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Ultra high resolution breakpoint mapping using custom oligonucleotide arrays and array painting The two derivative chromosomes from 4 patients with balanced translocations were flow sorted, differentially labelled and hybridised to custom oligonucleotide arrays designed to cover the potential breakp...
ORGANISM(S): Homo sapiens 
Massive genomic rearrangement acquired in a single catastrophic event during cancer development
Cancer is driven by mutation. Using Agilent exome hybridisation capture and Illumina GA massively parallel sequencing technology, we aim to sequence ~1600 microRNAs plus the protein coding genome of 25 matched human renal cancer samples. Bespoke algorithms are being developed to identify the somatic...
We introduce high-throughput and massive paired-end mapping (PEM), a large-scale genome sequencing method to identify SVs 3 kb or larger that combines the rescue and capture of paired-ends of 3 kb fragments, massive 454 Sequencing, and a computational approach to map DNA reads onto a reference genom...
ORGANISM(S): Homo sapiens 
ENCODE ChIP/chip study using lymphoblastic cell line GM06990 and anti Histone H3K4me1, H3K4me2, H3K4me3, H3ac and H4ac antibodies.
ORGANISM(S): Homo sapiens 
ENCODE ChIP-chip study using human myelogenous leukemia cell line K-562 and anti histone H3K4me2 (Abcam; ab7766); H3K4me3 (Abcam; ab8580); H3ac (Upstate; 06-599); H4ac (Upstate; 06-866); Histone H2B (Abcam: ab1790) and Histone H3 (Abcam: ab1791) antibodies. Each antibody experiment was conducted in ...
ORGANISM(S): Homo sapiens 
ENCODE ChIP/chip study using human lymphoblastoid cell line GM06990; human cervix carcinoma cell line HeLaS3; human fetal lung fibroblast cell line HFL1; human T cell line MOLT4; chimpanzee lymphoblastoid cell line PTR8; and anti Histone H3K4me1 (Abcam; ab8895); H3K4me2 (Abcam; ab7766); H3K4me3 (Abc...
ORGANISM(S): Pan troglodytes 
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