Fluid shear stress enhances proliferation of breast cancer cells via downregulation of the c-subunit of the F1FO ATP synthase. [PDF]
Park HA +7 more
europepmc +3 more sources
Mitochondrial permeability transition pore desensitization by a novel dispiranic derivative prevents cardiac reperfusion injury [PDF]
Mitochondrial permeability transition pore (PTP) opening is a major determinant of cardiac ischemia/reperfusion (I/R) injury, contributing to cardiomyocyte death and impaired cardiac function following revascularization.
Giampaolo Morciano +18 more
doaj +2 more sources
Mitochondrial F1 FO ATP synthase determines the local proton motive force at cristae rims. [PDF]
Rieger B +5 more
europepmc +3 more sources
Rethinking Mitchell's Chemiosmotic Theory: Potassium Dominates Over Proton Flux to Drive Mitochondrial F1Fo-ATP Synthase [PDF]
Edoardo Bertero, Christoph Maack
doaj +2 more sources
Mitochondrial cristae remodeling: Mechanisms, functions, and pathology [PDF]
Mitochondrial cristae are the principal sites of oxidative phosphorylation and are central to mitochondria-dependent energy metabolism. Rather than static folds, cristae are dynamic bioenergetic compartments that remodel in response to physiological and ...
Jianglong Yu +7 more
doaj +2 more sources
The GPCR NMUR-1 mediates neural regulation of energy homeostasis in response to pathogen infection [PDF]
A key challenge in immunology is understanding how the innate immune system achieves specificity against diverse pathogens. Our previous work in Caenorhabditis elegans identified NMUR-1, a neuronal G protein-coupled receptor homologous to mammalian ...
Phillip Wibisono +4 more
doaj +2 more sources
ATP synthase (F1Fo) synthesizes daily our body's weight in ATP, whose production-rate can be transiently increased several-fold to meet changes in energy utilization.
Magdalena Juhaszova +11 more
doaj +1 more source
BNIP3 regulates cardiac energy metabolism by interaction with F1FO ATP-synthase [PDF]
Abstract Background The oxidative phosphorylation (OXPHOS) that takes place in the mitochondria produces chemical energy in form of ATP, the main energy source of the heart. Proper mitochondrial function determines the contractility of the heart.
Anna-Lena Beerlage +6 more
openalex +2 more sources
Thymoquinone Inhibits Escherichia coli ATP Synthase and Cell Growth. [PDF]
We examined the thymoquinone induced inhibition of purified F1 or membrane bound F1FO E. coli ATP synthase. Both purified F1 and membrane bound F1FO were completely inhibited by thymoquinone with no residual ATPase activity. The process of inhibition was
Zulfiqar Ahmad +2 more
doaj +1 more source
The mitochondrial electron transport chain (mETC) and F1Fo-ATP synthase are of central importance for energy and metabolism in eukaryotic cells. The Apicomplexa, important pathogens of humans causing diseases such as toxoplasmosis and malaria, depend on ...
Andrew E Maclean +6 more
doaj +1 more source

