Key result
In four female patients with Cushing syndrome and PDE11A4 mutations, three exhibited primary pigmented nodular adrenocortical disease (PPNAD), while one showed diffuse hyperplasia extending into the epi-adrenal fat.
Case Report (n=4)
Yes
Germline inactivating mutations of PDE11A4 in Cushing syndrome can present with primary pigmented nodular adrenocortical disease or diffuse hyperplasia of the superficial cortex.
May broaden adrenal histopathology linked to PDE11A4 mutations in Cushing syndrome; hypothesis-generating for genetic evaluation.
We present the pathologic findings in the adrenal glands of 4 patients, aged 10 to 38 years, with Cushing syndrome and germline inactivating mutations of the gene PDE11A4 that encodes phosphodiesterase11A4. The gene is expressed in the adrenal cortex and catalyses the hydrolysis of cyclic adenosine monophosphate and cyclic guanosine monophosphate. Two of the patients were mother and daughter; the third had no affected relative; the fourth patient inherited the mutation from her father. Three of the group, including the mother and daughter, had the same pathology, primary pigmented nodular adrenocortical disease, a disorder known to be caused by inactivating mutations of the PRKAR1A gene. In these cases, the adrenal glands were small and the pathologic change was deep in the cortex in which numerous pigmented micronodules developed. In the remaining patient, the glands were slightly enlarged primarily owing to a diffuse hyperplasia of the superficial cortex that extended into the epi-adrenal fat.
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Carney et al. (2010) conducted a case report in Cushing syndrome with PDE11A4 gene mutations (n=4). PDE11A4 gene mutation was evaluated on Pathologic findings in the adrenal glands. In four female patients with Cushing syndrome and PDE11A4 mutations, three exhibited primary pigmented nodular adrenocortical disease (PPNAD), while one showed diffuse hyperplasia extending into the epi-adrenal fat.
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