299 results on '"Parker, Mark D."'
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2. The therapeutic importance of acid-base balance
3. NBCe1: An Electrogenic Na+ Bicarbonate Cotransporter, in Epithelia
4. Left Ventricular Systolic Dysfunction in NBCe1-B/C-Knockout Mice.
5. Contribution of Monocarboxylate Transporter 6 to the Pharmacokinetics and Pharmacodynamics of Bumetanide in Mice
6. NH3/NH4+ allosterically activates SLC4A11 by causing an acidic shift in the intracellular pK that governs H+(OH-) conductance.
7. Supplementary Figure S4 from Lorazepam Stimulates IL6 Production and Is Associated with Poor Survival Outcomes in Pancreatic Cancer
8. Supplementary Table S11 from Lorazepam Stimulates IL6 Production and Is Associated with Poor Survival Outcomes in Pancreatic Cancer
9. Data from Lorazepam Stimulates IL6 Production and Is Associated with Poor Survival Outcomes in Pancreatic Cancer
10. NBCe1: An Electrogenic Na+ Bicarbonate Cotransporter, in Epithelia
11. Lorazepam Stimulates IL6 Production and Is Associated with Poor Survival Outcomes in Pancreatic Cancer
12. NBCe1-B/C-knockout mice exhibit an impaired respiratory response and an enhanced renal response to metabolic acidosis
13. Expression and anion transport studies on the human erythrocyte anion exchange protein (AE1, band 3) in the yeast Saccharomyces cerevisiae
14. Loss of vision caused by an alkaline shift in the pH-dependence of the corneal H+/OH−-conducting membrane protein Slc4a11
15. Distinguishing among HCO3 −, CO3 =, and H+ as Substrates of Proteins That Appear To Be “Bicarbonate” Transporters
16. Corneal dystrophy mutations R125H and R804H disable SLC4A11 by altering the extracellular pH dependence of the intracellular pK that governs H+(OH−) transport
17. The SLC4 family of bicarbonate [formula omitted] transporters
18. Splice Cassette II of Na+,HCO3− Cotransporter NBCn1 (slc4a7) Interacts with Calcineurin A: IMPLICATIONS FOR TRANSPORTER ACTIVITY AND INTRACELLULAR pH CONTROL DURING RAT ARTERY CONTRACTIONS
19. Firefighter Work Duration Influences the Extent of Acute Kidney Injury
20. Na+–H+ exchanger-1 (NHE1) regulation in kidney proximal tubule
21. Expression, purification, electron microscopy, N-glycosylation mutagenesis and molecular modeling of human P2X4 and Dictyostelium discoideum P2XA
22. Lipotoxic disruption of NHE1 interaction with PI(4,5)P2 expedites proximal tubule apoptosis
23. Using fluorometry and ion-sensitive microelectrodes to study the functional expression of heterologously-expressed ion channels and transporters in Xenopus oocytes
24. Relative CO2/NH3 Permeabilities of Human RhAG, RhBG and RhCG
25. Revisiting the Role of Ser982 Phosphorylation in Stoichiometry Shift of the Electrogenic Na+/qHCO3− Cotransporter NBCe1
26. Characterization of Human SLC4A10 as an Electroneutral Na/HCO3 Cotransporter (NBCn2) with Cl– Self-exchange Activity
27. The [Na.sup.+]-dependent chloride-bicarbonate exchanger SLC4A8 mediates an electroneutral [Na.sup.+] reabsorption process in the renal cortical collecting ducts of mice
28. The molecular identity of the characean OH− transporter: a candidate related to the SLC4 family of animal pH regulators
29. Corneal dystrophy mutations R125H and R804H disable SLC4A11 by altering the extracellular pH dependence of the intracellular pK that governs H+(OH-) transport.
30. The human NBCe1-A mutant R881C, associated with proximal renal tubular acidosis, retains function but is mistargeted in polarized renal epithelia
31. Effects of optional structural elements, including two alternative amino termini and a new splicing cassette IV, on the function of the sodium–bicarbonate cotransporter NBCn1 (SLC4A7)
32. Distinguishing among HCO3−, CO3=, and H+as Substrates of Proteins That Appear To Be “Bicarbonate” Transporters
33. Effect of Human Carbonic Anhydrase II on the Activity of the Human Electrogenic Na/HCO3 Cotransporter NBCe1-A in Xenopus Oocytes
34. HCO3−-independent conductance with a mutant Na+/HCO3− cotransporter (SLC4A4) in a case of proximal renal tubular acidosis with hypokalaemic paralysis
35. Sodium-Coupled Bicarbonate Transporters
36. Contributors
37. Kidney physiology and pathophysiology during heat stress and the modification by exercise, dehydration, heat acclimation and aging
38. Veverimer: an advance in base therapy for metabolic acidosis
39. Soda stream modifies airway fluid
40. pH dependence of the Slc4a11-mediated H+ conductance is influenced by intracellular lysine residues and modified by disease-linked mutations
41. Multiple acid‐base and electrolyte disturbances upregulate NBCn1, NBCn2, IRBIT and L‐IRBIT in the mTAL
42. Reply to Beunders et al.
43. Hyperthermia and Dehydration During Physical Work in the Heat Both Contribute to the Risk of Acute Kidney Injury
44. Both hyperthermia and dehydration during physical work in the heat contribute to the risk of acute kidney injury
45. Anion Exchanger 1 Interacts with Nephrin in Podocytes
46. The molecular identity of the characean OH− transporter: a candidate related to the SLC4 family of animal pH regulators.
47. A conductive pathway generated from fragments of the human red cell anion exchanger AE1
48. The disruption of the third extracellular loop of the red cell anion exchanger AE1 does not affect electroneutral Cl −/HCO 3− exchange activity
49. Monocarboxylate Transporter 6-Mediated Interactions with Prostaglandin F2α: In Vitro and In Vivo Evidence Utilizing a Knockout Mouse Model
50. The Potential for Renal Injury Elicited by Physical Work in the Heat
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