Cargando…

Recurrent gain-of-function USP8 mutations in Cushing's disease

Cushing's disease, also known as adrenocorticotropic hormone (ACTH)-secreting pituitary adenomas (PAs) that cause excess cortisol production, accounts for up to 85% of corticotrophin-dependent Cushing's syndrome cases. However, the genetic alterations in this disease are unclear. Here, we...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Zeng-Yi, Song, Zhi-Jian, Chen, Jian-Hua, Wang, Yong-Fei, Li, Shi-Qi, Zhou, Liang-Fu, Mao, Ying, Li, Yi-Ming, Hu, Rong-Gui, Zhang, Zhao-Yun, Ye, Hong-Ying, Shen, Ming, Shou, Xue-Fei, Li, Zhi-Qiang, Peng, Hong, Wang, Qing-Zhong, Zhou, Dai-Zhan, Qin, Xiao-Lan, Ji, Jue, Zheng, Jie, Chen, Hong, Wang, Yin, Geng, Dao-Ying, Tang, Wei-Jun, Fu, Chao-Wei, Shi, Zhi-Feng, Zhang, Yi-Chao, Ye, Zhao, He, Wen-Qiang, Zhang, Qi-Lin, Tang, Qi-Sheng, Xie, Rong, Shen, Jia-Wei, Wen, Zu-Jia, Zhou, Juan, Wang, Tao, Huang, Shan, Qiu, Hui-Jia, Qiao, Ni-Dan, Zhang, Yi, Pan, Li, Bao, Wei-Min, Liu, Ying-Chao, Huang, Chuan-Xin, Shi, Yong-Yong, Zhao, Yao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349249/
https://www.ncbi.nlm.nih.gov/pubmed/25675982
http://dx.doi.org/10.1038/cr.2015.20
_version_ 1782360018026233856
author Ma, Zeng-Yi
Song, Zhi-Jian
Chen, Jian-Hua
Wang, Yong-Fei
Li, Shi-Qi
Zhou, Liang-Fu
Mao, Ying
Li, Yi-Ming
Hu, Rong-Gui
Zhang, Zhao-Yun
Ye, Hong-Ying
Shen, Ming
Shou, Xue-Fei
Li, Zhi-Qiang
Peng, Hong
Wang, Qing-Zhong
Zhou, Dai-Zhan
Qin, Xiao-Lan
Ji, Jue
Zheng, Jie
Chen, Hong
Wang, Yin
Geng, Dao-Ying
Tang, Wei-Jun
Fu, Chao-Wei
Shi, Zhi-Feng
Zhang, Yi-Chao
Ye, Zhao
He, Wen-Qiang
Zhang, Qi-Lin
Tang, Qi-Sheng
Xie, Rong
Shen, Jia-Wei
Wen, Zu-Jia
Zhou, Juan
Wang, Tao
Huang, Shan
Qiu, Hui-Jia
Qiao, Ni-Dan
Zhang, Yi
Pan, Li
Bao, Wei-Min
Liu, Ying-Chao
Huang, Chuan-Xin
Shi, Yong-Yong
Zhao, Yao
author_facet Ma, Zeng-Yi
Song, Zhi-Jian
Chen, Jian-Hua
Wang, Yong-Fei
Li, Shi-Qi
Zhou, Liang-Fu
Mao, Ying
Li, Yi-Ming
Hu, Rong-Gui
Zhang, Zhao-Yun
Ye, Hong-Ying
Shen, Ming
Shou, Xue-Fei
Li, Zhi-Qiang
Peng, Hong
Wang, Qing-Zhong
Zhou, Dai-Zhan
Qin, Xiao-Lan
Ji, Jue
Zheng, Jie
Chen, Hong
Wang, Yin
Geng, Dao-Ying
Tang, Wei-Jun
Fu, Chao-Wei
Shi, Zhi-Feng
Zhang, Yi-Chao
Ye, Zhao
He, Wen-Qiang
Zhang, Qi-Lin
Tang, Qi-Sheng
Xie, Rong
Shen, Jia-Wei
Wen, Zu-Jia
Zhou, Juan
Wang, Tao
Huang, Shan
Qiu, Hui-Jia
Qiao, Ni-Dan
Zhang, Yi
Pan, Li
Bao, Wei-Min
Liu, Ying-Chao
Huang, Chuan-Xin
Shi, Yong-Yong
Zhao, Yao
author_sort Ma, Zeng-Yi
collection PubMed
description Cushing's disease, also known as adrenocorticotropic hormone (ACTH)-secreting pituitary adenomas (PAs) that cause excess cortisol production, accounts for up to 85% of corticotrophin-dependent Cushing's syndrome cases. However, the genetic alterations in this disease are unclear. Here, we performed whole-exome sequencing of DNA derived from 12 ACTH-secreting PAs and matched blood samples, which revealed three types of somatic mutations in a candidate gene, USP8 (encoding ubiquitin-specific protease 8), exclusively in exon 14 in 8 of 12 ACTH-secreting PAs. We further evaluated somatic USP8 mutations in additional 258 PAs by Sanger sequencing. Targeted sequencing further identified a total of 17 types of USP8 variants in 67 of 108 ACTH-secreting PAs (62.04%). However, none of these mutations was detected in other types of PAs (n = 150). These mutations aggregate within the 14-3-3 binding motif of USP8 and disrupt the interaction between USP8 and 14-3-3 protein, resulting in an elevated capacity to protect EGFR from lysosomal degradation. Accordingly, PAs with mutated USP8 display a higher incidence of EGFR expression, elevated EGFR protein abundance and mRNA expression levels of POMC, which encodes the precursor of ACTH. PAs with mutated USP8 are significantly smaller in size and have higher ACTH production than wild-type PAs. In surgically resected primary USP8-mutated tumor cells, USP8 knockdown or blocking EGFR effectively attenuates ACTH secretion. Taken together, somatic gain-of-function USP8 mutations are common and contribute to ACTH overproduction in Cushing's disease. Inhibition of USP8 or EGFR is promising for treating USP8-mutated corticotrophin adenoma. Our study highlights the potentially functional mutated gene in Cushing's disease and provides insights into the therapeutics of this disease.
