1 resultado para Undisciplined in first cycle
em Doria (National Library of Finland DSpace Services) - National Library of Finland, Finland
Filtro por publicador
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- Biblioteca Digital da Produção Intelectual da Universidade de São Paulo (20)
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- Biblioteca Digital de Teses e Dissertações Eletrônicas da UERJ (2)
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- BORIS: Bern Open Repository and Information System - Berna - Suiça (67)
- Boston University Digital Common (1)
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- Bucknell University Digital Commons - Pensilvania - USA (3)
- CaltechTHESIS (1)
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- Chinese Academy of Sciences Institutional Repositories Grid Portal (16)
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- Instituto Politécnico de Castelo Branco - Portugal (3)
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- Massachusetts Institute of Technology (1)
- Memoria Académica - FaHCE, UNLP - Argentina (9)
- Ministerio de Cultura, Spain (3)
- National Center for Biotechnology Information - NCBI (31)
- Plymouth Marine Science Electronic Archive (PlyMSEA) (1)
- Portal de Revistas Científicas Complutenses - Espanha (1)
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- Repositório Científico da Universidade de Évora - Portugal (7)
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- University of Queensland eSpace - Australia (17)
- University of Washington (2)
- WestminsterResearch - UK (2)
- Worcester Research and Publications - Worcester Research and Publications - UK (1)
Resumo:
The microenvironment within the tumor plays a central role in cellular signaling. Rapidly proliferating cancer cells need building blocks for structures as well as nutrients and oxygen for energy production. In normal tissue, the vasculature effectively transports oxygen, nutrient and waste products, and maintains physiological pH. Within a tumor however, the vasculature is rarely sufficient for the needs of tumor cells. This causes the tumor to suffer from lack of oxygen (hypoxia) and nutrients as well as acidification, as the glycolytic end product lactate is accumulated. Cancer cells harbor mutations enabling survival in the rough microenvironment. One of the best characterized mutations is the inactivation of the von Hippel-Lindau protein (pVHL) in clear cell renal cell carcinoma (ccRCC). Inactivation causes constitutive activation of hypoxia-inducible factor HIF which is an important survival factor regulating glycolysis, neovascularization and apoptosis. HIFs are normally regulated by HIF prolyl hydroxylases (PHDs), which in the presence of oxygen target HIF α-subunit to ubiquitination by pVHL and degradation by proteasomes. In my thesis work, I studied the role of PHDs in the survival of carcinoma cells in hypoxia. My work revealed an essential role of PHD1 and PHD3 in cell cycle regulation through two cyclin-dependent kinase inhibitors (CKIs) p21 and p27. Depletion of PHD1 or PHD3 caused a cell cycle arrest and subjected the carcinoma cells to stress and impaired the survival.