TY - JOUR
T1 - SET domain containing 1B gene is mutated in primary hepatic neuroendocrine tumors
AU - Yang, Penghui
AU - Huang, Xuanlin
AU - Lai, Chengcai
AU - Li, Lin
AU - Li, Tieling
AU - Huang, Peide
AU - Ouyang, Songying
AU - Yan, Jin
AU - Cheng, Sijie
AU - Lei, Guanglin
AU - Wang, Zhaohai
AU - Yu, Linxiang
AU - Hong, Zhixian
AU - Li, Ruisheng
AU - Dong, Hui
AU - Wang, Cheng
AU - Yu, Yinghao
AU - Wang, Xuan
AU - Li, Xianghong
AU - Wang, Liming
AU - Lv, Fudong
AU - Yin, Ye
AU - Yang, Huanming
AU - Song, Jianxun
AU - Gao, Qiang
AU - Wang, Xiliang
AU - Zhang, Shaogeng
N1 - Publisher Copyright:
© 2019 UICC
PY - 2019/12/1
Y1 - 2019/12/1
N2 - Primary hepatic neuroendocrine tumors (PHNETs) are extremely rare NETs originating from the liver. These tumors are associated with heterogeneous prognosis, and few treatment targets for PHNETs have been identified. Because the major genetic alterations in PHNET are still largely unknown, we performed whole-exome sequencing of 22 paired tissues from PHNET patients and identified 22 recurring mutations of somatic genes involved in the following activities: epigenetic modification (BPTF, MECP2 and WDR5), cell cycle (TP53, ATM, MED12, DIDO1 and ATAD5) and neural development (UBR4, MEN1, GLUL and GIGYF2). Here, we show that TP53 and the SET domain containing the 1B gene (SETD1B) are the most frequently mutated genes in this set of samples (3/22 subjects, 13.6%). A biological analysis suggests that one of the three SETD1B mutants, A1054del, promotes cell proliferation, migration and invasion compared to wild-type SETD1B. Our work unveils that SETD1B A1054del mutant is functional in PHNET and implicates genes including TP53 in the disease. Our findings thus characterize the mutational landscapes of PHNET and implicate novel gene mutations linked to PHNET pathogenesis and potential therapeutic targets.
AB - Primary hepatic neuroendocrine tumors (PHNETs) are extremely rare NETs originating from the liver. These tumors are associated with heterogeneous prognosis, and few treatment targets for PHNETs have been identified. Because the major genetic alterations in PHNET are still largely unknown, we performed whole-exome sequencing of 22 paired tissues from PHNET patients and identified 22 recurring mutations of somatic genes involved in the following activities: epigenetic modification (BPTF, MECP2 and WDR5), cell cycle (TP53, ATM, MED12, DIDO1 and ATAD5) and neural development (UBR4, MEN1, GLUL and GIGYF2). Here, we show that TP53 and the SET domain containing the 1B gene (SETD1B) are the most frequently mutated genes in this set of samples (3/22 subjects, 13.6%). A biological analysis suggests that one of the three SETD1B mutants, A1054del, promotes cell proliferation, migration and invasion compared to wild-type SETD1B. Our work unveils that SETD1B A1054del mutant is functional in PHNET and implicates genes including TP53 in the disease. Our findings thus characterize the mutational landscapes of PHNET and implicate novel gene mutations linked to PHNET pathogenesis and potential therapeutic targets.
KW - PHNETs
KW - SETD1B
KW - whole-exome sequencing
UR - https://www.scopus.com/pages/publications/85066035026
U2 - 10.1002/ijc.32334
DO - 10.1002/ijc.32334
M3 - 文章
C2 - 30977120
AN - SCOPUS:85066035026
SN - 0020-7136
VL - 145
SP - 2986
EP - 2995
JO - International Journal of Cancer
JF - International Journal of Cancer
IS - 11
ER -