Bimolecular fluorescence complementation (BiFC) is based on the complementation between two nonfluorescent fragments of the yellow fluorescent protein (YFP) when they are united by interactions between proteins covalently linked to them. We have successfully applied BiFC in Neurospora crassa using two genes involved in meiotic silencing by unpaired DNA (MSUD) and observed macromolecular complex formation involving only SAD-1 proteins, only SAD-2 proteins, and mixtures of SAD-1 and SAD-2 proteins
ABSTRACT Complex protein interaction networks constitute plant metabolic and signaling systems. Bimo...
[EMBARGOED UNTIL 6/1/2023] The filamentous fungus Neurospora crassa is a model organism for the stud...
Abstract only availableNeurospora crassa is a haploid fungus that reproduces asexually during vegeta...
Bimolecular fluorescence complementation (BiFC) is based on the complementation between two nonfluor...
Finding a trustworthy method to recognize protein-protein interactions is going to be a big task in ...
Investigation of protein-protein interactions (PPI) in Candida albicans is essential for understandi...
Protein networks and signaling cascades are key mechanisms for intra- and intercellular signal trans...
<p>Results of BiFC analyses in <i>Arabidopsis</i> mesophyll protoplast transient expression system s...
Background The investigation of protein-protein interactions is important for characterizing protein...
BiFC (bimolecular fluorescence complementation) is a tool for investigating interactions between pro...
Protein interactions integrate stimuli from different signaling pathways and developmental programs....
<p>(A-B) Yeast two-hybrid assays. Summary of interactions performed (A).–indicates no interaction; +...
Motivation: CRISPR based systems allow directing a protein (Cpf1) to specific genome regions guided ...
Abstract: Since its introduction in plants 10 years ago, the bimolecular fluorescence complementatio...
During meiosis in the filamentous fungus Neurospora crassa, unpaired genes are identified and silenc...
ABSTRACT Complex protein interaction networks constitute plant metabolic and signaling systems. Bimo...
[EMBARGOED UNTIL 6/1/2023] The filamentous fungus Neurospora crassa is a model organism for the stud...
Abstract only availableNeurospora crassa is a haploid fungus that reproduces asexually during vegeta...
Bimolecular fluorescence complementation (BiFC) is based on the complementation between two nonfluor...
Finding a trustworthy method to recognize protein-protein interactions is going to be a big task in ...
Investigation of protein-protein interactions (PPI) in Candida albicans is essential for understandi...
Protein networks and signaling cascades are key mechanisms for intra- and intercellular signal trans...
<p>Results of BiFC analyses in <i>Arabidopsis</i> mesophyll protoplast transient expression system s...
Background The investigation of protein-protein interactions is important for characterizing protein...
BiFC (bimolecular fluorescence complementation) is a tool for investigating interactions between pro...
Protein interactions integrate stimuli from different signaling pathways and developmental programs....
<p>(A-B) Yeast two-hybrid assays. Summary of interactions performed (A).–indicates no interaction; +...
Motivation: CRISPR based systems allow directing a protein (Cpf1) to specific genome regions guided ...
Abstract: Since its introduction in plants 10 years ago, the bimolecular fluorescence complementatio...
During meiosis in the filamentous fungus Neurospora crassa, unpaired genes are identified and silenc...
ABSTRACT Complex protein interaction networks constitute plant metabolic and signaling systems. Bimo...
[EMBARGOED UNTIL 6/1/2023] The filamentous fungus Neurospora crassa is a model organism for the stud...
Abstract only availableNeurospora crassa is a haploid fungus that reproduces asexually during vegeta...