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Bi-PROF
Authors:Jasmin Gries  Dirk Schumacher  Julia Arand  Pavlo Lutsik  Maria Rivera Markelova  Iduna Fichtner  J?rn Walter  Christine Sers  Sascha Tierling
Institution:1.Department of Genetics/Epigenetics; FR8.3 Life Sciences; Saarland University; Saarbrücken, Germany;2.Molecular Tumor Pathology; Institute of Pathology; Charité - Universitätsmedizin Berlin; Berlin, Germany;3.Experimental Pharmacology; Max Delbrück Center for Molecular Medicine; Berlin, Germany
Abstract:The use of next generation sequencing has expanded our view on whole mammalian methylome patterns. In particular, it provides a genome-wide insight of local DNA methylation diversity at single nucleotide level and enables the examination of single chromosome sequence sections at a sufficient statistical power. We describe a bisulfite-based sequence profiling pipeline, Bi-PROF, which is based on the 454 GS-FLX Titanium technology that allows to obtain up to one million sequence stretches at single base pair resolution without laborious subcloning. To illustrate the performance of the experimental workflow connected to a bioinformatics program pipeline (BiQ Analyzer HT) we present a test analysis set of 68 different epigenetic marker regions (amplicons) in five individual patient-derived xenograft tissue samples of colorectal cancer and one healthy colon epithelium sample as a control. After the 454 GS-FLX Titanium run, sequence read processing and sample decoding, the obtained alignments are quality controlled and statistically evaluated. Comprehensive methylation pattern interpretation (profiling) assessed by analyzing 102-104 sequence reads per amplicon allows an unprecedented deep view on pattern formation and methylation marker heterogeneity in tissues concerned by complex diseases like cancer.
Keywords:DNA methylation  bisulfite profiling  next-generation sequencing  BiQ Analyzer HT  colorectal cancer
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