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Taking advantage of recent high throughput sequencing technology combined with bioinformatics tools, several groups have recently studied the genome-wide substitutional RNA editing profiles in human.
Recent high throughput molecular analyses have identified a huge number of genomic/phenotypic alterations.
Recent high throughput brain scRNA-seq studies indicate that mouse brain is composed of a large diversity of specialized cell subpopulations.
Recent high throughput experimental technologies have enabled the comprehensive analysis of cellular response to a given stimulus.
Recent high throughput analysis has identified many more genes that are methylated at far upstream CGIs and even in coding regions [6].
Recent high throughput genome wide DNA methylation analysis identified many more CGIs located distal to promoters that are tissue-specifically methylated [5].
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Recent high-throughput advances with NGS offers efficient full-length HLA typing.
More recent high-throughput genomic technologies have now demonstrated that only <2% of the human genome encodes for amino acids in proteins.
This review provides an overview on well-known melanoma oncogenes and new oncogene candidates, based on recent high-throughput sequencing studies.
These published statements on protein interactions can be evaluated using data from recent high-throughput techniques.
Here, we assess a large set of published statements on protein interactions in yeast (S. cerevisiae) with data from recent high-throughput experiments.
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