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tag memory loss genetics genomics

bacteria and DNA molecules on a purple background.
Engineering the Microbiome: CRISPR Leads the Way
Mariella Bodemeier Loayza Careaga, PhD | Mar 15, 2024 | 10+ min read
Scientists have genetically modified isolated microbes for decades. Now, using CRISPR, they intend to target entire microbiomes.
One Protein to Rule Them All
Shelby Bradford, PhD | Feb 28, 2024 | 10+ min read
p53 is possibly the most important protein for maintaining cellular function. Losing it is synonymous with cancer.
Novelty Activates a Long Noncoding RNA for Spatial Learning in Mice
Shelby Bradford, PhD | Feb 6, 2024 | 4 min read
Genes activated in new environments include those used during development.
A Master Regulator of Gene Expression
Mariella Bodemeier Loayza Careaga, PhD | Jan 31, 2024 | 4 min read
A CRISPR-based screening platform helped scientists identify a transcription factor that makes CAR T cells better at killing cancer cells. 
Layered visual representation of multiomics
Integrate and Innovate with NGS and Multiomics
The Scientist and Illumina | May 4, 2023 | 6 min read
Researchers across disciplines combine layers of discovery obtained with accessible NGS-based multiomics approaches.
3D structural model of a Cas protein and sgRNA targeting and unwinding DNA for gene editing.
CRISPR Gene Editing: Cas9 and Beyond
Johanna Pruller, PhD and Deanna MacNeil, PhD | Nov 29, 2023 | 7 min read
Researchers create and improve CRISPR-Cas mediated gene editing technologies based on prokaryotic CRISPR systems and eukaryotic DNA repair mechanisms.
DNA Methylation Linked to Memory Loss
Sabrina Richards | Jul 2, 2012 | 3 min read
Scientists find that declining DNA methylation in mouse neurons may cause age-related memory deficits.
A rendering of a human brain in blue on a dark background with blue and white lines surrounding the brain to represent the construction of new connections in the brain.
Defying Dogma: Decentralized Translation in Neurons
Danielle Gerhard, PhD | Sep 8, 2023 | 10+ min read
To understand how memories are formed and maintained, neuroscientists travel far beyond the cell body in search of answers.
A younger-looking mouse next to an older-looking one
Epigenetic Manipulations Can Accelerate or Reverse Aging in Mice
Alejandra Manjarrez, PhD | Jan 12, 2023 | 4 min read
Repairing damaged DNA appears to drive aging by causing the loss of epigenetic information, but restoring that information reverses such effects, a study finds.
A tropical angelfish 
Genome Spotlight: Freshwater Angelfish (Pterophyllum scalare)
Christie Wilcox, PhD | Oct 27, 2022 | 4 min read
A high school student uses crowdfunding to produce the first genome assembly for this popular aquarium species, underscoring the increasing feasibility of whole-genome sequencing.

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