LGR5 Activates Noncanonical Wnt Signaling and Inhibits Aldosterone Production in the Human Adrenal

LGR5 激活非经典 Wnt 信号并抑制人类肾上腺中的醛固酮生成

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作者:Lalarukh Haris Shaikh, Junhua Zhou, Ada E D Teo, Sumedha Garg, Sudeshna Guha Neogi, Nichola Figg, Giles S Yeo, Haixiang Yu, Janet J Maguire, Wanfeng Zhao, Martin R Bennett, Elena A B Azizan, Anthony P Davenport, Grahame McKenzie, Morris J Brown

Conclusion

LGR5 is the most selectively expressed gene in human ZG and reduces aldosterone production and cell number. Such conditions may favor cells whose somatic mutation reverses aldosterone inhibition and cell loss.

Objective

The objective of the study was to delineate a process in human ZG, which may regulate both aldosterone production and cell turnover. Design: This study included a comparison of 20 pairs of ZG and zona fasciculata transcriptomes from adrenals adjacent to an APA (n = 13) or a pheochromocytoma (n = 7). Interventions: Interventions included an overexpression of the top ZG gene (LGR5) or stimulation by its ligand (R-spondin-3). Main outcome measures: A transcriptome profile of ZG and zona fasciculata and aldosterone production, cell kinetic measurements, and Wnt signaling activity of LGR5 transfected or R-spondin-3-stimulated cells were measured.

Results

LGR5 was the top gene up-regulated in ZG (25-fold). The gene for its cognate ligand R-spondin-3, RSPO3, was 5-fold up-regulated. In total, 18 genes associated with the Wnt pathway were greater than 2-fold up-regulated. ZG selectivity of LGR5, and its absence in most APAs, were confirmed by quantitative PCR and immunohistochemistry. Both R-spondin-3 stimulation and LGR5 transfection of human adrenal cells suppressed aldosterone production. There was reduced proliferation and increased apoptosis of transfected cells, and the noncanonical activator protein-1/Jun pathway was stimulated more than the canonical Wnt pathway (3-fold vs 1.3-fold). ZG of adrenal sections stained positive for apoptosis markers.

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