276 results on '"Imamura, Hiromi"'
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2. The SGLT2 inhibitor empagliflozin improves cardiac energy status via mitochondrial ATP production in diabetic mice
3. Author Correction: Toll‐like receptor 9 protects non‐immune cells from stress by modulating mitochondrial ATP synthesis through the inhibition of SERCA2
4. NAD+ consumption by PARP1 in response to DNA damage triggers metabolic shift critical for damaged cell survival
5. Shear stress activates mitochondrial oxidative phosphorylation by reducing plasma membrane cholesterol in vascular endothelial cells
6. Visualization of intracellular ATP dynamics in different nephron segments under pathophysiological conditions using the kidney slice culture system
7. Teacher Certification Renewal System: An Analysis Based on a Nation-Wide Survey of Japanese Teachers of English
8. Monitoring and mathematical modeling of mitochondrial ATP in myotubes at single-cell level reveals two distinct population with different kinetics
9. A molecular triage process mediated by RING finger protein 126 and BCL2-associated athanogene 6 regulates degradation of G0/G1 switch gene 2
10. A Trace Amount of Galactose, a Major Component of Milk Sugar, Allows Maturation of Glycoproteins during Sugar Starvation
11. Rotation Scheme of $V_{1}-Motor$ Is Different from That of $F_{1} -Motor$
12. Crystal Structure of a Central Stalk Subunit C and Reversible Association/Dissociation of Vacuole-Type ATPase
13. Evidence for Rotation of V 1 -ATPase
14. Intracellular ATP levels in mouse cortical excitatory neurons varies with sleep–wake states
15. Visualization of NO3−/NO2− Dynamics in Living Cells by Fluorescence Resonance Energy Transfer (FRET) Imaging Employing a Rhizobial Two-component Regulatory System
16. PPARα-Mediated Positive-Feedback Loop Contributes to Cold Exposure Memory
17. The SGLT2 inhibitor empagliflozin improves cardiac energy status via mitochondrial ATP production in diabetic mice
18. The Plasma Membrane Calcium Pump in Pancreatic Cancer Cells Exhibiting the Warburg Effect Relies on Glycolytic ATP
19. Mitochondrial dysfunction in primary human fibroblasts triggers an adaptive cell survival program that requires AMPK-α
20. ATP Imaging in Xenopus laevis Oocytes
21. Glucose-stimulated Single Pancreatic Islets Sustain Increased Cytosolic ATP Levels during Initial Ca2+ Influx and Subsequent Ca2+ Oscillations
22. Role of PFKFB3-Driven Glycolysis in Vessel Sprouting
23. Evaluation of intramitochondrial ATP levels identifies G0/G1 switch gene 2 as a positive regulator of oxidative phosphorylation
24. Assessing Actual Contribution of IF1, Inhibitor of Mitochondrial FoF1, to ATP Homeostasis, Cell Growth, Mitochondrial Morphology, and Cell Viability
25. Principal Role of the Arginine Finger in Rotary Catalysis of F1-ATPase
26. Visualization of ATP Levels inside Single Living Cells with Fluorescence Resonance Energy Transfer-Based Genetically Encoded Indicators
27. High and stable ATP levels prevent aberrant intracellular protein aggregation in yeast
28. Correlation between the Conformational States of F₁-ATPase as Determined from Its Crystal Structure and Single-Molecule Rotation
29. Leucine Zipper EF Hand-containing Transmembrane Protein 1 (Letm1) and Uncoupling Proteins 2 and 3 (UCP2/3) Contribute to Two Distinct Mitochondrial Ca2+ Uptake Pathways
30. High and stable ATP levels prevent aberrant intracellular protein aggregation in yeast
31. Lactate is an energy substrate for rodent cortical neurons and enhances their firing activity
32. ATP Hydrolysis and Synthesis of a Rotary Motor V-ATPase from Thermus thermophilus
33. Structure of a central stalk subunit F of prokaryotic V‐type ATPase/synthase from Thermus thermophilus
34. Rotation scheme of [V.sub.1]-motor is different from that of [F.sub.1]-motor
35. Reconstitution in Vitro of V1 Complex of Thermus thermophilus V-ATPase Revealed That ATP Binding to the A Subunit Is Crucial for V1 Formation
36. Evidence for rotation of [V.sub.1]-ATPase
37. Toll‐like receptor 9 protects non‐immune cells from stress by modulating mitochondrial ATP synthesis through the inhibition of SERCA2
38. Changes in Cytosolic ATP Levels and Intracellular Morphology during Bacteria-Induced Hypersensitive Cell Death as Revealed by Real-Time Fluorescence Microscopy Imaging
39. Single-cell dynamics of pannexin-1-facilitated programmed ATP loss during apoptosis
40. Spatiotemporal ATP Dynamics during AKI Predict Renal Prognosis
41. AMP-activated protein kinase and adenylate kinase prevent the ATP catastrophe and cytotoxic protein aggregation
42. Single-cell dynamics of pannexin-1-facilitated programmed ATP loss during apoptosis
43. The F Subunit of Thermus thermophilus V1-ATPase Promotes ATPase Activity but Is Not Necessary for Rotation
44. A Transient Rise in Free Mg2+ Ions Released from ATP-Mg Hydrolysis Contributes to Mitotic Chromosome Condensation
45. Subunit Arrangement in V-ATPase from Thermus thermophilus
46. Rotation of the Proteolipid Ring in the V-ATPase
47. Crystal Structures of 4-α-Glucanotransferase from Thermococcus litoralis and Its Complex with an Inhibitor
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49. Reliable imaging of ATP in living budding and fission yeast
50. Shear stress augments mitochondrial ATP generation that triggers ATP release and Ca2+signaling in vascular endothelial cells
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