Somatic mutations of CADM1 in aldosterone-producing adenomas and gap junction-dependent regulation of aldosterone production
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Published:2023-06
Issue:6
Volume:55
Page:1009-1021
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ISSN:1061-4036
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Container-title:Nature Genetics
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language:en
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Short-container-title:Nat Genet
Author:
Wu Xilin, Azizan Elena A. B.ORCID, Goodchild Emily, Garg SumedhaORCID, Hagiyama ManORCID, Cabrera Claudia P.ORCID, Fernandes-Rosa Fabio L.ORCID, Boulkroun SheerazedORCID, Kuan Jyn Ling, Tiang Zenia, David AlessiaORCID, Murakami MasanoriORCID, Mein Charles A., Wozniak Eva, Zhao Wanfeng, Marker Alison, Buss FolmaORCID, Saleeb Rebecca S., Salsbury Jackie, Tezuka YutaORCID, Satoh Fumitoshi, Oki KenjiORCID, Udager Aaron M., Cohen Debbie L., Wachtel Heather, King Peter J., Drake William M., Gurnell MarkORCID, Ceral JiriORCID, Ryska Ales, Mustangin Muaatamarulain, Wong Yin Ping, Tan Geok Chin, Solar Miroslav, Reincke MartinORCID, Rainey William E., Foo Roger S.ORCID, Takaoka YutakaORCID, Murray Sandra A., Zennaro Maria-ChristinaORCID, Beuschlein FelixORCID, Ito AkihikoORCID, Brown Morris J.ORCID
Abstract
AbstractAldosterone-producing adenomas (APAs) are the commonest curable cause of hypertension. Most have gain-of-function somatic mutations of ion channels or transporters. Herein we report the discovery, replication and phenotype of mutations in the neuronal cell adhesion gene CADM1. Independent whole exome sequencing of 40 and 81 APAs found intramembranous p.Val380Asp or p.Gly379Asp variants in two patients whose hypertension and periodic primary aldosteronism were cured by adrenalectomy. Replication identified two more APAs with each variant (total, n = 6). The most upregulated gene (10- to 25-fold) in human adrenocortical H295R cells transduced with the mutations (compared to wildtype) was CYP11B2 (aldosterone synthase), and biological rhythms were the most differentially expressed process. CADM1 knockdown or mutation inhibited gap junction (GJ)-permeable dye transfer. GJ blockade by Gap27 increased CYP11B2 similarly to CADM1 mutation. Human adrenal zona glomerulosa (ZG) expression of GJA1 (the main GJ protein) was patchy, and annular GJs (sequelae of GJ communication) were less prominent in CYP11B2-positive micronodules than adjacent ZG. Somatic mutations of CADM1 cause reversible hypertension and reveal a role for GJ communication in suppressing physiological aldosterone production.
Publisher
Springer Science and Business Media LLC
Reference93 articles.
1. Funder, J. W. et al. The management of primary aldosteronism: case detection, diagnosis, and treatment: an Endocrine Society Clinical Practice Guideline. J. Clin. Endocrinol. Metab. 101, 1889–1916 (2016). 2. Nanba, K. et al. Targeted molecular characterization of aldosterone-producing adenomas in White Americans. J. Clin. Endocrinol. Metab. 103, 3869–3876 (2018). 3. De Sousa, K. et al. Genetic, cellular, and molecular heterogeneity in adrenals with aldosterone-producing adenoma. Hypertension 75, 1034–1044 (2020). 4. Nanba, K. et al. Genetic characteristics of aldosterone-producing adenomas in Blacks. Hypertension 73, 885–892 (2019). 5. Choi, M. et al. K+ channel mutations in adrenal aldosterone-producing adenomas and hereditary hypertension. Science 331, 768–772 (2011).
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