The international Functional Annotation Of the Mammalian Genomes 4 (FANTOM4) research collaboration set out to better understand the transcriptional network that regulates macrophage differentiation and to uncover novel components of the transcriptome employing a series of high-throughput experiments. The primary and unique technique is cap analysis of gene expression (CAGE), sequencing mRNA 50-ends with a second-generation sequencer to quantify promoter activities even in the absence of gene annotation. Additional genome-wide experiments complement the setup including short RNA sequencing, microarray gene expression profiling on large-scale perturbation experiments and ChIP-chip for epigenetic marks and transcription factors. All the exper...
Regulated transcription controls the diversity, developmental pathways and spatial organization of t...
The international FANTOM consortium aims to produce a comprehensive picture of the mammalian transcr...
Regulated transcription controls the diversity, developmental pathways and spatial organization of t...
The international Functional Annotation Of the Mammalian Genomes 4 (FANTOM4) research collaboration ...
The international Functional Annotation of the Mammalian Genomes 4 (FANTOM4) research collaboration ...
In FANTOM4, an international collaborative research project, we collected a wide range of genome-sca...
Upon the first publication of the fifth iteration of the Functional Annotation of Mammalian Genomes ...
In the FANTOM5 project, transcription initiation events across the human and mouse genomes were mapp...
The FANTOM5 project investigates transcription initiation activities in more than 1,000 human and mo...
In the FANTOM5 project, transcription initiation events across the human and mouse genomes were mapp...
In the FANTOM5 project, transcription initiation events across the human and mouse genomes were mapp...
Abstract Big leaps in science happen when scientists from different backgrounds interact. In the pas...
The international FANTOM consortium aims to produce a comprehensive picture of the mammalian transcr...
Regulated transcription controls the diversity, developmental pathways and spatial organization of t...
The international FANTOM consortium aims to produce a comprehensive picture of the mammalian transcr...
Regulated transcription controls the diversity, developmental pathways and spatial organization of t...
The international Functional Annotation Of the Mammalian Genomes 4 (FANTOM4) research collaboration ...
The international Functional Annotation of the Mammalian Genomes 4 (FANTOM4) research collaboration ...
In FANTOM4, an international collaborative research project, we collected a wide range of genome-sca...
Upon the first publication of the fifth iteration of the Functional Annotation of Mammalian Genomes ...
In the FANTOM5 project, transcription initiation events across the human and mouse genomes were mapp...
The FANTOM5 project investigates transcription initiation activities in more than 1,000 human and mo...
In the FANTOM5 project, transcription initiation events across the human and mouse genomes were mapp...
In the FANTOM5 project, transcription initiation events across the human and mouse genomes were mapp...
Abstract Big leaps in science happen when scientists from different backgrounds interact. In the pas...
The international FANTOM consortium aims to produce a comprehensive picture of the mammalian transcr...
Regulated transcription controls the diversity, developmental pathways and spatial organization of t...
The international FANTOM consortium aims to produce a comprehensive picture of the mammalian transcr...
Regulated transcription controls the diversity, developmental pathways and spatial organization of t...