They seek to understand how cells modulate gene expression by modulating chromatin and DNA organization. Fred Hutch researchers have done pioneering work in the areas of gene regulation, chromatin ...
A research team at KAIST has identified the core gene expression networks regulated by key proteins that fundamentally drive phenomena such as cancer development, metastasis, tissue differentiation ...
A research team has identified the core gene expression networks regulated by key proteins that fundamentally drive phenomena such as cancer development, metastasis, tissue differentiation from stem ...
As well as being essential in the precise packaging of DNA into the space of the nucleus, histone proteins are also the site ...
New research has investigated the mechanism by which bivalency functions to poise genes for expression during cell differentiation, providing insight into a long-standing paradigm in the regulation of ...
GET, a novel computational model, accurately predicts gene activity by analyzing chromatin accessibility and DNA sequences across diverse human cell types.
A research team at KAIST has identified the core gene expression networks regulated by key proteins that fundamentally drive ...
A study reveals DNA and RNA epigenetics work together as a complementary system for precise gene regulation, crucial for cell ...
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Researchers hope the AI tool will aid in the development of cell-specific gene therapies to treat diseases such as cancer.
This new tool, known as minimal, versatile genetic perturbation technology (mvGPT), combines the powers of gene editing, ...