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Gene expression delivery tool ‘slides’ instructions into cells

Drug Discovery World

Researchers say they have successfully used a cell’s natural process for making proteins to ‘slide’ genetic instructions into a cell and produce critical proteins missing from those cells. . Two methods currently used to deliver protein-making packages into cells, ‘mini promoters’ and serotype-mediated gene expression, vary widely.

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Scientists show how gene expression controls synaptic plasticity in the aging human brain

Medical Xpress

Scientific evidence shows how the cognitive decline in Alzheimer's disease (AD) is caused by the buildup of amyloid beta proteins, which promote synaptic malfunction.

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AI-designed protein awakens silenced genes, one by one

The Pharma Data

By combining CRISPR technology with a protein designed with artificial intelligence (AI), it is possible to awaken individual dormant genes by disabling the chemical “off switches” that silence them. The chemical modifications that regulate gene activity are called epigenetic markers. it can be reawakened.

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For the first time, researchers describe how Rho protein really stops gene expression

BioTech 365

New Research Reveals the Secret Behind a Key Cellular Process (scitechdaily.com) New research has identified and described a cellular process that, despite what textbooks say, has remained elusive to scientists until now — precisely how … Continue reading →

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Turning science into business: Amplifying mRNA by targeting regRNAs

Drug Discovery World

DDW’s Diana Spencer speaks to Josh Mandel-Brehm , CEO of Massachusetts-based biotech CAMP4, to understand the role regulatory RNAs play in gene expression and how the founders overcame the challenge of launching a business based on brand new science. What are the advantages compared to other gene modulating approaches?

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Epigenetics discovery could lead to new class of cancer drugs

Drug Discovery World

A new paper has solved the 20-year mystery of how epigenetic modifications act as traffic lights to control gene expression and could ultimately speed up the development of a new class of epigenetic cancer drugs. Epigenetics is still largely unexplored and referred to as the ‘dark matter’ of the genome.

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“Nuclear speckle” structures inside cells enhance gene activity, may help block cancers

Scienmag

Study shows that tumor-suppressor protein p53 brings speckles and DNA together to boost gene expression PHILADELPHIA – A team led by scientists at the Perelman School of Medicine at the University of Pennsylvania has illuminated the functions of mysterious structures in cells called “nuclear speckles,” showing that they can work in (..)

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