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The translocation most typically found in mantle cell lymphoma drags a powerful regulatory element into a new area of the human genome.
The non-coding genome, once dismissed as "junk DNA", is now recognized as a fundamental regulator of gene expression and a ...
The researchers have studied the spatial organization of DNA that is so particular to these early developmental stages. The paper, "Antagonism between H3K27me3 and genome–lamina association ...
A new study led by researchers at the University of Cambridge, in collaboration with international institutions, has ...
The non-coding genome, once dismissed as "junk DNA", is now recognized as a fundamental regulator of gene expression and a ...
Using this technique scientists could more easily study how the 3D organization of the genome affects individual cells’ gene expression patterns and functions.
The non-coding genome, once dismissed as "junk DNA", is now recognized as a fundamental regulator of gene expression and a key player in understanding ...