-tolerance observed in plant cells might represent a valuable tool to investigate the events underlying the low dose (LD) response in the highly radio-sensitive animal cells. The use of radio-resistant plant systems would allow investigation of the LD effects using irradiation conditions that can be easily managed, without the technical constrains currently encountered with animal systems. The basal knowledge on the molecular mechanisms involved in the DNA damage response in plants is rapidly expanding, revealing common features with animal cells at the level of DNA damage sensing/repair, transduction pathways and antioxidant response. The present work provides a short update of the current literature dealing with the DNA damage response in animal and plant cells exposed to LD treatments (ionising radiation, particularly gamma ray) combined with the more recent advances in free radical research.


Assuntos
Dano ao DNA/efeitos da radiação , Raios gama/efeitos adversos , Células Vegetais/efeitos da radiação , Tolerância a Radiação , Espécies Reativas de Oxigênio , Animais , Relação Dose-Resposta à Radiação
9.
J Exp Bot ; 64(7): 1941-51, 2013 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-23467834

RESUMO

An intron-spliced hairpin RNA approach was used for the targeted silencing of the MtTdp1α gene encoding the αisoform of tyrosyl-DNA phosphodiesterase 1 in Medicago truncatula Gaertn. Tyrosyl-DNA phosphodiesterase 1, involved in the repair of DNA topoisomerase I-mediated DNA damage, has been poorly investigated in plants. RNA-Seq analysis, carried out in the MtTdp1α-depleted plants, revealed different levels of transcriptional modulation (up- and down-regulation, alternative splicing, activation of alternative promoter) in genes involved in DNA damage sensing, DNA repair, and chromatin remodelling. It is suggested that the MtTdp1α gene has new, previously undetected roles in maintaining genome integrity. Up-regulation of senescence-associated genes and telomere shortening were observed. Moreover, impaired ribosome biogenesis indicated that the MtTdp1α gene is required for the nucleolar function. In agreement with the RNA-Seq data, transmission electron microscopy detected an altered nucleolar architecture in the MtTdp1α-depleted cells. Based on the reported data, a working hypothesis related to the occurrence of a nucleolar checkpoint in plant cells is proposed.


Assuntos
Senescência Celular/genética , Medicago truncatula/enzimologia , Medicago truncatula/genética , Diester Fosfórico Hidrolases/genética , Diester Fosfórico Hidrolases/metabolismo , Proteínas de Plantas/metabolismo , Regulação da Expressão Gênica de Plantas/genética , Regulação da Expressão Gênica de Plantas/fisiologia , Medicago truncatula/metabolismo , Proteínas de Plantas/genética
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