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All rights reserved. http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel http://purl.org/dc/elements/1.1/title BEL Framework Large Corpus Document http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel http://purl.org/pav/authoredBy http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#_4 http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel http://purl.org/pav/version 20131211 http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#_3 http://www.w3.org/ns/prov#value Effects of hypoxia on molecular determinants of angiogenesis Angiogenesis is a complex process, involving multiple gene products expressed by different cell types, all contributing to an integrated sequence of events44. Consistent with a major role for hypoxia in the overall process, a large number of genes involved in different steps of angiogenesis are independently responsive to hypoxia in tissue culture. Examples include nitric oxide synthases involved in governing vascular tone, growth factors such as VEGF, angiopoietins, fibroblast growth factors and their various receptors, and genes involved in matrix metabolism, including matrix metalloproteinases, plasminogen activator receptors and inhibitors, and collagen prolyl hydroxylase16, 17, 18, 19, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61 (Table 1). Similarly, many of the individual phenotypic processes in angiogenesis such as cell migration or endothelial tube formation can be induced by hypoxic tissue culture62, 63, 64. These analyses in isolated systems have sometimes apparently shown both positive and negative effects of hypoxia, for instance on endothelial proliferation65, 66, 67. It is not yet clear whether such phenomena reflect fundamentally different responses based on severity of hypoxia, or counter-regulatory controls that are normally integrated in a productive way. http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#_3 http://www.w3.org/ns/prov#wasQuotedFrom http://www.ncbi.nlm.nih.gov/pubmed/12778166 http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#_4 http://www.w3.org/2000/01/rdf-schema#label Selventa http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#assertion http://www.w3.org/ns/prov#hadPrimarySource http://www.ncbi.nlm.nih.gov/pubmed/12778166 http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#assertion http://www.w3.org/ns/prov#wasDerivedFrom http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#assertion http://www.w3.org/ns/prov#wasDerivedFrom http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#_3 http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE#pubinfo http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE http://purl.org/dc/terms/created 2014-07-03T14:32:02.702+02:00 http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE http://purl.org/pav/createdBy http://orcid.org/0000-0001-6818-334X http://www.tkuhn.ch/bel2nanopub/RAAcrp5r0-Ijpx3lwqxFKWJ9I_Drnm3RJiBdMS3ErFEeE http://purl.org/pav/createdBy http://orcid.org/0000-0002-1267-0234