Literature DB >> 15934046

The interactive online SKY/M-FISH & CGH database and the Entrez cancer chromosomes search database: linkage of chromosomal aberrations with the genome sequence.

Turid Knutsen1, Vasuki Gobu, Rodger Knaus, Hesed Padilla-Nash, Meena Augustus, Robert L Strausberg, Ilan R Kirsch, Karl Sirotkin, Thomas Ried.   

Abstract

To catalog data on chromosomal aberrations in cancer derived from emerging molecular cytogenetic techniques and to integrate these data with genome maps, we have established two resources, the NCI and NCBI SKY/M-FISH & CGH Database and the Cancer Chromosomes database. The goal of the former is to allow investigators to submit and analyze clinical and research cytogenetic data. It contains a karyotype parser tool, which automatically converts the ISCN short-form karyotype into an internal representation displayed in detailed form and as a colored ideogram with band overlay, and also has a tool to compare CGH profiles from multiple cases. The Cancer Chromosomes database integrates the SKY/M-FISH & CGH Database with the Mitelman Database of Chromosome Aberrations in Cancer and the Recurrent Chromosome Aberrations in Cancer database. These three datasets can now be searched seamlessly by use of the Entrez search and retrieval system for chromosome aberrations, clinical data, and reference citations. Common diagnoses, anatomic sites, chromosome breakpoints, junctions, numerical and structural abnormalities, and bands gained and lost among selected cases can be compared by use of the "similarity" report. Because the model used for CGH data is a subset of the karyotype data, it is now possible to examine the similarities between CGH results and karyotypes directly. All chromosomal bands are directly linked to the Entrez Map Viewer database, providing integration of cytogenetic data with the sequence assembly. These resources, developed as a part of the Cancer Chromosome Aberration Project (CCAP) initiative, aid the search for new cancer-associated genes and foster insights into the causes and consequences of genetic alterations in cancer. (c) 2005 Wiley-Liss, Inc.

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Year:  2005        PMID: 15934046      PMCID: PMC1224735          DOI: 10.1002/gcc.20224

Source DB:  PubMed          Journal:  Genes Chromosomes Cancer        ISSN: 1045-2257            Impact factor:   5.006


  10 in total

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Authors:  I R Kirsch; E D Green; R Yonescu; R Strausberg; N Carter; D Bentley; M A Leversha; I Dunham; V V Braden; E Hilgenfeld; G Schuler; A E Lash; G L Shen; M Martelli; W M Kuehl; R D Klausner; T Ried
Journal:  Nat Genet       Date:  2000-04       Impact factor: 38.330

2.  Progenetix.net: an online repository for molecular cytogenetic aberration data.

Authors:  M Baudis; M L Cleary
Journal:  Bioinformatics       Date:  2001-12       Impact factor: 6.937

3.  The Molecular Biology Database Collection: 2004 update.

Authors:  Michael Y Galperin
Journal:  Nucleic Acids Res       Date:  2004-01-01       Impact factor: 16.971

4.  Karyotyping human chromosomes by combinatorial multi-fluor FISH.

Authors:  M R Speicher; S Gwyn Ballard; D C Ward
Journal:  Nat Genet       Date:  1996-04       Impact factor: 38.330

5.  Multicolor spectral karyotyping of human chromosomes.

Authors:  E Schröck; S du Manoir; T Veldman; B Schoell; J Wienberg; M A Ferguson-Smith; Y Ning; D H Ledbetter; I Bar-Am; D Soenksen; Y Garini; T Ried
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Authors:  M Liyanage; A Coleman; S du Manoir; T Veldman; S McCormack; R B Dickson; C Barlow; A Wynshaw-Boris; S Janz; J Wienberg; M A Ferguson-Smith; E Schröck; T Ried
Journal:  Nat Genet       Date:  1996-11       Impact factor: 38.330

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Journal:  Cancer Genet Cytogenet       Date:  2000-07-15

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Authors:  A Kallioniemi; O P Kallioniemi; D Sudar; D Rutovitz; J W Gray; F Waldman; D Pinkel
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9.  Karyotypic complexity of the NCI-60 drug-screening panel.

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10.  Database resources of the National Center for Biotechnology Information: update.

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  10 in total
  43 in total

1.  Spontaneous transformation of murine epithelial cells requires the early acquisition of specific chromosomal aneuploidies and genomic imbalances.

Authors:  Hesed M Padilla-Nash; Karen Hathcock; Nicole E McNeil; David Mack; Daniel Hoeppner; Rea Ravin; Turid Knutsen; Raluca Yonescu; Danny Wangsa; Kathleen Dorritie; Linda Barenboim; Yue Hu; Thomas Ried
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2.  Serine/Arginine-Rich Splicing Factor 3 Modulates the Alternative Splicing of Cytoplasmic Polyadenylation Element Binding Protein 2.

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Authors:  Hesed M Padilla-Nash; Linda Barenboim-Stapleton; Michael J Difilippantonio; Thomas Ried
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Journal:  Chromosome Res       Date:  2007-05-10       Impact factor: 5.239

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Authors:  Yijun Ruan; Hong Sain Ooi; Siew Woh Choo; Kuo Ping Chiu; Xiao Dong Zhao; K G Srinivasan; Fei Yao; Chiou Yu Choo; Jun Liu; Pramila Ariyaratne; Wilson G W Bin; Vladimir A Kuznetsov; Atif Shahab; Wing-Kin Sung; Guillaume Bourque; Nallasivam Palanisamy; Chia-Lin Wei
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7.  Aneuploidy, oncogene amplification and epithelial to mesenchymal transition define spontaneous transformation of murine epithelial cells.

Authors:  Hesed M Padilla-Nash; Nicole E McNeil; Ming Yi; Quang-Tri Nguyen; Yue Hu; Danny Wangsa; David L Mack; Amanda B Hummon; Chanelle Case; Eric Cardin; Robert Stephens; Michael J Difilippantonio; Thomas Ried
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Review 9.  Cancer gene discovery in mouse and man.

Authors:  Jenny Mattison; Louise van der Weyden; Tim Hubbard; David J Adams
Journal:  Biochim Biophys Acta       Date:  2009-03-12

10.  Network of Cancer Genes: a web resource to analyze duplicability, orthology and network properties of cancer genes.

Authors:  Adnan S Syed; Matteo D'Antonio; Francesca D Ciccarelli
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