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Nieto, T.

Publications and source records attributed to Nieto, T..

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Nanopore sequencing and assembly of a human genome with ultra-long reads

Nanopore sequencing is a promising technique for genome sequencing due to its portability, ability to sequence long reads from single molecules, and to simultaneously assay DNA methylation. However until recently nanopore sequencing has been mainly applied to small genomes, due to the limited output attainable. We present nanopore sequencing and assembly of the GM12878 Utah/Ceph human reference genome generated using the Oxford Nanopore MinION and R9.4 version chemistry. We generated 91.2 Gb of sequence data ([~]30x theoretical coverage) from 39 flowcells. De novo assembly yielded a highly complete and contiguous assembly (NG50 [~]3Mb). We observed considerable variability in homopolymeric tract resolution between different basecallers. The data permitted sensitive detection of both large structural variants and epigenetic modifications. Further we developed a new approach exploiting the long-read capability of this system and found that adding an additional 5x-coverage of ultra-long reads (read N50 of 99.7kb) more than doubled the assembly contiguity. Modelling the repeat structure of the human genome predicts extraordinarily contiguous assemblies may be possible using nanopore reads alone. Portable de novo sequencing of human genomes may be important for rapid point-of-care diagnosis of rare genetic diseases and cancer, and monitoring of cancer progression. The complete dataset including raw signal is available as an Amazon Web Services Open Dataset at: https://github.com/nanopore-wgs-consortium/NA12878.

genomics

Whole genome methylation analysis of non-dysplastic Barretts oesophagus that progresses to invasive cancer

ObjectiveTo investigate differences in methylation between patients with non-dysplastic Barretts oesophagus who progress to invasive adenocarcinoma and those that do not.\n\nDesignA whole genome methylation interrogation using the Illumina HumanMethylation 450 array of patients with non-dysplastic Barretts Oesophagus who either develop adenocarcinoma or remain static, with validation of findings by bisulfite pyrosequencing\n\nResultsIn total, 12 patients with \"progressive\" vs. 12 with \"non-progressive\" non-dysplastic Barretts oesophagus were analysed via methylation array. Fourty-four methylation markers were identified that may be able to discriminate between non-dysplastic Barretts Oesophagus that either progress to adenocarcinoma or remain static. Hypomethylation of the recently identified tumour supressor OR3A4 (probe cg09890332) validated in a separate cohort of samples (median methylation in progressors = 67.8% vs. 96.7% in non-progressors,p=0.0001, z = 3.85, Wilcoxon rank sum test) and was associated with the progression to adenocarcinoma. There were no differences in copy number between the two groups, but a global trend towards hypomethylation in the progressor group was observed.\n\nConclusionHypomethylation of OR3A4 has the ability to risk stratify the patient with non-dysplastic Barretts Oesophagus and may form the basis of a future surveillance program.

genomics