Human breast cancer cells contain an error-prone DNA replication apparatus

被引:0
|
作者
Sekowski, JW
Malkas, LH
Schnaper, L
Bechtel, PE
Long, BJ
Hickey, RJ
机构
[1] Univ Maryland, Dept Pharmacol & Expt Therapeut, Sch Med, Baltimore, MD 21201 USA
[2] Univ Maryland, Greenebaum Canc Ctr, Program Oncol, Baltimore, MD 21201 USA
[3] Univ Maryland, Program Mol & Cellular Biol, Baltimore, MD 21201 USA
[4] Univ Maryland, Toxicol Program, Baltimore, MD 21201 USA
[5] Greater Baltimore Med Ctr, Comprehens Breast Care Ctr, Baltimore, MD 21201 USA
关键词
D O I
暂无
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The mechanisms responsible for creating genetic errors and genomic instability in cancer cells have not been fully defined. Recently, it has been shown that human cells contain a highly organized complex of proteins, termed the DNA synthesome, that is fully competent to carry out all phases of SV40 in vitro DNA replication (J, M. Coll el al., Oncol. Res., 8: 435-447, 1996; L. H. Malkas et al., Biochemistry, 29: 6362-6374, 1990; Y. Wu et at, J, Cell, Biochem,, 54: 32-46, 1994; N. Applegren et al., J, Cell. Biochem,, 54: 32-46, 1994), DNA replication fidelity analyses of the DNA synthesome derived from malignant and nonmalignant human breast cells demonstrate that the malignant cell synthesome is mutagenic. The decrease in tumor cell replication fidelity was not due to an increased proliferative capacity of the tumor cells or an increase in the synthetic activity of their DNA synthesome. The ratios of insertions, deletions, and mismatches created by the synthesome from malignant and nonmalignant breast cells were essentially identical, despite the greater overall number of mutations made by the breast cancer cell synthesome. These data define, for the first time, a mechanism unique to cancer cells that contributes to the observed increase in genetic mutation in cancer cells.
引用
收藏
页码:3259 / 3263
页数:5
相关论文
共 50 条
  • [21] Genotoxic therapy stimulates error-prone DNA repair in dormant hepatocellular cancer stem cells
    Nishikawa, Shimpei
    Ishii, Hideshi
    Haraguchi, Naotsugu
    Kano, Yoshihiro
    Fukusumi, Takahito
    Ohta, Katsuya
    Ozaki, Miyuki
    Sakai, Daisuke
    Satoh, Taroh
    Nagano, Hiroaki
    Doki, Yuichiro
    Mori, Masaki
    EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2012, 3 (06) : 959 - 962
  • [22] Unravelling roles of error-prone DNA polymerases in shaping cancer genomes
    Cyrus Vaziri
    Igor B. Rogozin
    Qisheng Gu
    Di Wu
    Tovah A. Day
    Oncogene, 2021, 40 : 6549 - 6565
  • [23] ERROR-PRONE REPAIR INDUCED BY DNA DAMAGE
    DEVORET, R
    COMPTES RENDUS DES SEANCES DE LA SOCIETE DE BIOLOGIE ET DE SES FILIALES, 1979, 173 (02): : 359 - 367
  • [24] Error-free and error-prone lesion bypass by human DNA polymerase κ in vitro
    Zhang, YB
    Yuan, FH
    Wu, XH
    Wang, M
    Rechkoblit, O
    Taylor, JS
    Geacintov, NE
    Wang, ZG
    NUCLEIC ACIDS RESEARCH, 2000, 28 (21) : 4138 - 4146
  • [25] Error-prone replication of West Nile virus caused by ribavirin
    Day, CW
    Smee, DF
    Julander, JG
    Yamshchikov, YF
    Sidwell, RW
    Morrey, JD
    ANTIVIRAL RESEARCH, 2005, 67 (01) : 38 - 45
  • [26] Recovery of Arrested Replication Forks by Homologous Recombination Is Error-Prone
    Iraqui, Ismail
    Chekkal, Yasmina
    Jmari, Nada
    Pietrobon, Violena
    Freon, Karine
    Costes, Audrey
    Lambert, Sarah A. E.
    PLOS GENETICS, 2012, 8 (10):
  • [27] Error-Prone Replication through UV Lesions by DNA Polymerase θ Protects against Skin Cancers
    Yoon, Jung-Hoon
    McArthur, Mark J.
    Park, Jeseong
    Basu, Debashree
    Wakamiya, Maki
    Prakash, Louise
    Prakash, Satya
    CELL, 2019, 176 (06) : 1295 - +
  • [28] Error-prone bypass of DNA lesions during lagging-strand replication is a common source of germline and cancer mutations
    Vladimir B. Seplyarskiy
    Evgeny E. Akkuratov
    Natalia Akkuratova
    Maria A. Andrianova
    Sergey I. Nikolaev
    Georgii A. Bazykin
    Igor Adameyko
    Shamil R. Sunyaev
    Nature Genetics, 2019, 51 : 36 - 41
  • [29] Error-prone bypass of DNA lesions during lagging-strand replication is a common source of germline and cancer mutations
    Seplyarskiy, Vladimir B.
    Akkuratov, Evgeny E.
    Akkuratova, Natalia
    Andrianova, Maria A.
    Nikolaev, Sergey I.
    Bazykin, Georgii A.
    Adameyko, Igor
    Sunyaev, Shamil R.
    NATURE GENETICS, 2019, 51 (01) : 36 - +
  • [30] Error-prone bypass patch by a low-fidelity variant of DNA polymerase zeta in human cells
    Suzuki, Tetsuya
    Sassa, Akira
    Gruz, Petr
    Gupta, Ramesh C.
    Johnson, Francis
    Adachi, Noritaka
    Nohmi, Takehiko
    DNA REPAIR, 2021, 100