4.6 Article

Multiple renal cancer susceptibility polymorphisms modulate the HIF pathway

期刊

PLOS GENETICS
卷 13, 期 7, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1006872

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资金

  1. German Research Foundation [SCHO 1598/1]
  2. Wilhelm Sander-Stiftung [2014.168.1]
  3. Else Kroner-Fresenius Exzellenzstipendium [2014_EKES.11]
  4. Ludwig Institute for Cancer Research
  5. Cancer Research UK [A16016]
  6. Wellcome Trust [088182/Z/09/Z, 078333/Z/05/Z, WT091857MA]
  7. National Institute for Health Research [NIHR-RP-2016-06-004]
  8. Deanship of Scientific Research, King Abdulaziz University, Ministry of High Education for Saudi Arabia
  9. Wellcome Trust [078333/Z/05/Z, 088182/Z/09/Z] Funding Source: Wellcome Trust
  10. Cancer Research UK [16016] Funding Source: researchfish
  11. National Institute for Health Research [RP-2015-06-004] Funding Source: researchfish
  12. The Francis Crick Institute [10501] Funding Source: researchfish
  13. National Institutes of Health Research (NIHR) [RP-2015-06-004] Funding Source: National Institutes of Health Research (NIHR)

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Un-physiological activation of hypoxia inducible factor (HIF) is an early event in most renal cell cancers (RCC) following inactivation of the von Hippel-Lindau tumor suppressor. Despite intense study, how this impinges on cancer development is incompletely understood. To test for the impact of genetic signals on this pathway, we aligned human RCC-susceptibility polymorphisms with genome-wide assays of HIF-binding and observed highly significant overlap. Allele-specific assays of HIF binding, chromatin conformation and gene expression together with eQTL analyses in human tumors were applied to mechanistic analysis of one such overlapping site at chromosome 12p12.1. This defined a novel stage-specific mechanism in which the risk polymorphism, rs12814794, directly creates a new HIF binding site that mediates HIF-1 alpha isoform specific upregulation of its target BHLHE41. The alignment of multiple sites in the HIF cis-acting apparatus with RCC-susceptibility polymorphisms strongly supports a causal model in which minor variation in this pathway exerts significant effects on RCC development.

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