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Codon Digest: Agents Design Proteins

Codon

And experiments at Tune Therapeutics showed that CRISPR epigenome editing — which doesn’t cut DNA at all, but merely silences genes by adding chemical groups to them — can curb “bad cholesterol” by more than 50% in monkeys. These tools do not cut or nick DNA, and so they may be safer than other options.

DNA 55
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Codon Digest: Agents Design Proteins

Codon

And experiments at Tune Therapeutics showed that CRISPR epigenome editing — which doesn’t cut DNA at all, but merely silences genes by adding chemical groups to them — can curb “bad cholesterol” by more than 50% in monkeys. These tools do not cut or nick DNA, and so they may be safer than other options.

DNA 52
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Codon Digest: Hackathon Prize Winners

Codon

Since the last Codon Digest, I’ve published: Reasons to Be Grateful for Biotechnology (with Avadhoot Jadhav) AAV Foundations (Part I) An overview of AAV-based gene therapies, how they get made, and where they go wrong. DNA sequences are designed on a computer, and it takes a dozen or more clicks to change a single nucleotide.

DNA 52
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Codon Digest: Hackathon Prize Winners

Codon

Since the last Codon Digest, I’ve published: Reasons to Be Grateful for Biotechnology (with Avadhoot Jadhav) AAV Foundations (Part I) An overview of AAV-based gene therapies, how they get made, and where they go wrong. DNA sequences are designed on a computer, and it takes a dozen or more clicks to change a single nucleotide.

DNA 52
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Codon Digest: Discovering Antibiotics with Deep Learning

Codon

This week: A way to measure a transgene’s expression in the brain using ultrasound, a DNA sequencing method that uses 1000x less reagents, and base editors get even smaller. An engineered version of this protein can convert DNA bases with efficiencies up to 92%. so this Digest will be published more irregularly.

DNA 52
article thumbnail

Codon Digest: Discovering Antibiotics with Deep Learning

Codon

This week: A way to measure a transgene’s expression in the brain using ultrasound, a DNA sequencing method that uses 1000x less reagents, and base editors get even smaller. An engineered version of this protein can convert DNA bases with efficiencies up to 92%. so this Digest will be published more irregularly.

DNA 52