Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes

S Monterisi, J Michl, A Hulikova, J Koth, EM Bridges… - Elife, 2022 - elifesciences.org
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …

Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes

S Monterisi, J Michl, A Hulikova, J Koth, EM Bridges… - eLife, 2022 - ora.ox.ac.uk
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …

Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes

S Monterisi, J Michl, A Hulikova, J Koth… - …, 2022 - pubmed.ncbi.nlm.nih.gov
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …

Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes

S Monterisi, J Michl, AE Hill, A Hulikova, G Abdullayeva… - bioRxiv, 2022 - biorxiv.org
Experimental inactivation of certain genes involved in metabolism attenuates cancer cell
growth in vitro. However, loss-of-function mutations in metabolic pathways are not negatively …

[HTML][HTML] Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes

S Monterisi, J Michl, A Hulikova, J Koth, EM Bridges… - eLife, 2022 - ncbi.nlm.nih.gov
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …

Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes.

S Monterisi, J Michl, A Hulikova, J Koth, EM Bridges… - eLife, 2022 - search.ebscohost.com
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …

Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes.

S Monterisi, J Michl, A Hulikova, J Koth, EM Bridges… - Elife, 2022 - europepmc.org
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …

Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes

S Monterisi, J Michl, A Hulikova, J Koth, EM Bridges… - 2022 - agris.fao.org
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …

[PDF][PDF] Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes 2

S Monterisi, J Michl, AE Hill, A Hulikova, G Abdullayeva… - scholar.archive.org
Experimental inactivation of certain genes involved in metabolism attenuates cancer 21 cell
growth in vitro. However, loss-of-function mutations in metabolic pathways are 22 not …

Solute exchange through gap junctions lessens the adverse effects of inactivating mutations in metabolite-handling genes

M Stefania, J Michl, H Alzbeta, J Koth, EM Bridges… - eLife, 2022 - search.proquest.com
Growth of cancer cells in vitro can be attenuated by genetically inactivating selected
metabolic pathways. However, loss-of-function mutations in metabolic pathways are not …