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The E3 ubiquitin ligase Siah1 regulates adrenal gland organization and aldosterone secretion
Marzia Scortegagna, Annabel Berthon, Nikolaos Settas, Andreas Giannakou, Guillermina Garcia, Jian-Liang Li, Brian James, Robert C. Liddington, José G. Vilches-Moure, Constantine A. Stratakis, Ze’ev A. Ronai
Marzia Scortegagna, Annabel Berthon, Nikolaos Settas, Andreas Giannakou, Guillermina Garcia, Jian-Liang Li, Brian James, Robert C. Liddington, José G. Vilches-Moure, Constantine A. Stratakis, Ze’ev A. Ronai
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Research Article Cell biology Endocrinology

The E3 ubiquitin ligase Siah1 regulates adrenal gland organization and aldosterone secretion

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Abstract

Primary and secondary hypertension are major risk factors for cardiovascular disease, the leading cause of death worldwide. Elevated secretion of aldosterone resulting from primary aldosteronism (PA) is a key driver of secondary hypertension. Here, we report an unexpected role for the ubiquitin ligase Siah1 in adrenal gland development and PA. Siah1a–/– mice exhibit altered adrenal gland morphology, as reflected by a diminished X-zone, enlarged medulla, and dysregulated zonation of the glomerulosa as well as increased aldosterone levels and aldosterone target gene expression and reduced plasma potassium levels. Genes involved in catecholamine biosynthesis and cAMP signaling are upregulated in the adrenal glands of Siah1a–/– mice, while genes related to retinoic acid signaling and cholesterol biosynthesis are downregulated. Loss of Siah1 leads to increased expression of the Siah1 substrate PIAS1, an E3 SUMO protein ligase implicated in the suppression of LXR, a key regulator of cholesterol levels in the adrenal gland. In addition, SIAH1 sequence variants were identified in patients with PA; such variants impaired SIAH1 ubiquitin ligase activity, resulting in elevated PIAS1 expression. These data identify a role for the Siah1-PIAS1 axis in adrenal gland organization and function and point to possible therapeutic targets for hyperaldosteronism.

Authors

Marzia Scortegagna, Annabel Berthon, Nikolaos Settas, Andreas Giannakou, Guillermina Garcia, Jian-Liang Li, Brian James, Robert C. Liddington, José G. Vilches-Moure, Constantine A. Stratakis, Ze’ev A. Ronai

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Figure 3

Dysregulation of zona glomerulosa cells and increased aldosterone secretion in Siah1a–/– mice.

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Dysregulation of zona glomerulosa cells and increased aldosterone secret...
(A) Sections of adrenal glands costained for Cyp11b1 (green) and Cyp11b2 (red). Cyp11b1 staining is seen in the zona fasciculata of both WT and Siah1a–/– (KO) mice. Cyp11b2 staining is restricted to the zona glomerulosa of the outer adrenal cortex in WT mice but extends from the zona glomerulosa to the inner parts of the adrenal cortex in Siah1a KO mice. White dashed lines separate zona glomerulosa from zona fasciculata. White arrows indicate Cyp11b1 and Cyp11b2 colocalization. Scale bar: 100 μm. (B) Staining of DAB2 (red) and nuclei (DAPI, blue) in sections of adrenal glands. DAB2 staining is restricted to the outer adrenal cortex of WT mice but extends to the inner parts of the adrenal cortex in Siah1a KO mice. Images shown in A and B are representative of images from 4 different mice per group. Scale bar: 100 μm. (C) qPCR analysis of Cyp11b1 and Cyp11b2 mRNA in the adrenal glands (n = 5). ***P < 0.0005, compared with WT. (D) Aldosterone and corticosterone levels in the plasma of WT and Siah1a KO mice measured by ELISA (5 mice for aldosterone and 6 mice for corticosterone levels). **P < 0.005, compared with WT. Data are shown as mean ± SEM. Statistical analysis was performed using t test.

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