[HTML][HTML] Anoxia-reoxygenation regulates mitochondrial dynamics through the hypoxia response pathway, SKN-1/Nrf, and stomatin-like protein STL-1/SLP-2

P Ghose, EC Park, A Tabakin, N Salazar-Vasquez… - PLoS …, 2013 - journals.plos.org
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

Anoxia-reoxygenation regulates mitochondrial dynamics through the hypoxia response pathway, SKN-1/Nrf, and stomatin-like protein STL-1/SLP-2

P Ghose, EC Park, A Tabakin… - PLoS …, 2013 - pubmed.ncbi.nlm.nih.gov
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

[PDF][PDF] Anoxia-Reoxygenation Regulates Mitochondrial Dynamics through the Hypoxia

P Ghose, EC Park, A Tabakin, N Salazar-Vasquez… - 2013 - cyberleninka.org
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

Anoxia-Reoxygenation Regulates Mitochondrial Dynamics through the Hypoxia Response Pathway, SKN-1/Nrf, and Stomatin-Like Protein STL-1/SLP-2.

P Ghose, EC Park, A Tabakin… - PLoS …, 2013 - search.ebscohost.com
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

Anoxia-reoxygenation regulates mitochondrial dynamics through the hypoxia response pathway, SKN-1/Nrf, and stomatin-like protein STL-1/SLP-2.

P Ghose, EC Park, A Tabakin, N Salazar-Vasquez… - Plos Genetics, 2013 - europepmc.org
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

Anoxia-Reoxygenation Regulates Mitochondrial Dynamics through the Hypoxia Response Pathway, SKN-1/Nrf, and Stomatin-Like Protein STL-1/SLP-2

P Ghose, EC Park, A Tabakin… - PLoS …, 2013 - search.proquest.com
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

[HTML][HTML] Anoxia-Reoxygenation Regulates Mitochondrial Dynamics through the Hypoxia Response Pathway, SKN-1/Nrf, and Stomatin-Like Protein STL-1/SLP-2

P Ghose, EC Park, A Tabakin, N Salazar-Vasquez… - PLoS …, 2013 - ncbi.nlm.nih.gov
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

Anoxia-Reoxygenation Regulates Mitochondrial Dynamics through the Hypoxia Response Pathway, SKN-1/Nrf, and Stomatin-Like Protein STL-1/SLP-2

P Ghose, EC Park, A Tabakin… - PLoS …, 2013 - researchwithrutgers.com
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

Anoxia-reoxygenation regulates mitochondrial dynamics through the hypoxia response pathway, SKN-1/Nrf, and stomatin-like protein STL-1/SLP-2

P Ghose, EC Park, A Tabakin, N Salazar-Vasquez… - PLoS …, 2013 - go.gale.com
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …

Anoxia-reoxygenation regulates mitochondrial dynamics through the hypoxia response pathway, SKN-1/Nrf, and stomatin-like protein STL-1/SLP-2.

P Ghose, EC Park, A Tabakin, N Salazar-Vasquez… - 2013 - cabidigitallibrary.org
Many aerobic organisms encounter oxygen-deprived environments and thus must have
adaptive mechanisms to survive such stress. It is important to understand how mitochondria …