Genomic and transcriptomic profiling reveal molecular characteristics of parathyroid carcinoma

Геномное и транскриптомное профилирование выявляет молекулярные характеристики карциномы околощитовидных желез
Se‐Young Jo, Namki Hong, Seunghyun Lee, Jong Ju Jeong, Jeongsoo Won, Jiho Park, Gi Jeong Kim, Sang Kyum Kim, Sangwoo Kim, Sangwoo Kim, Yumie Rhee
2023-05-01

CDC73 biallelic inactivationWT1 biomarkergenomic and transcriptomic profilingmolecular classificationparathyroid carcinoma
Genomic and transcriptomic profiling has enhanced the diagnostic and treatment options for many cancers. However, the molecular characteristics of parathyroid cancer remain largely unexplored, thereby limiting the development of new therapeutic interventions. Herein, we conducted genomic and transcriptomic sequencing of 50 parathyroid tissues (12 carcinomas, 28 adenomas, and 10 normal tissues) to investigate the intrinsic and comparative molecular features of parathyroid carcinoma. We confirmed multiple two-hit mutation patterns in cell division cycle 73 (CDC73) that converged to biallelic inactivation, calling into question the presence of a second hit in other genes. In addition, allele-specific repression of CDC73 in copies with germline-truncating variants suggested selective pressure prior to tumorigenesis. Transcriptomic analysis identified upregulation of the expression of E2F targets, KRAS and TNF-alpha signaling, and epithelial-mesenchymal transition pathways in carcinomas compared to adenomas and normal tissues. A molecular classification model based on carcinoma-specific genes clearly separated carcinomas from adenomas and normal tissues, the clinical utility of which was demonstrated in two patients with uncertain malignant potential. A deeper analysis of gene expression and functional prediction suggested that Wilms tumor 1 (WT1) is a potential biomarker for CDC73-mutant parathyroid carcinoma, which was further validated through immunohistochemistry. Overall, our study revealed the genomic and transcriptomic profiles of parathyroid carcinoma and may help direct future precision diagnostic and therapeutic improvements.
1
A carcinoma-specific gene classification model clearly separated carcinomas from adenomas and normal tissues and showed clinical utility in two patients with uncertain malignant potential.
2
Multiple two-hit mutation patterns in CDC73 converged on biallelic inactivation, while allele-specific repression of germline-truncated CDC73 copies suggested pre-tumorigenic selective pressure.
3
Parathyroid carcinomas showed increased E2F-target, KRAS, TNF-alpha signaling, and epithelial-mesenchymal transition pathway expression relative to adenomas and normal tissues.
4
Sequencing of 50 parathyroid tissues characterized genomic and transcriptomic features of 12 carcinomas, 28 adenomas, and 10 normal tissues.
5
WT1 was identified and immunohistochemically validated as a potential biomarker for CDC73-mutant parathyroid carcinoma.

Parathyroid carcinoma tissues, compared with parathyroid adenoma and normal parathyroid tissues

Genomic and transcriptomic molecular characteristics, including CDC73 biallelic inactivation, oncogenic pathway activation, carcinoma-specific classification, and WT1 biomarker potential

Publication Details
Publication Date
2023-05-01
Journal
Publisher
ISSN
Cited by
19
Access Type
Author Information
Authors
Se‐Young Jo
Namki Hong
Seunghyun Lee
Jong Ju Jeong
Jeongsoo Won
Jiho Park
Gi Jeong Kim
Sang Kyum Kim
Sangwoo Kim
Sangwoo Kim
Yumie Rhee
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%