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Biology subjects

Ortega, S.

Publications and source records attributed to Ortega, S..

2 recordsLinked to original sources

HNF1A recruits UTX to activate a differentiation program that suppresses pancreatic cancer

Defects in transcriptional regulators of pancreatic exocrine differentiation have been implicated in pancreatic tumorigenesis, but the molecular mechanisms are poorly understood. The locus encoding the transcription factor HNF1A harbors susceptibility variants for pancreatic ductal adenocarcinoma (PDAC), while KDM6A, encoding the histone demethylase UTX, carries somatic mutations in PDAC. Here, we show that pancreas-specific Hnf1a null mutations phenocopy Utx deficient mutations, and both synergize with KrasG12D to cause PDAC with sarcomatoid features. We combine genetic, epigenomic and biochemical studies to show that HNF1A recruits UTX to genomic binding sites in pancreatic acinar cells. This remodels the acinar enhancer landscape, activates a differentiation program, and indirectly suppresses oncogenic and epithelial-mesenchymal transition genes. Finally, we identify a subset of non-classical PDAC samples that exhibit the HNF1A/UTX-deficient molecular phenotype. These findings provide direct genetic evidence that HNF1A-deficiency promotes PDAC. They also connect the tumor suppressive role of UTX deficiency with a cell-specific molecular mechanism that underlies PDAC subtype definition.

genomics

Severely stressful natal environment does not impact lifetime reproductive success of adult boobies

O_LIWarm ocean waters during El Nino events deplete primary productivity, with cascading effects through the food chain that profoundly affect many marine and terrestrial species, commonly increasing adult mortality and offspring starvation. With global warming, events will double and increasingly threaten the depletion or extinction of some animal populations.\nC_LIO_LIBecause adverse environments experienced during infancy generally induce reproductive deficits in adulthood, El Nino events are also expected to affect animals born during them, engendering generations of adults with reduced reproductive potential and exacerbating demographic impacts.\nC_LIO_LIWe made the first test of this idea, using the blue-footed booby, a piscivorous apex predator of the eastern tropical Pacific Ocean. Surprisingly, detailed monitoring of 18 generations over a 27-year period detected no deficits in the annual breeding success, offspring viability, lifespan or lifetime reproductive success of generations of adults born during El Nino years.\nC_LIO_LIThese results testify to remarkable developmental resilience extending across the lifespan. However, there was evidence that this resilience was supported by two mechanisms of quality control of adult generations from El Nino years.\nC_LIO_LIFirst, viability selection on nestlings and fledglings was more severe for El Nino birth cohorts than ordinary cohorts.\nC_LIO_LISecond, in El Nino years, adult boobies self-selected for breeding. There was no increase in the proportional representation of either high quality breeders or breeders in their peak years (middle-age), but there was an increase in old-young adult pairings, which in this population produce the most viable fledglings.\nC_LIO_LIThe blue-footed booby appears to be immune to the expected developmental impact of El Nino on the reproductive value of adult generations. The susceptibilities and resilience of other species need to be explored, to better predict the demographic impacts of this accelerating climatic oscillation.\nC_LI

ecology