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Clinical and Molecular Characteristics of PRKACA L206R Mutant Cortisol-Producing Adenomas in Korean Patients

Authors
Jang, InsoonKim, Su-JinSong, Ra-YoungKim, KwangsooChoi, SeongminLee, Jang-SeokGwon, Min-KyeongSeong, Moon WooLee, Kyu EunKim, Jung Hee
Issue Date
Dec-2021
Publisher
KOREAN ENDOCRINE SOC
Keywords
Adrenocortical adenomas; Cushing syndrome; Gene expression profiling; PRKACA mutation; Wnt signaling pathway
Citation
ENDOCRINOLOGY AND METABOLISM, v.36, no.6, pp 1287 - 1297
Pages
11
Journal Title
ENDOCRINOLOGY AND METABOLISM
Volume
36
Number
6
Start Page
1287
End Page
1297
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/61967
DOI
10.3803/EnM.2021.1217
ISSN
2093-596X
2093-5978
Abstract
Background: An activating mutation (c.617A>C/p.Lys206Arg, L206R) in protein kinase cAMP-activated catalytic subunit alpha (PRKACA) has been reported in 35% to 65% of cases of cortisol-producing adenomas (CPAs). We aimed to compare the clinical characteristics and transcriptome analysis between PRK4C4 L206R mutants and wild-type CPAs in Korea. Methods: We included 57 subjects with CPAs who underwent adrenalectomy at Seoul National University Hospital. Sanger sequencing for PRKACA was conducted in 57 CPA tumor tissues. RNA sequencing was performed in 13 fresh-frozen tumor tissues. Results: The prevalence of the PRKACA L206R mutation was 51% (29/57). The mean age of the study subjects was 42 +/- 12 years, and 87.7% (50/57) of the patients were female. Subjects with PRKACA L206R mutant CPAs showed smaller adenoma size (3.3 +/- 0.7 cm vs. 3.8 +/- 1.2 cm, P=0.059) and lower dehythoepiathirosterone sulfate levels (218 +/- 180 ng/mL vs. 1,511 +/- 3,307 ng/mL, P=0.001) than those with PRKACA wild-type CPAs. Transcriptome profiling identified 244 differentially expressed genes (DEGs) between PRKACA L206R mutant (n=8) and wild-type CPAs (n=5), including five upregulated and 239 downregulated genes in PRKA C4 L206R mutant CPAs (vertical bar fold change vertical bar >= 2, P <0.05). Among the upstream regulators of DEGs, CTNNB1 was the most significant transcription regulator. In several pathway analyses, the Wnt signaling pathway was downregulated and the steroid biosynthesis pathway was upregulated in PRKACA mutants. Protein-protein interaction analysis also showed that PRKACA downregulates Wnt signaling and upregulates steroid biosynthesis. Conclusion: The PRKACA L206R mutation in CPAs causes high hormonal activity with a limited proliferative capacity, as supported by transcriptome profiling.
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의과대학 (의학부(임상-서울))
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