Why do human brains vary in size and shape, and how did our brains expand over evolutionary time to give us our enhanced ...
Researchers at the Nano Life Science Institute (WPI-NanoLSI) at Kanazawa University have directly visualized how enzymes find ...
Researchers at The University of Texas MD Anderson Cancer Center have shown that DNA inflexibility, or rigidity, inside the nucleosome regulates the positioning of INO80. This highlights that the ...
Scientists have gained tremendous control over the genome with CRISPR editing systems, which use a guide RNA molecule to direct an enzyme (usually Cas9) to a specific location in the genome, where a ...
Left panels: Atomic Force Microscopy images show how circular DNA can shift from a relaxed shape into a tightly twisted form, and how the gene-editing protein Cas9 binds to this coiled DNA (Credit: ...
Cancer cells that carry ecDNA appear to rely on specialized repair machinery to keep these fragile DNA circles intact. Credit ...
It compares 'individual differences' in the sequence of ATGC, rather than looking at the shape of DNAThis also connects to ...
Researchers at the Nano Life Science Institute (WPI-NanoLSI) at Kanazawa University have directly visualized how enzymes find and break DNA molecules in real time. Using high-speed atomic force ...
Researchers found how the INO80 protein moves nucleosomes to specific positions that are important for gene regulation and DNA replication INO80 uses a unique mechanism for moving nucleosomes that ...
CRISPR is a powerful DNA-editing tool that has underpinned huge advancements in human health care in the last decade. It is a precision tool, but is not perfect, and misplaced DNA edits can compromise ...
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