MEN1 Mutations in Hürthle Cell (Oncocytic) Thyroid Carcinoma

Author:

Kasaian Katayoon1,Chindris Ana-Maria2,Wiseman Sam M.3,Mungall Karen L.1,Zeng Thomas1,Tse Kane1,Schein Jacqueline E.1,Rivera Michael4,Necela Brian M.5,Kachergus Jennifer M.5,Casler John D.2,Mungall Andrew J.1,Moore Richard A.1,Marra Marco A.16,Copland John A.5,Thompson E. Aubrey5,Smallridge Robert C.57,Jones Steven J. M.168

Affiliation:

1. Canada's Michael Smith Genome Sciences Centre (K.K., K.L.M., T.Z., K.T., J.E.S., A.J.M., R.A.M., M.A.M., S.J.M.J.), BC Cancer Agency, Vancouver, V5Z 4S6 Canada

2. Department of Otorhinolaryngology–Head and Neck Surgery (A.-M.C., J.D.C.), Mayo Clinic, Jacksonville, Florida 32224

3. Department of Surgery (S.M.W.), St. Paul's Hospital and University of British Columbia, Vancouver, V6Z 1Y6 Canada

4. Department of Laboratory Medicine and Pathology (M.R.), Mayo Clinic, Rochester, Minnesota 55905

5. Department of Cancer Biology (B.M.N., J.M.K., J.A.C., E.A.T., R.C.S.), Mayo Clinic, Jacksonville, Florida 32224

6. Department of Medical Genetics (M.A.M., S.J.M.J.), University of British Columbia, Vancouver, V6T 1Z4 Canada

7. Department of Medicine, Division of Endocrinology and Metabolism (R.C.S.), Mayo Clinic, Jacksonville, Florida 32224

8. Department of Molecular Biology and Biochemistry (S.J.M.J.), Simon Fraser University, Burnaby, V5A 1S6 Canada

Abstract

Context and Objective: Oncocytic thyroid carcinoma, also known as Hürthle cell thyroid carcinoma, accounts for only a small percentage of all thyroid cancers. However, this malignancy often presents at an advanced stage and poses unique challenges to patients and clinicians. Surgical resection of the tumor accompanied in some cases by radioactive iodine treatment, radiation, and chemotherapy are the established modes of therapy. Knowledge of the perturbed oncogenic pathways can provide better understanding of the mechanism of disease and thus opportunities for more effective clinical management. Design and Patients: Initially, two oncocytic thyroid carcinomas and their matched normal tissues were profiled using whole genome sequencing. Subsequently, 72 oncocytic thyroid carcinomas, one cell line, and five Hürthle cell adenomas were examined by targeted sequencing for the presence of mutations in the multiple endocrine neoplasia I (MEN1) gene. Results: Here we report the identification of MEN1 loss-of-function mutations in 4% of patients diagnosed with oncocytic thyroid carcinoma. Whole genome sequence data also revealed large regions of copy number variation encompassing nearly the entire genomes of these tumors. Conclusion: Menin, a ubiquitously expressed nuclear protein, is a well-characterized tumor suppressor whose loss is the cause of MEN1 syndrome. Menin is involved in several major cellular pathways such as regulation of transcription, control of cell cycle, apoptosis, and DNA damage repair pathways. Mutations of this gene in a subset of Hürthle cell tumors point to a potential role for this protein and its associated pathways in thyroid tumorigenesis.

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference18 articles.

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3. Revised American thyroid association management guidelines for patients with thyroid nodules and differentiated thyroid cancer;Cooper;Thyroid,2009

4. Hurthle cell carcinoma: A population-level analysis of 3311 patients;Goffredo;Cancer,2013

5. Genome haploidisation with chromosome 7 retention in oncocytic follicular thyroid carcinoma;Corver;PLoS One,2012

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