format Online
Article
Text
id pubmed-4349249
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-43492492015-03-10 Recurrent gain-of-function USP8 mutations in Cushing's disease Ma, Zeng-Yi Song, Zhi-Jian Chen, Jian-Hua Wang, Yong-Fei Li, Shi-Qi Zhou, Liang-Fu Mao, Ying Li, Yi-Ming Hu, Rong-Gui Zhang, Zhao-Yun Ye, Hong-Ying Shen, Ming Shou, Xue-Fei Li, Zhi-Qiang Peng, Hong Wang, Qing-Zhong Zhou, Dai-Zhan Qin, Xiao-Lan Ji, Jue Zheng, Jie Chen, Hong Wang, Yin Geng, Dao-Ying Tang, Wei-Jun Fu, Chao-Wei Shi, Zhi-Feng Zhang, Yi-Chao Ye, Zhao He, Wen-Qiang Zhang, Qi-Lin Tang, Qi-Sheng Xie, Rong Shen, Jia-Wei Wen, Zu-Jia Zhou, Juan Wang, Tao Huang, Shan Qiu, Hui-Jia Qiao, Ni-Dan Zhang, Yi Pan, Li Bao, Wei-Min Liu, Ying-Chao Huang, Chuan-Xin Shi, Yong-Yong Zhao, Yao Cell Res Original Article Cushing's disease, also known as adrenocorticotropic hormone (ACTH)-secreting pituitary adenomas (PAs) that cause excess cortisol production, accounts for up to 85% of corticotrophin-dependent Cushing's syndrome cases. However, the genetic alterations in this disease are unclear. Here, we performed whole-exome sequencing of DNA derived from 12 ACTH-secreting PAs and matched blood samples, which revealed three types of somatic mutations in a candidate gene, USP8 (encoding ubiquitin-specific protease 8), exclusively in exon 14 in 8 of 12 ACTH-secreting PAs. We further evaluated somatic USP8 mutations in additional 258 PAs by Sanger sequencing. Targeted sequencing further identified a total of 17 types of USP8 variants in 67 of 108 ACTH-secreting PAs (62.04%). However, none of these mutations was detected in other types of PAs (n = 150). These mutations aggregate within the 14-3-3 binding motif of USP8 and disrupt the interaction between USP8 and 14-3-3 protein, resulting in an elevated capacity to protect EGFR from lysosomal degradation. Accordingly, PAs with mutated USP8 display a higher incidence of EGFR expression, elevated EGFR protein abundance and mRNA expression levels of POMC, which encodes the precursor of ACTH. PAs with mutated USP8 are significantly smaller in size and have higher ACTH production than wild-type PAs. In surgically resected primary USP8-mutated tumor cells, USP8 knockdown or blocking EGFR effectively attenuates ACTH secretion. Taken together, somatic gain-of-function USP8 mutations are common and contribute to ACTH overproduction in Cushing's disease. Inhibition of USP8 or EGFR is promising for treating USP8-mutated corticotrophin adenoma. Our study highlights the potentially functional mutated gene in Cushing's disease and provides insights into the therapeutics of this disease. Nature Publishing Group 2015-03 2015-02-13 /pmc/articles/PMC4349249/ /pubmed/25675982 http://dx.doi.org/10.1038/cr.2015.20 Text en Copyright © 2015 Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences http://creativecommons.org/licenses/by-nc-nd/3.0 This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0
spellingShingle Original Article
Ma, Zeng-Yi
Song, Zhi-Jian
Chen, Jian-Hua
Wang, Yong-Fei
Li, Shi-Qi
Zhou, Liang-Fu
Mao, Ying
Li, Yi-Ming
Hu, Rong-Gui
Zhang, Zhao-Yun
Ye, Hong-Ying
Shen, Ming
Shou, Xue-Fei
Li, Zhi-Qiang
Peng, Hong
Wang, Qing-Zhong
Zhou, Dai-Zhan
Qin, Xiao-Lan
Ji, Jue
Zheng, Jie
Chen, Hong
Wang, Yin
Geng, Dao-Ying
Tang, Wei-Jun
Fu, Chao-Wei
Shi, Zhi-Feng
Zhang, Yi-Chao
Ye, Zhao
He, Wen-Qiang
Zhang, Qi-Lin
Tang, Qi-Sheng
Xie, Rong
Shen, Jia-Wei
Wen, Zu-Jia
Zhou, Juan
Wang, Tao
Huang, Shan
Qiu, Hui-Jia
Qiao, Ni-Dan
Zhang, Yi
Pan, Li
Bao, Wei-Min
Liu, Ying-Chao
Huang, Chuan-Xin
Shi, Yong-Yong
Zhao, Yao
Recurrent gain-of-function USP8 mutations in Cushing's disease
