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image: More Than Skin Deep

More Than Skin Deep

By | May 1, 2016

Elaine Fuchs has worked on adult stem cells since before they were so named, figuring out how multipotent epidermal cells renew or turn into skin or hair follicles.

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image: Fearless about Folding

Fearless about Folding

By | January 1, 2016

Susan Lindquist has never shied away from letting her curiosity guide her research career.

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image: Leaving an Imprint

Leaving an Imprint

By | August 1, 2015

Among the first to discover epigenetic reprogramming during mammalian development, Wolf Reik has been studying the dynamics of the epigenome for 30 years.

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image: Crossing Boundaries

Crossing Boundaries

By | September 1, 2014

A groundbreaker in the study of Listeria monocytogenes, Pascale Cossart continues to build her research tool kit to understand how to fight such intracellular human pathogens.


image: Meiosis Maven

Meiosis Maven

By | February 1, 2014

Fueled by her love of visual data and addicted to chromosomes, Abby Dernburg continues to study how homologous chromosomes find each other during gamete formation.

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image: Going Boldly Forth

Going Boldly Forth

By | January 1, 2013

Gregory Hannon believes in taking risks—an approach that’s enabled him to make exciting new discoveries in the world of small RNAs.


image: The Road Less Traveled

The Road Less Traveled

By | November 1, 2012

First, Aravinda Chakravarti drew a map of how scientists might unravel the genetics of complex disease. Then he blazed the trail.


image: (Re)Programming Director

(Re)Programming Director

By | October 1, 2012

Unwilling to accept the finality of terminal differentiation, Helen Blau has honed techniques that showcase the flexibility of cells to adopt different identities.


image: Taking the Long View

Taking the Long View

By | September 1, 2012

In exploring how embryos take shape, John Wallingford has identified a key pathway involved in vertebrate development—and human disease.


image: Fly Guy

Fly Guy

By | August 1, 2012

For Michael Dickinson, Drosophila are more than winged gene holders—they’re sophisticated systems for translating sensory information into flight instructions.

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