Gene duplications are believed to facilitate evolutionary innovation. However, the mechanisms shaping the fate of duplicated genes remain heavily debated because the molecular processes and evolutionary forces involved are difficult to reconstruct. Here, we study a large family of fungal glucosidase genes that underwent several duplication events. We reconstruct all key ancestral enzymes and show that the very first preduplication enzyme was primarily active on maltose-like substrates, with trace activity for isomaltose-like sugars. Structural analysis and activity measurements on resurrected and present-day enzymes suggest that both activities cannot be fully optimized in a single enzyme. However, gene duplications repeatedly spawned daugh...
BACKGROUND: Gene duplication is the primary source of new genes with novel or altered functions. It ...
Through ancestral sequence reconstruction (ASR) techniques, ancient enzymes can be recreated and bio...
Using yeast Saccharomyces cerevisiae as the main model organism, I addressed three fundamental quest...
Gene duplications are believed to facilitate evolutionary innovation. However, the mechanisms shapin...
<div><p>Gene duplications are believed to facilitate evolutionary innovation. However, the mechanism...
Gene duplications are believed to facilitate evolutionary innovation. However, the mechanisms shapin...
<p>(A) Overview of evolutionary mechanisms in the evolution of an ancestral gene with two conflictin...
[EN] Researchers have long been enthralled with the idea that gene duplication can generate novel fu...
Researchers have long been enthralled with the idea that gene duplication can generate novel functio...
Enzymes have been evolving to catalyze new chemical reactions for billions of years, and will contin...
Gene duplication is known to play an important role in the evolution of novel protein functions. How...
Gene duplication is a crucial process involved in the appearance of new genes and functions. It is t...
AbstractTwo new genome sequences confirm that a whole genome duplication occurred in an ancestor of ...
Resumen del póster presentado al Society for Molecular Biology and Evolution Meeting (SMBEv), celebr...
Researchers have long been enthralled with the idea that gene duplication can generate novel functio...
BACKGROUND: Gene duplication is the primary source of new genes with novel or altered functions. It ...
Through ancestral sequence reconstruction (ASR) techniques, ancient enzymes can be recreated and bio...
Using yeast Saccharomyces cerevisiae as the main model organism, I addressed three fundamental quest...
Gene duplications are believed to facilitate evolutionary innovation. However, the mechanisms shapin...
<div><p>Gene duplications are believed to facilitate evolutionary innovation. However, the mechanism...
Gene duplications are believed to facilitate evolutionary innovation. However, the mechanisms shapin...
<p>(A) Overview of evolutionary mechanisms in the evolution of an ancestral gene with two conflictin...
[EN] Researchers have long been enthralled with the idea that gene duplication can generate novel fu...
Researchers have long been enthralled with the idea that gene duplication can generate novel functio...
Enzymes have been evolving to catalyze new chemical reactions for billions of years, and will contin...
Gene duplication is known to play an important role in the evolution of novel protein functions. How...
Gene duplication is a crucial process involved in the appearance of new genes and functions. It is t...
AbstractTwo new genome sequences confirm that a whole genome duplication occurred in an ancestor of ...
Resumen del póster presentado al Society for Molecular Biology and Evolution Meeting (SMBEv), celebr...
Researchers have long been enthralled with the idea that gene duplication can generate novel functio...
BACKGROUND: Gene duplication is the primary source of new genes with novel or altered functions. It ...
Through ancestral sequence reconstruction (ASR) techniques, ancient enzymes can be recreated and bio...
Using yeast Saccharomyces cerevisiae as the main model organism, I addressed three fundamental quest...