Aberrant methylation underlies insulin gene expression in human insulinoma

Human insulinomas are rare, benign, slowly proliferating, insulin-producing beta cell tumors that provide a molecular “recipe” or “roadmap” for pathways that control human beta cell regeneration. An earlier study revealed abnormal methylation in the imprinted p15.5-p15.4 region of chromosome 11, kno...

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Veröffentlicht in:Nature communications 2020-10, Vol.11 (1), p.5210-16, Article 5210
Hauptverfasser: Karakose, Esra, Wang, Huan, Inabnet, William, Thakker, Rajesh V., Libutti, Steven, Fernandez-Ranvier, Gustavo, Suh, Hyunsuk, Stevenson, Mark, Kinoshita, Yayoi, Donovan, Michael, Antipin, Yevgeniy, Li, Yan, Liu, Xiaoxiao, Jin, Fulai, Wang, Peng, Uzilov, Andrew, Argmann, Carmen, Schadt, Eric E., Stewart, Andrew F., Scott, Donald K., Lambertini, Luca
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Sprache:eng
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Zusammenfassung:Human insulinomas are rare, benign, slowly proliferating, insulin-producing beta cell tumors that provide a molecular “recipe” or “roadmap” for pathways that control human beta cell regeneration. An earlier study revealed abnormal methylation in the imprinted p15.5-p15.4 region of chromosome 11, known to be abnormally methylated in another disorder of expanded beta cell mass and function: the focal variant of congenital hyperinsulinism. Here, we compare deep DNA methylome sequencing on 19 human insulinomas, and five sets of normal beta cells. We find a remarkably consistent, abnormal methylation pattern in insulinomas. The findings suggest that abnormal insulin (INS) promoter methylation and altered transcription factor expression create alternative drivers of INS expression, replacing canonical PDX1 -driven beta cell specification with a pathological, looping, distal enhancer-based form of transcriptional regulation. Finally, NFaT transcription factors, rather than the canonical PDX1 enhancer complex, are predicted to drive INS transactivation. Insulinomas are rare, benign beta cell tumours which overproduce insulin and have been associated to epigenetic alterations. Here the authors characterise insulinoma methylomes, finding changes in promoter methylation and chromatin structure proposed to drive the pathological expression of insulin.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-18839-1