Associations of clock genes polymorphisms with soft tissue sarcoma susceptibility and prognosis

被引:22
作者
Benna, Clara [1 ,2 ]
Rajendran, Senthilkumar [1 ]
Spiro, Giovanna [1 ]
Tropea, Saveria [1 ,3 ]
Del Fiore, Paolo [3 ]
Rossi, Carlo Riccardo [1 ,3 ]
Mocellin, Simone [1 ,3 ]
机构
[1] Univ Padua, Dept Surg Oncol & Gastroenterol, Padua, Italy
[2] Azienda Osped Padova, Clin Chirurg 1, Padua, Italy
[3] Ist Oncol Veneto IOV IRCCS, Surg Oncol Unit, Padua, Italy
关键词
Soft tissue sarcoma; Circadian clock gene; Single nucleotide polymorphism (SNP); Genetic variation; Circadian pathway; Susceptibility; Risk; Prognosis; Leiomyosarcoma; Liposarcoma; GENOME-WIDE ASSOCIATION; BREAST-CANCER RISK; CIRCADIAN CLOCK; FUNCTIONAL POLYMORPHISMS; ALA394THR POLYMORPHISM; DEREGULATED EXPRESSION; FIELD SYNOPSIS; SHIFT-WORK; NPAS2; GENE; VARIANTS;
D O I
10.1186/s12967-018-1715-0
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Background: Dysfunction of the circadian clock and polymorphisms of some circadian genes have been linked to cancer development and progression. We investigated the relationship between circadian genes germline variation and susceptibility or prognosis of patients with soft tissue sarcoma. Patients and methods: We considered the 14 single nucleotide polymorphisms (SNPs) of 6 core circadian genes that have a minor allele frequency >5% and that are known to be associated with cancer risk or prognosis. Genotyping was performed by q-PCR. Peripheral blood and clinic-pathological data were available for 162 patients with liposarcoma or leiomyosarcoma and 610 healthy donors. Associations between the selected clock genes polymorphisms and sarcoma susceptibility or prognosis were tested assuming 3 models of inheritance: additive, recessive and dominant. Subgroup analysis based on sarcoma histotype was performed under the additive genetic model. Multivariate logistic regression and multivariate Cox proportional hazard regression analyses were utilized to assess the association between SNPs with patient susceptibility and survival, respectively. Pathway variation analysis was conducted employing the Adaptive Rank Truncated Product method. Results: Six out of the 14 analyzed SNPs were statistically significantly associated with susceptibility or prognosis of soft tissue sarcoma (P<0.05). The present analysis suggested that carriers of the minor allele of the CLOCK polymorphism rs1801260 (C) or of PER2 rs934945 (T) had a reduced predisposition to sarcoma (26% and 35% respectively with the additive model) and liposarcoma (33% and 41% respectively). The minor allele (A) of NPAS2 rs895520 was associated with an increased predisposition to sarcoma of 33% and leiomyosarcoma of 44%. RORArs339972 C allele was associated with a decreased predisposition to develop sarcoma assuming an additive model (29%) and leiomyosarcoma (36%). PER1 rs3027178 was associated with a reduced predisposition only in liposarcoma subgroup (32%). rs7602358 located upstream PER2 was significantly associated with liposarcoma survival (HR: 1.98; 95% CI 1.02-3.85; P=0.04). Germline genetic variation in the circadian pathway was associated with the risk of developing soft tissue sarcoma (P=0.035). Conclusions: Genetic variation of circadian genes appears to play a role in the determinism of patient susceptibility and prognosis. These findings prompt further studies to fully dissect the molecular mechanisms.
引用
收藏
页数:11
相关论文
共 71 条
[1]   Mutations in the Circadian Gene CLOCK in Colorectal Cancer [J].
Alhopuro, Pia ;
Bjorklund, Mikael ;
Sammalkorpi, Heli ;
Turunen, Mikko ;
Tuupanen, Sari ;
Bistrom, Mia ;
Niittymaki, Iina ;
Lehtonen, Heli J. ;
Kivioja, Teemu ;
Launonen, Virpi ;
Saharinen, Juha ;
Nousiainen, Kari ;
Hautaniemi, Sampsa ;
Nuorva, Kyosti ;
Mecklin, Jukka-Pekka ;
Jarvinen, Heikki ;
Orntoft, Torben ;
Arango, Diego ;
Lehtonen, Rainer ;
Karhu, Auli ;
Taipale, Jussi ;
Aaltonen, Lauri A. .
MOLECULAR CANCER RESEARCH, 2010, 8 (07) :952-960
[2]   A Transcriptional Circuit Filters Oscillating Circadian Hormonal Inputs to Regulate Fat Cell Differentiation [J].
Bahrami-Nejad, Zahra ;
Zhao, Michael L. ;
Tholen, Stefan ;
Hunerdosse, Devon ;
Tkach, Karen E. ;
van Schie, Sabine ;
Chung, Mingyu ;
Teruel, Mary N. .
CELL METABOLISM, 2018, 27 (04) :854-+
[3]  
Benna Clara, 2018, Oncotarget, V9, P18607, DOI 10.18632/oncotarget.24719
[4]   Genetic variation of clock genes and cancer risk: a field synopsis and meta-analysis [J].
Benna, Clara ;
Helfrich-Foerster, Charlotte ;
Rajendran, Senthilkumar ;
Monticelli, Halenya ;
Pilati, Pierluigi ;
Nitti, Donato ;
Mocellin, Simone .
ONCOTARGET, 2017, 8 (14) :23978-23995
[5]   bHLH-PAS proteins in cancer [J].
Bersten, David C. ;
Sullivan, Adrienne E. ;
Peet, Daniel J. ;
Whitelaw, Murray L. .
NATURE REVIEWS CANCER, 2013, 13 (12) :827-841
[6]   Liposarcoma: molecular targets and therapeutic implications [J].
Bill, Kate Lynn J. ;
Casadei, Lucia ;
Prudner, Bethany C. ;
Iwenofu, Hans ;
Strohecker, Anne M. ;
Pollock, Raphael E. .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2016, 73 (19) :3711-3718
[7]   Circadian Metabolism: From Mechanisms to Metabolomics and Medicine [J].
Brown, Steven A. .
TRENDS IN ENDOCRINOLOGY AND METABOLISM, 2016, 27 (06) :415-426
[8]   A Role for the Clock Gene Per1 in Prostate Cancer [J].
Cao, Qi ;
Gery, Sigal ;
Dashti, Azadeh ;
Yin, Dong ;
Zhou, Yan ;
Gu, Jiang ;
Koeffler, H. Phiflip .
CANCER RESEARCH, 2009, 69 (19) :7619-7625
[9]   Deregulated expression of the PER1, PER2 and PER3 genes in breast cancers [J].
Chen, ST ;
Choo, KB ;
Hou, MF ;
Yeh, KT ;
Kuo, SJ ;
Chang, JG .
CARCINOGENESIS, 2005, 26 (07) :1241-1246
[10]   Variants in circadian genes and prostate cancer risk: a population-based study in China [J].
Chu, L. W. ;
Zhu, Y. ;
Yu, K. ;
Zheng, T. ;
Yu, H. ;
Zhang, Y. ;
Sesterhenn, I. ;
Chokkalingam, A. P. ;
Danforth, K. N. ;
Shen, M-C ;
Stanczyk, F. Z. ;
Gao, Y-T ;
Hsing, A. W. .
PROSTATE CANCER AND PROSTATIC DISEASES, 2008, 11 (04) :342-348