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With the arrival of a new class of single-nucleotide editors, researchers can target the most common type of pathogenic SNP in humans.

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image: RNA Editing Possible with CRISPR-Cas13

RNA Editing Possible with CRISPR-Cas13

By | October 25, 2017

Scientists extend the capabilities of the CRISPR-Cas system to include precise manipulations of RNA sequences in human cells.

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image: Genetic Risk Factors for Breast Cancer Identified

Genetic Risk Factors for Breast Cancer Identified

By | October 23, 2017

Researchers identify 72 novel genetic variants associated with breast cancer risk.

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Combined transcription and genome data from multiple tissues in hundreds of human donors reveal links between genotype and gene expression across the body.

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image: Effects of Neanderthal DNA on Modern Humans

Effects of Neanderthal DNA on Modern Humans

By | October 5, 2017

A new study reveals how Neanderthal DNA in the genomes of present-day British people influences their traits.

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image: Q&A with Michael Young, Nobel Laureate

Q&A with Michael Young, Nobel Laureate

By | October 2, 2017

Young talks with The Scientist about studying circadian rhythms in fruit flies, the applications of his work beyond Drosophila, and winning the prize. 

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image: Q&A with Nobel Laureate Michael Rosbash

Q&A with Nobel Laureate Michael Rosbash

By | October 2, 2017

A basic curiosity about how life works led the Brandeis University molecular biologist to discover how our bodies keep time. 

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image: Nonviral CRISPR Delivery a Success

Nonviral CRISPR Delivery a Success

By | October 2, 2017

Researchers use gold nanoparticles to deliver CRISPR-Cas9 and correct a point mutation in a mouse model of Duchenne muscular dystrophy. 

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image: A Single Mutation in Zika Led to Devastating Effects

A Single Mutation in Zika Led to Devastating Effects

By | September 28, 2017

One amino acid change within a viral structural protein makes the difference between mild cases of brain damage and severe microcephaly in mice.

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An analysis of 14,000 genomes reveals regions where new mutations are more likely to develop.

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