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image: One Receptor, Two Ligands, Different Responses

One Receptor, Two Ligands, Different Responses

By Ruth Williams | August 31, 2016

Host and bacterial ligands that interact with the same cell-surface receptor induce different activities in human macrophages. 

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image: Opinion: GMOs Are Not “Frankenfoods”

Opinion: GMOs Are Not “Frankenfoods”

By Dov Greenbaum and Mark Gerstein | August 30, 2016

It behooves the scientific community to reflect on the public’s “Franken-” characterization of genetically modified foods.

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The marsupials’ genomes show evidence of a rapid evolutionary response to selection imposed by devil facial tumor disease.

2 Comments

image: Newly Discovered Virus Has Multi-Part Genome

Newly Discovered Virus Has Multi-Part Genome

By Bob Grant | August 26, 2016

A “multicomponent” virus isolated from mosquitoes infects in stages and reassembles once the pieces are inside the host.

3 Comments

image: One Antigen Receptor Induces Two T cell Types

One Antigen Receptor Induces Two T cell Types

By Ruth Williams | August 26, 2016

Precursor T cells bearing the same antigen receptor adopt two different fates in mice.

1 Comment

image: Streamlining the <em>E. coli</em> Genetic Code

Streamlining the E. coli Genetic Code

By Karen Zusi | August 18, 2016

Scientists design a bacterial genome with only 57 codons.

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image: Exploring Alternative Codon Usage in Yeast

Exploring Alternative Codon Usage in Yeast

By Kim Smuga-Otto | August 18, 2016

Newly discovered amino acid reassignment could have implications for certain biotech applications and RNA-based evolutionary theories.

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image: Largest Human Genetic Variation Repository Yet

Largest Human Genetic Variation Repository Yet

By Anna Azvolinsky | August 17, 2016

An open-access catalog of tens of thousands of human exome sequences highlights the power of a very large genomic dataset in pinpointing genes linked to rare diseases. 

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image: Antibiotic Resistance Reaches Brazil

Antibiotic Resistance Reaches Brazil

By Kerry Grens | August 8, 2016

Scientists detect a colistin-resistance gene in a clinical sample.

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Access to data from thousands of genotyping customers helped scientists detect novel associations with the disorder across the genome.

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