The international project Sc2.0 started 10 years ago by the Pr. Jef Boeke aims to build a fully synthetic genome of S. cerevisiae which increases the genome stability by removing all repeated sequences (tRNA, transposable elements, etc.), and implements SCRaMbLE (for Synthetic Chromosome Rearrangement and Modification by LoxP-mediated Evolution), an inducible, high-throughput chromosome rearrangement system. This design is highly conservative with respect to gene content, the deletion of several classes of repeated sequences and the introduction of thousands of designer changes. However, it may affect genome organization and potentially alter cellular functions. To determine wether those modifications affected the three-dimensional conforma...
The aim of this work was to assess the impact of chromosomal rearrangements on the evolution of yeas...
© 2018 The Author(s). Synthetic biology tools, such as modular parts and combinatorial DNA assembly,...
Decades of studies showed that chromatin structure is tightly linked to DNA related metabolic proces...
The international project Sc2.0 started 10 years ago by the Pr. Jef Boeke aims to build a fully synt...
Le projet international de synthèse des chromosomes de S. cerevisiae (projet Sc2.0) a débuté il y a ...
International audienceAlthough the design of the synthetic yeast genome Sc2.0 is highly conservative...
Synthetic chromosome rearrangement and modification by loxP-mediated evolution (SCRaMbLE) generates ...
INTRODUCTION Total synthesis of designer chromosomes and genomes is a new p...
The advent of high-throughput DNA sequencing technologies has set off an expanding trend in genome a...
INTRODUCTION The Saccharomyces cerevisiae ...
We describe construction of the 660 kilobase synthetic yeast chromosome XI (synXI) and reveal how sy...
We describe construction of the 660 kilobase synthetic yeast chromosome XI (synXI) and reveal how sy...
Variations and adaptations of chromosome ends play an important role in eukaryotic karyotype evoluti...
The aim of this work was to assess the impact of chromosomal rearrangements on the evolution of yeas...
The aim of this work was to assess the impact of chromosomal rearrangements on the evolution of yeas...
The aim of this work was to assess the impact of chromosomal rearrangements on the evolution of yeas...
© 2018 The Author(s). Synthetic biology tools, such as modular parts and combinatorial DNA assembly,...
Decades of studies showed that chromatin structure is tightly linked to DNA related metabolic proces...
The international project Sc2.0 started 10 years ago by the Pr. Jef Boeke aims to build a fully synt...
Le projet international de synthèse des chromosomes de S. cerevisiae (projet Sc2.0) a débuté il y a ...
International audienceAlthough the design of the synthetic yeast genome Sc2.0 is highly conservative...
Synthetic chromosome rearrangement and modification by loxP-mediated evolution (SCRaMbLE) generates ...
INTRODUCTION Total synthesis of designer chromosomes and genomes is a new p...
The advent of high-throughput DNA sequencing technologies has set off an expanding trend in genome a...
INTRODUCTION The Saccharomyces cerevisiae ...
We describe construction of the 660 kilobase synthetic yeast chromosome XI (synXI) and reveal how sy...
We describe construction of the 660 kilobase synthetic yeast chromosome XI (synXI) and reveal how sy...
Variations and adaptations of chromosome ends play an important role in eukaryotic karyotype evoluti...
The aim of this work was to assess the impact of chromosomal rearrangements on the evolution of yeas...
The aim of this work was to assess the impact of chromosomal rearrangements on the evolution of yeas...
The aim of this work was to assess the impact of chromosomal rearrangements on the evolution of yeas...
© 2018 The Author(s). Synthetic biology tools, such as modular parts and combinatorial DNA assembly,...
Decades of studies showed that chromatin structure is tightly linked to DNA related metabolic proces...