MYC and gastric adenocarcinoma carcinogenesis
MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial function. It has been described as a key element of several carcinogenesis processes in humans. Many studies have shown an association betwee...
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Published in: | World journal of gastroenterology : WJG Vol. 14; no. 39; pp. 5962 - 5968 |
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Language: | English |
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Human Cytogenetics Laboratory, Biology Science Institute, Federal University of Para, Belem PA 66075-900, Brazil%Genetics Division, Department of Morphology and Genetics,Federal University of Sao Paulo, Sao Paulo SP 04023-900, Brazil%Joao de Barros Barreto University Hospital, Federal University of Para, Belem PA 66073-000, Brazil
21-10-2008
The WJG Press and Baishideng |
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Abstract | MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial function. It has been described as a key element of several carcinogenesis processes in humans. Many studies have shown an association between MYC deregulation and gastric cancer. MYC deregulation is also seen in gastric preneoplastic lesions and thus it may have a role in early gastric carcinogenesis. Several studies have suggested that amplification is the main mechanism of MYC deregulation in gastric cancer. In the present review, we focus on the deregulation of the MYC oncogene in gastric adenocarcinoma carcinogenesis, including its association with Helicobacterpylori (Hpylon] and clinical applications. |
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AbstractList | R5; MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial function. It has been described as a key element of several carcinogenesis processes in humans. Many studies have shown an association between MYC deregulation and gastric cancer. MYC deregulation is also seen in gastric preneoplastic lesions and thus it may have a role in early gastric carcinogenesis. Several studies have suggested that amplification is the main mechanism of MYC deregulation in gastric cancer. In the present review, we focus on the deregulation of the MYC oncogene in gastric adenocarcinoma carcinogenesis, including its association with Helicobacter pylori (H pylori) and clinical applications. MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial function. It has been described as a key element of several carcinogenesis processes in humans. Many studies have shown an association between MYC deregulation and gastric cancer. MYC deregulation is also seen in gastric preneoplastic lesions and thus it may have a role in early gastric carcinogenesis. Several studies have suggested that amplification is the main mechanism of MYC deregulation in gastric cancer. In the present review, we focus on the deregulation of the MYC oncogene in gastric adenocarcinoma carcinogenesis, including its association with Helicobacter pylori (H pylori) and clinical applications. MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial function. It has been described as a key element of several carcinogenesis processes in humans. Many studies have shown an association between MYC deregulation and gastric cancer. MYC deregulation is also seen in gastric preneoplastic lesions and thus it may have a role in early gastric carcinogenesis. Several studies have suggested that amplification is the main mechanism of MYC deregulation in gastric cancer. In the present review, we focus on the deregulation of the MYC oncogene in gastric adenocarcinoma carcinogenesis, including its association with Helicobacter pylori ( H pylori ) and clinical applications. MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial function. It has been described as a key element of several carcinogenesis processes in humans. Many studies have shown an association between MYC deregulation and gastric cancer. MYC deregulation is also seen in gastric preneoplastic lesions and thus it may have a role in early gastric carcinogenesis. Several studies have suggested that amplification is the main mechanism of MYC deregulation in gastric cancer. In the present review, we focus on the deregulation of the MYC oncogene in gastric adenocarcinoma carcinogenesis, including its association with Helicobacterpylori (Hpylon] and clinical applications. |
Author | Danielle Queiroz Calcagno Mariana Ferreira Leal Paulo Pimentel Assumpcao Marilia de Arruda Cardoso Smith Rommel Rodriguez Burbano |
AuthorAffiliation | Human Cytogenetics Laboratory, Biology ScqenceInstitute, Federal University of Para, Belem PA 66075-900,Brazil Genetics Division, Department of Morphology and Genetics,Federal University of Salo Paulo, Sao Paulo SP 04023-900,Brazil Joao de Barros Barreto University Hospital, Federal University of Para, Belem PA 66073-000,Brazil |
AuthorAffiliation_xml | – name: Human Cytogenetics Laboratory, Biology Science Institute, Federal University of Para, Belem PA 66075-900, Brazil%Genetics Division, Department of Morphology and Genetics,Federal University of Sao Paulo, Sao Paulo SP 04023-900, Brazil%Joao de Barros Barreto University Hospital, Federal University of Para, Belem PA 66073-000, Brazil |
Author_xml | – sequence: 1 givenname: Danielle-Queiroz surname: Calcagno fullname: Calcagno, Danielle-Queiroz organization: Departamento de Biologia, Instituto de Ciencias Biologicas, Campus Universitario do Guama/Universidade Federal do Para, Av. Augusto Correa 01, Belem, PA 66075-900, Brazil – sequence: 2 givenname: Mariana-Ferreira surname: Leal fullname: Leal, Mariana-Ferreira – sequence: 3 givenname: Paulo-Pimentel surname: Assumpcao fullname: Assumpcao, Paulo-Pimentel – sequence: 4 givenname: Marilia-Arruda-Cardoso surname: Smith fullname: Smith, Marilia-Arruda-Cardoso – sequence: 5 givenname: Rommel-Rodriguez surname: Burbano fullname: Burbano, Rommel-Rodriguez |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/18932273$$D View this record in MEDLINE/PubMed |
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Keywords | Gastricpreneoplastic lesions,Gastric carcinogenesis Gastric adenocarcinoma Gastric carcinogenesis Helicobacter pylori MYC Helicobacter pyloripreneoplastic lesions |
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Notes | Gastric preneoplastic lesions MYC; Gastric adenocarcinoma; Gastric preneoplastic lesions; Gastric carcinogenesis;Helicobacter pylori Helicobacter pylori 14-1219/R MYC R735.2 Gastric adenocarcinoma Gastric carcinogenesis Telephone: +55-91-32429254 Fax: +55-91-32111601 Author contributions: Calcagno DQ, Leal MF, Assumpção PP, Smith MAC and Burbano RR contributed equally to this work; the authors wrote the paper based on results of their own experience and recent literature sources (PubMed, ISI Web of Science) on gastric cancer. Correspondence to: Rommel Rodríguez Burbano, Laboratório de Citogenética Humana, Departamento de Biologia, Instituto de Ciências Biológicas, Campus Universitário do Guamá/Universidade Federal do Pará, Av. Augusto Correa 01, Belém, PA 66075-900, Brazil. rommel@ufpa.br |
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Snippet | MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial... R5; MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and... MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial... |
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StartPage | 5962 |
SubjectTerms | Adenocarcinoma - genetics Adenocarcinoma - microbiology Cell Transformation, Neoplastic Gene Expression Regulation, Neoplastic - physiology Genes, myc - genetics Genes, myc - physiology Helicobacter pylori - physiology Humans Review Stomach Neoplasms - genetics Stomach Neoplasms - microbiology 治疗方法 病理机制 肿瘤形成 |
Title | MYC and gastric adenocarcinoma carcinogenesis |
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