Asparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes crucial for glutamine homeostasis. A genome-wide screening in Saccharomyces cerevisiae reveal that both ASNS and CTPS form filamentous structures termed cytoophidia. Although CTPS cytoophidia were well documented in recent years, the filamentation of ASNS is less studied. Using the budding yeast as a model system, here we confirm that two ASNS proteins, Asn1 and Asn2, are capable of forming cytoophidia in diauxic and stationary phases. We find that glucose deprivation induces ASNS filament formation. Although ASNS and CTPS form distinct cytoophidia with different lengths, both structures locate adjacently to each other in most cells. Moreover, we demonstrate that...
Thesis (Ph.D.)--University of Washington, 2022Many metabolic enzymes self-assemble into micron-scale...
It is widely known that two factors can affect the activity of enzymes, the total molecular number i...
Several metabolic enzymes assemble into distinct intracellular structures in prokaryotes and eukaryo...
Asparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes crucial for glutamine...
Asparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes crucial for glutamine...
Asparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes crucial for glutamine...
AbstractAsparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes that catalyze...
Recent work has found that many metabolic enzymes have the ability to polymerize in response to meta...
Recent work has found that many metabolic enzymes have the ability to polymerize in response to meta...
AbstractCompartmentation via filamentation has recently emerged as a novel mechanism for metabolic r...
Compartmentation via filamentation has recently emerged as a novel mechanism for metabolic regulatio...
Compartmentation via filamentation has recently emerged as a novel mechanism for metabolic regulatio...
In 2010, three independent groups reported that cytidine-5'-triphosphate synthase could form a filam...
Recently, human asparagine synthetase has been found to be associated with the mitotic spindle. Howe...
Cancer cells are characterized by extensive reprogramming of metabolic pathways in order to promote ...
Thesis (Ph.D.)--University of Washington, 2022Many metabolic enzymes self-assemble into micron-scale...
It is widely known that two factors can affect the activity of enzymes, the total molecular number i...
Several metabolic enzymes assemble into distinct intracellular structures in prokaryotes and eukaryo...
Asparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes crucial for glutamine...
Asparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes crucial for glutamine...
Asparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes crucial for glutamine...
AbstractAsparagine synthetase (ASNS) and CTP synthase (CTPS) are two metabolic enzymes that catalyze...
Recent work has found that many metabolic enzymes have the ability to polymerize in response to meta...
Recent work has found that many metabolic enzymes have the ability to polymerize in response to meta...
AbstractCompartmentation via filamentation has recently emerged as a novel mechanism for metabolic r...
Compartmentation via filamentation has recently emerged as a novel mechanism for metabolic regulatio...
Compartmentation via filamentation has recently emerged as a novel mechanism for metabolic regulatio...
In 2010, three independent groups reported that cytidine-5'-triphosphate synthase could form a filam...
Recently, human asparagine synthetase has been found to be associated with the mitotic spindle. Howe...
Cancer cells are characterized by extensive reprogramming of metabolic pathways in order to promote ...
Thesis (Ph.D.)--University of Washington, 2022Many metabolic enzymes self-assemble into micron-scale...
It is widely known that two factors can affect the activity of enzymes, the total molecular number i...
Several metabolic enzymes assemble into distinct intracellular structures in prokaryotes and eukaryo...