| Literature DB >> 23382041 |
Jing Zhu1, Yang Yu, Xiangning Meng, Yihui Fan, Yu Zhang, Chunshui Zhou, Zhichao Yue, Yan Jin, Chunyu Zhang, Lisa Yu, Wei Ji, Xueyuan Jia, Rongwei Guan, Jie Wu, Jingcui Yu, Jing Bai, Xin-Yuan Guan, Mingrong Wang, Ki-Young Lee, Wenjing Sun, Songbin Fu.
Abstract
Double minutes (DMs) are hallmarks of gene amplification. However, their molecular structure and the mechanisms of formation are largely unknown. To elucidate the structure and underlying molecular mechanism of DMs, we obtained and cloned DMs using microdissection; and degenerated oligonucleotide primed polymerase chain reaction (DOP-PCR) from the ovarian cancer cell line UACC-1598. Two large amplicons, the 284 kb AmpMYCN, originating from locus 2p24.3 and the 391 kb AmpEIF5A2, from locus 3q26.2, were found co-amplified on the same DMs. The two amplicons are joined through a complex 7 kb junction DNA sequence. Analysis of the junction has revealed three de novo created small palindromes surrounding the six breakpoints. Consistent with these observations, we further found that 70% of the 57 reported DM junction sequences have de novo creation of small palindromic sequences surrounding the breakpoints. Together, our findings indicate that de novo-generated small palindromic sequences are characteristic of amplicon boundary junctions on DMs. It is possible that the de novo-generated small palindromic sequences, which may be generated through non-homologous end joining in concert with a novel DNA repair machinery, play a common role in amplicon rejoining and gene amplification.Entities:
Mesh:
Substances:
Year: 2013 PMID: 23382041 PMCID: PMC3734650 DOI: 10.1002/ijc.28084
Source DB: PubMed Journal: Int J Cancer ISSN: 0020-7136 Impact factor: 7.396
Figure 1Chromosomal origins of DMs in UACC-1598 cells. (a) Karyotype of a UACC-1598 cell. Representative DMs are indicated by arrows. (b) DOP-PCR amplification of DMs. DMs isolated by microdissection were amplified and the PCR products were labeled as probes for following FISH analysis. (c) Representative image of FISH analysis in UACC-1598. Signals in red are mainly from DMs. Arrows indicate typical DMs. (d) Representative image of FISH analysis in a normal human peripheral blood lymphocyte confirms the DMs originate from chromosomes 2p and 3q.
Figure 2Mapping of the amplicons and their boundaries on chromosomes. Determination of the size and boundaries of AmpMYCN (a) and AmpEIF5A2 (b). The boundaries were narrowed to several kilobase by Southern blot and further narrowed to about 500 bp by semi-quantitative PCR. The loci in red indicate the regions amplified and the loci in blue are not amplified. Rectangles indicate the expected paired blotting results. For all paired results, the left lane was from control (normal human peripheral blood leukocytes DNA), the right lane was from UACC-1598 cells.
Figure 3Identification of the molecular structure of DMs. (a) AmpMYCN and AmpEIF5A2 co-localized on the same DMs. The merged signals proved the co-localization. (b) Determination of the joint pattern of AmpMYCN and AmpEIF5A2. Possible joint patterns were determined by long-range PCR using primer pairs designed. (c) The molecular structure of DMs in UACC-1598 cells. AmpMYCN (blue) from 2p24.3 and AmpEIF5A2 (red) from 3q26.2, are linked by two discontinuous 2p24.1-originating fragments with a size of 84 bp (pink) and 6789 bp (green). The junction parts, J1, J2, J3, are shown as red lines. The yellow triangle squares represent genes on the DMs.
Figure 4Sequences and de novo palindrome structures of junctions on DMs. (a) Breakpoints and junction sequences of DMs. Two artificial insertions, 17 bp in Junction 1 and 9 bp in Junction 2, were identified (red). Junction 3 is formed by blunt-end joining. Natural sequences from different chromosomes are depicted either in black or in green. Palindromic sequences are depicted in black rectangles. (b) De novo palindromic structures occur in all three junctions. The predicted stem-loop type hairpin structures are illustrated.