PTEN genomic deletions that characterize aggressive prostate cancer originate close to segmental duplications

被引:49
作者
Yoshimoto, Maisa [1 ]
Ludkovski, Olga
DeGrace, Dave [1 ]
Williams, Julia L. [1 ]
Evans, Andrew [2 ]
Sircar, Kanishka [3 ]
Bismar, Tarek A. [4 ]
Nuin, Paulo [1 ,5 ]
Squire, Jeremy A. [1 ]
机构
[1] Queens Univ, Dept Pathol & Mol Med, Kingston, ON K7L 3N6, Canada
[2] Princess Margaret Hosp, Dept Pathol, Toronto, ON M4X 1K9, Canada
[3] Univ Texas MD Anderson Canc Ctr, Dept Pathol, Houston, TX 77030 USA
[4] Univ Calgary, Dept Pathol & Lab Med, Calgary, AB T2N 1N4, Canada
[5] Ontario Canc Biomarker Network, Toronto, ON, Canada
关键词
ERG GENE REARRANGEMENTS; TUMOR-SUPPRESSOR GENES; ARRAY CGH; HOMOLOGOUS RECOMBINATION; MOLECULAR ALTERATIONS; ADVANCED-STAGE; BREAST-CANCER; FISH ANALYSIS; CELL-LINES; HIGH-GRADE;
D O I
10.1002/gcc.20939
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Deletion of PTEN at 10q23.3 occurs in similar to 40% of human prostate cancers and is associated with aggressive metastatic potential, poor prognosis, and androgen-independence. This high frequency of recurrent PTEN deletions in prostate cancer suggests there may be unusual genomic features close to this locus that facilitate DNA alteration at 10q23.3. To explore possible mechanisms for deletions in the PTEN region, a meta-analysis of 311 published human genome array datasets was conducted and determined that the minimal prostate cancer-associated deletion at 10q23.3 corresponds to similar to 2.06 MB region flanked by BMPR1A and FAS. On a separate cohort comprising an additional 330 tumors, four-color fluorescence in situ hybridization analysis using probes for BMPR1A, FAS, cen(10), and PTEN showed that 132 of 330 (40%) tumors had PTEN loss, 50 (15%) of which were homozygous losses (comprising in total 100 deletion events). Breakpoints between PTEN and BMPR1A or FAS were subsequently mapped in 100 homozygous and 82 hemizygous PTEN losses, revealing that 125/182 PTEN microdeletions occurred within the 940 kB interval between BMPR1A and PTEN. Furthermore, this breakpoint interval coincides with a repeat-rich region of 414 kB containing the SD17 and SD18 segmental duplications, which contain at least 13 homologous inverted repeat sequences. Together, these data suggest that a strong selective growth advantage for loss of PTEN and upregulation of PI3K/AKT, combined with the close proximity of PTEN to a large unstable segment of repeated DNA comprising SD17 and SD18, can lead to recurrent microdeletions of the PTEN gene in prostate cancer. (C) 2011 Wiley Periodicals, Inc.
引用
收藏
页码:149 / 160
页数:12
相关论文
共 79 条
  • [61] Shotgun sequence assembly and recent segmental duplications within the human genome
    She, XW
    Jiang, ZX
    Clark, RL
    Liu, G
    Cheng, Z
    Tuzun, E
    Church, DM
    Sutton, G
    Halpern, AL
    Eichler, EE
    [J]. NATURE, 2004, 431 (7011) : 927 - 930
  • [62] Molecular genetics of prostate cancer: new prospects for old challenges
    Shen, Michael M.
    Abate-Shen, Cory
    [J]. GENES & DEVELOPMENT, 2010, 24 (18) : 1967 - 2000
  • [63] PTEN genomic deletion is associated with p-Akt and AR signalling in poorer outcome, hormone refractory prostate cancer
    Sircar, Kanishka
    Yoshimoto, Maisa
    Monzon, Federico A.
    Koumakpayi, Ismael H.
    Katz, Ruth L.
    Khanna, Abha
    Alvarez, Karla
    Chen, Guanyong
    Darnel, Andrew D.
    Aprikian, Armen G.
    Saad, Fred
    Bismar, Tarek A.
    Squire, Jeremy A.
    [J]. JOURNAL OF PATHOLOGY, 2009, 218 (04) : 505 - 513
  • [64] High-resolution mapping of amplifications and deletions in pediatric osteosarcoma by use of CGH analysis of cDNA microarrays
    Squire, JA
    Pei, JM
    Marrano, P
    Beheshti, B
    Bayani, J
    Lim, G
    Moldovan, L
    Zielenska, M
    [J]. GENES CHROMOSOMES & CANCER, 2003, 38 (03) : 215 - 225
  • [65] TMPRSS2-ERG and PTEN loss in prostate cancer
    Squire, Jeremy A.
    [J]. NATURE GENETICS, 2009, 41 (05) : 509 - 510
  • [66] Genome architecture, rearrangements and genomic disorders
    Stankiewicz, P
    Lupski, JR
    [J]. TRENDS IN GENETICS, 2002, 18 (02) : 74 - 82
  • [67] Integrative Genomic Profiling of Human Prostate Cancer
    Taylor, Barry S.
    Schultz, Nikolaus
    Hieronymus, Haley
    Gopalan, Anuradha
    Xiao, Yonghong
    Carver, Brett S.
    Arora, Vivek K.
    Kaushik, Poorvi
    Cerami, Ethan
    Reva, Boris
    Antipin, Yevgeniy
    Mitsiades, Nicholas
    Landers, Thomas
    Dolgalev, Igor
    Major, John E.
    Wilson, Manda
    Socci, Nicholas D.
    Lash, Alex E.
    Heguy, Adriana
    Eastham, James A.
    Scher, Howard I.
    Reuter, Victor E.
    Scardino, Peter T.
    Sander, Chris
    Sawyers, Charles L.
    Gerald, William L.
    [J]. CANCER CELL, 2010, 18 (01) : 11 - 22
  • [68] SOX9 Elevation in the Prostate Promotes Proliferation and Cooperates with PTEN Loss to Drive Tumor Formation
    Thomsen, Martin K.
    Ambroisine, Laurence
    Wynn, Sarah
    Cheah, Kathryn S. E.
    Foster, Christopher S.
    Fisher, Gabrielle
    Berney, Daniel M.
    Moller, Henrik
    Reuter, Victor E.
    Scardino, Peter
    Cuzick, Jack
    Ragavan, Narasimhan
    Singh, Paras B.
    Martin, Francis L.
    Butler, Christopher M.
    Cooper, Colin S.
    Swain, Amanda
    Grp, Transatlantic Prostate
    [J]. CANCER RESEARCH, 2010, 70 (03) : 979 - 987
  • [69] Recurrent fusion of TMPRSS2 and ETS transcription factor genes in prostate cancer
    Tomlins, SA
    Rhodes, DR
    Perner, S
    Dhanasekaran, SM
    Mehra, R
    Sun, XW
    Varambally, S
    Cao, XH
    Tchinda, J
    Kuefer, R
    Lee, C
    Montie, JE
    Shah, RB
    Pienta, KJ
    Rubin, MA
    Chinnaiyan, AM
    [J]. SCIENCE, 2005, 310 (5748) : 644 - 648
  • [70] TROUTMAN SM, 2010, CANCER BIOL THER, V10, P2