An important goal of synthetic biology is the rational design and predictable implementation of synthetic gene circuits using standardized and interchangeable parts. However, engineering of complex circuits in mammalian cells is currently limited by the availability of well-characterized and orthogonal transcriptional repressors. Here, we introduce a library of 26 reversible transcription activator–like effector repressors (TALERs) that bind newly designed hybrid promoters and exert transcriptional repression through steric hindrance of key transcriptional initiation elements. We demonstrate that using the input-output transfer curves of our TALERs enables accurate prediction of the behavior of modularly assembled TALER cascade and switch c...
Biological computing circuits can enhance our ability to control cellular functions and have potenti...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
BACKGROUND: Most of synthetic circuits developed so far have been designed by an ad hoc approach,...
A key obstacle to creating sophisticated genetic circuits has been the lack of scalable device libra...
Transcription activator-like effectors (TALE) are sequence-specific DNA binding proteins that harbor...
Prokaryotic regulatory proteins respond to diverse signals and represent a rich resource for buildin...
Genetic circuits require many regulatory parts in order to implement signal processing or execute al...
Background: Most of synthetic circuits developed so far have been designed by an ad hoc approach, us...
Background: Most of synthetic circuits developed so far have been designed by an ad hoc approach, us...
A central tenent of synthetic biology is the ability to predictably engineer complex patterns of gen...
Targeted transcriptional repression with catalytically inactive Cas9 (CRISPRi) can be used to build ...
none4Background: Most of synthetic circuits developed so far have been designed by an ad hoc approac...
BACKGROUND: Most of synthetic circuits developed so far have been designed by an ad hoc approach, us...
Targeted transcriptional repression with catalytically inactive Cas9 (CRISPRi) can be used to build ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Pa...
Biological computing circuits can enhance our ability to control cellular functions and have potenti...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
BACKGROUND: Most of synthetic circuits developed so far have been designed by an ad hoc approach,...
A key obstacle to creating sophisticated genetic circuits has been the lack of scalable device libra...
Transcription activator-like effectors (TALE) are sequence-specific DNA binding proteins that harbor...
Prokaryotic regulatory proteins respond to diverse signals and represent a rich resource for buildin...
Genetic circuits require many regulatory parts in order to implement signal processing or execute al...
Background: Most of synthetic circuits developed so far have been designed by an ad hoc approach, us...
Background: Most of synthetic circuits developed so far have been designed by an ad hoc approach, us...
A central tenent of synthetic biology is the ability to predictably engineer complex patterns of gen...
Targeted transcriptional repression with catalytically inactive Cas9 (CRISPRi) can be used to build ...
none4Background: Most of synthetic circuits developed so far have been designed by an ad hoc approac...
BACKGROUND: Most of synthetic circuits developed so far have been designed by an ad hoc approach, us...
Targeted transcriptional repression with catalytically inactive Cas9 (CRISPRi) can be used to build ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Pa...
Biological computing circuits can enhance our ability to control cellular functions and have potenti...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
BACKGROUND: Most of synthetic circuits developed so far have been designed by an ad hoc approach,...