title Recurrent gain-of-function USP8 mutations in Cushing's disease
title_full Recurrent gain-of-function USP8 mutations in Cushing's disease
title_fullStr Recurrent gain-of-function USP8 mutations in Cushing's disease
title_full_unstemmed Recurrent gain-of-function USP8 mutations in Cushing's disease
title_short Recurrent gain-of-function USP8 mutations in Cushing's disease
title_sort recurrent gain-of-function usp8 mutations in cushing's disease
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349249/
https://www.ncbi.nlm.nih.gov/pubmed/25675982
http://dx.doi.org/10.1038/cr.2015.20
work_keys_str_mv AT mazengyi recurrentgainoffunctionusp8mutationsincushingsdisease
AT songzhijian recurrentgainoffunctionusp8mutationsincushingsdisease
AT chenjianhua recurrentgainoffunctionusp8mutationsincushingsdisease
AT wangyongfei recurrentgainoffunctionusp8mutationsincushingsdisease
AT lishiqi recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhouliangfu recurrentgainoffunctionusp8mutationsincushingsdisease
AT maoying recurrentgainoffunctionusp8mutationsincushingsdisease
AT liyiming recurrentgainoffunctionusp8mutationsincushingsdisease
AT huronggui recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhangzhaoyun recurrentgainoffunctionusp8mutationsincushingsdisease
AT yehongying recurrentgainoffunctionusp8mutationsincushingsdisease
AT shenming recurrentgainoffunctionusp8mutationsincushingsdisease
AT shouxuefei recurrentgainoffunctionusp8mutationsincushingsdisease
AT lizhiqiang recurrentgainoffunctionusp8mutationsincushingsdisease
AT penghong recurrentgainoffunctionusp8mutationsincushingsdisease
AT wangqingzhong recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhoudaizhan recurrentgainoffunctionusp8mutationsincushingsdisease
AT qinxiaolan recurrentgainoffunctionusp8mutationsincushingsdisease
AT jijue recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhengjie recurrentgainoffunctionusp8mutationsincushingsdisease
AT chenhong recurrentgainoffunctionusp8mutationsincushingsdisease
AT wangyin recurrentgainoffunctionusp8mutationsincushingsdisease
AT gengdaoying recurrentgainoffunctionusp8mutationsincushingsdisease
AT tangweijun recurrentgainoffunctionusp8mutationsincushingsdisease
AT fuchaowei recurrentgainoffunctionusp8mutationsincushingsdisease
AT shizhifeng recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhangyichao recurrentgainoffunctionusp8mutationsincushingsdisease
AT yezhao recurrentgainoffunctionusp8mutationsincushingsdisease
AT hewenqiang recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhangqilin recurrentgainoffunctionusp8mutationsincushingsdisease
AT tangqisheng recurrentgainoffunctionusp8mutationsincushingsdisease
AT xierong recurrentgainoffunctionusp8mutationsincushingsdisease
AT shenjiawei recurrentgainoffunctionusp8mutationsincushingsdisease
AT wenzujia recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhoujuan recurrentgainoffunctionusp8mutationsincushingsdisease
AT wangtao recurrentgainoffunctionusp8mutationsincushingsdisease
AT huangshan recurrentgainoffunctionusp8mutationsincushingsdisease
AT qiuhuijia recurrentgainoffunctionusp8mutationsincushingsdisease
AT qiaonidan recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhangyi recurrentgainoffunctionusp8mutationsincushingsdisease
AT panli recurrentgainoffunctionusp8mutationsincushingsdisease
AT baoweimin recurrentgainoffunctionusp8mutationsincushingsdisease
AT liuyingchao recurrentgainoffunctionusp8mutationsincushingsdisease
AT huangchuanxin recurrentgainoffunctionusp8mutationsincushingsdisease
AT shiyongyong recurrentgainoffunctionusp8mutationsincushingsdisease
AT zhaoyao recurrentgainoffunctionusp8mutationsincushingsdisease