Testicular germ cell tumours: predisposition genes and the male germ cell niche

被引:0
|
作者
Duncan Gilbert
Elizabeth Rapley
Janet Shipley
机构
[1] Sussex Cancer Centre,
[2] Royal Sussex County Hospital,undefined
[3] Molecular Cytogenetics,undefined
[4] Male Urological Cancer Research Centre,undefined
[5] The Institute of Cancer Research,undefined
来源
Nature Reviews Cancer | 2011年 / 11卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Testicular germ cell tumours (TGCTs) are the most frequent solid cancer in young adult Caucasian men; they have shown an increased incidence over the past four decades and are putatively derived from primordial germ cells (PGCs) or gonocytes.Genome-wide association studies (GWAS) have revealed loci that suggest predisposition genes that are central to normal PGC biology (KIT ligand (KITLG; also known as SCF), sprouty 4 (SPRY4), BCL-2-antagonist/killer 1 (BAK1), telomerase reverse transcriptase (TERT), activating transcription factor 7 interacting protein (ATF7IP) and doublesex and mab-3-related transcription factor 1 (DMRT1)).KITLG, SPRY4 and BAK1 are involved in KIT signalling, which is crucial to PGC migration and survival and is an important pathway that is frequently activated in TGCTs that occur in older men.TERT and ATF7IP maintain telomere length and are reactivated in a range of tumour types.DMRT1 is responsible for male sex determination. Experimental loss leads to TGCTs in mouse models and genomic gain and overexpression is seen in the spermatocytic seminoma subtype of TGCTs.Spermatocytic seminomas exhibit overexpression and mutations of fibroblast growth factor 3 (FGFR3) and HRAS. These mutations confer a selective advantage to the spermatogonial stem cells within the testes and accrue over time, linking ageing to cancer predisposition and congenital syndromes in the offspring of affected gametes.This improved understanding of TGCT predisposition and biology will lead to further refinements in the clinical management of this disease.
引用
收藏
页码:278 / 288
页数:10
相关论文
共 50 条
  • [11] Predisposition alleles for testicular germ cell tumour
    Rapley, Elizabeth A.
    Nathanson, Katherine L.
    CURRENT OPINION IN GENETICS & DEVELOPMENT, 2010, 20 (03) : 225 - 230
  • [12] Microinvasive germ cell tumour (MGCT) adjacent to testicular germ cell tumours
    von Eyben, FE
    Jacobsen, GK
    Rorth, M
    Von Der Maase, H
    HISTOPATHOLOGY, 2004, 44 (06) : 547 - 554
  • [13] BORIS expression in testicular germ cell tumours
    Kirigin, M. S.
    Mesic, A.
    Milosevic, I.
    Cesarec, S.
    Ulamec, M.
    Dzombeta, T.
    Tomas, D.
    Kruslin, B.
    VIRCHOWS ARCHIV, 2015, 467 : S268 - S268
  • [14] Genomic imprinting in testicular germ cell tumours
    Looijenga, LHJ
    Verkerk, AJMH
    Dekker, MC
    Van Gurp, RJHLM
    Gillis, AJM
    Oosterhuis, JW
    APMIS, 1998, 106 (01) : 187 - 195
  • [15] Intracranial metastasis of testicular germ cell tumours
    Shah, Zara
    Bashir, Hafiza Hifza
    Bakhshi, Saqib Kamran
    Shamim, Muhammad Shahzad
    JOURNAL OF THE PAKISTAN MEDICAL ASSOCIATION, 2023, 73 (05) : 1137 - 1139
  • [16] Molecular biology of testicular germ cell tumours
    Oosterhuis, JW
    Looijenga, LHJ
    UPDATE IN PATHOLOGY, PROCEEDINGS, 2003, : 512 - 514
  • [17] Fundamentals in the pathology of testicular germ cell tumours
    Fichtner, Alexander
    Bremmer, Felix
    PATHOLOGIE, 2023, 44 (06): : 401 - 413
  • [18] Epigenetic profile of testicular germ cell tumours
    Okamoto, Keisei
    Kawakami, Takahiro
    INTERNATIONAL JOURNAL OF ANDROLOGY, 2007, 30 (04): : 385 - 392
  • [19] Baldness, acne and testicular germ cell tumours
    Trabert, B.
    Sigurdson, A. J.
    Sweeney, A. M.
    Amato, R. J.
    Strom, S. S.
    McGlynn, K. A.
    INTERNATIONAL JOURNAL OF ANDROLOGY, 2011, 34 (04): : E59 - E67
  • [20] Genomic imprinting in testicular germ cell tumours
    Loeijenga, LHJ
    Verkerk, AJMH
    Dekker, MC
    van Gurp, RJHLM
    Gillis, AJM
    Oossterhuis, JW
    GERM CELL TUMOURS IV, 1998, : 41 - 50