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» twitter, immunology and genetics & genomics

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image: Week in Review: March 31–April 4

Week in Review: March 31–April 4

By | April 4, 2014

Transcriptional landscape of the fetal brain; how a parasitic worm invades plants; difficulties reproducing “breakthrough” heart regeneration method; oxytocin and dishonesty

1 Comment

image: The Right to Not Know

The Right to Not Know

By | April 2, 2014

Patients should be able to decline learning about incidental genetic findings when undergoing whole-genome screens, according to new expert recommendations.

1 Comment

image: An Ancient Evolutionary Advantage?

An Ancient Evolutionary Advantage?

By | April 1, 2014

Shared sequences within the brain lipid-metabolism pathway between Neanderthals and modern Europeans highlight questions about how these genetic similarities arose.

3 Comments

image: Commander of an Immune Flotilla

Commander of an Immune Flotilla

By | April 1, 2014

With much of his early career dictated by US Navy interests, Carl June drew inspiration from malaria, bone marrow transplantation, and HIV in his roundabout path to a breakthrough in cancer immunotherapy.

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image: Getting Down to Business

Getting Down to Business

By | April 1, 2014

Is there a genetic component to entrepreneurial success?

2 Comments

image: Deploying the Body’s Army

Deploying the Body’s Army

By | April 1, 2014

Using patients’ own immune systems to fight cancer

3 Comments

image: Week in Review: March 24–28

Week in Review: March 24–28

By | March 28, 2014

Synthetic yeast chromosome; human enhancers and promoters mapped; brain-wide map links fly behaviors to neurons; treating eye diseases with nanotechnology

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image: Synthetic Yeast Chromosome

Synthetic Yeast Chromosome

By | March 27, 2014

A heavily edited version of yeast shows just how flexible eukaryotic chromosomes can be.

3 Comments

image: Enhancer and Promoter Atlases

Enhancer and Promoter Atlases

By | March 26, 2014

Consortium annotates the human genome with cell type-specific information about transcription start sites, active enhancers, and their expression throughout the body.

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image: DNA Bends Control Gene Activation

DNA Bends Control Gene Activation

By | March 25, 2014

Genomic structures called i-motifs signal DNA activation, while hairpin loops signal gene suppression.  

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Mettler Toledo
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