Hypomethylation associated vitamin D receptor expression in ATP1A1 mutant aldosterone-producing adenoma

ATP1A1 突变型醛固酮腺瘤中低甲基化相关维生素 D 受体表达

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作者:Yuta Nanao, Kenji Oki, Kazuhiro Kobuke, Kiyotaka Itcho, Ryuta Baba, Takaya Kodama, Yu Otagaki, Akira Okada, Yoko Yoshii, Gaku Nagano, Haruya Ohno, Koji Arihiro, Celso E Gomez-Sanchez, Noboru Hattori, Masayasu Yoneda

Abstract

DNA methylation alteration is tissue-specific and play a pivotal role in regulating gene transcription during cell proliferation and survival. We aimed to detect genes regulated by DNA methylation, and then investigated whether the gene influenced cell proliferation or survival in adrenal cells. DNA methylation and qPCR analyses were performed in nonfunctioning adrenocortical adenoma (NFA, n = 12) and aldosterone-producing adenoma (APA, n = 35) samples. The VDR gene promoter was markedly hypomethylated in APA with ATP1A1 mutation, and the promoter methylation levels showed a significant inverse association with the transcripts in APA. ATP1A1 mutation led to VDR transcription in HAC15 cells, and VDR suppression abrogated ATP1A1 mutation-mediated cell proliferation in HAC15 cells. We demonstrated that APA with ATP1A1 mutation showed entire hypomethylation in the VDR promoter and abundant VDR mRNA and protein expression. VDR suppression abrogated ATP1A1 mutation-mediated cell proliferation in HAC15 cells. Abundant VDR expression would be essential for ATP1A1 mutation-mediated cell proliferation.

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