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Biomedical subjects

G Navon

Publications and source records attributed to G Navon.

At least 109 records · Page 6Linked to original sources

The circular polarization of fluorescence of the ionophore lasalocid A(X-537A) and some of its metal complexes.

The conformation of the ionophore lasalocid A (X-537A) and its complexes with metal ions was probed by the circular polarization of their luminescence (CPL). The CPL of each complex in methanol was found to be different than when in n-hexane. Furthermore, the different metal ion complexes investigated had a different CPL spectrum in each solvent. These findings indicate wide variability in the conformation of the complexes depending on the metal ion and the solvent. From the spectral behaviour of the CPL it was concluded that at least some of the complexes exist in more than one form in solution. A comparison between the CPL and CD spectra indicates a change in the conformation of the ionophore in the vicinity of the salicylate chromophore upon electronic excitation.

Anti-Bacterial Agents↗

31P nuclear magnetic resonance studies of Ehrlich ascites tumor cells.

High-resolution 31P nuclear magnetic resonance spectra at 145.7 MHz are reported for intact Ehrlich ascites tumor cells and their perchloric acid extracts. In the extracts it was possible to assign resonances to fructose 1,6-bisphosphates, dihydroxyacetone phosphate, ATP, ADP, AMP, Pi, NAD+, phosphorylcholine, glycero-3-phosphorylcholine, glycero-3-phosphorylethanolamine, and glyceraldehyde 3-phosphate from their chemical shifts, pH behavior, and spin couplings. All but glyceraldehyde 3-phosphate were observed and assigned in the intact cells. It was possible to show that the hydrolysis of fructose 1,6-bisphosphate to dihydroxyacetone phosphate and glyceraldehyde 3-phosphate is in equilibrium, that the dihydroxyacetone phosphate leads to glyceraldehyde 3-phosphate reaction is not, and that in the intact cell without added oxygen or glucose the reaction 2ADP in equilibrium ATP + AMP is in equilibrium. From the known pH dependence of the Pi resonance it was possible to show that during aerobic or anerobic glycolysis the difference between intracellular and extracellular pH values was less than 0.2 pH units. Upon oxygenation the ATP concentration increased while the ADP concentration fell. Introducing deoxyglucose depleted the ATP and resulted in an AMP signal and one from deoxyglucose 6-phosphate, which is transported and phosphorylated but not catabolized.

Adenine Nucleotides↗

High-resolution 31P nuclear magnetic resonance studies of metabolism in aerobic Escherichia coli cells.

31P nuclear magnetic resonance spectra at 145.7 MHZ were obtained of concentrated suspensions of E. coli cells. The position of the Pi resonance was used to determine the pH, and in most experiments it was possible to distinguish the intracellular (pHin) and extracellular (pHex) values. During respiration pHin approached 7.55, while pHex varied from 6.0 to 8.0. With succinate as a carbon source and in a N2 environment, pHin - pHex. Upon addition of glucose, pHin greater than pHex. In the presence of an ATPase (adenosinetriphosphatase; ATP phosphohydrolase; EC 3.6.1.3) inhibitor dicyclohexylcarbodiimide, pHin remained equal to pHex even in the presence of glucose. In other experiments, oxygenation brought pHin above pHex even in the presence of dicyclohexylcarbodiimide. These experiments are consistent with Mitchell's hypothesis that, first, delta pH can be created by the reversal of the ATPase reaction and, second, that protons are pumped outward during respiration. In addition to Pi, about 10 more resonances were resolved, several of which were assigned to different phosphate metabolites.

Adenosine Triphosphatases↗

X-ray absorption studies of halide binding to carbonic anhydrase.

X-ray absorption measurements of bovine carbonic anhydrase B have been made at the the Stanford Synchrotron Radiation Project with a spectrometer operating in the fluorescence mode. Differences in absorption at and beyond the zinc K-edge near 9664 ev have been observed upon the addition of bromide or iodide. The additional absorption in k space, out to k approximately 7 A-1, obtained upon the addition of iodide has been compared with the absorption in this region of a ZnI2 sample. The similarities between these absorptions lead to the conclusion that the zinc-iodide distance in the protein is 2.65 +/-0.06 A; it is known to be 2.62 A in ZnI2. This shows that the iodide binds directly to the zinc in the protein.

Animals↗

Nuclear-magnetic-resonance studies of carboxypeptidase B. Binding of inhibitors to the manganese enzyme.

Longitudinal and transverse proton relaxation rates of water in solutions of porcine manganese carboxypeptidase B have been measured in the presence of various competitive inhibitors by pulse nuclear magnetic resonance (NMR) spectrometry. The inhibition constant of Mn-carboxypeptidase activity by L-argininic acid and acetyl-L-arginine was in agreement with the equilibrium constant obtained by the NMR method, indicating similar and specific binding of the inhibitors to the active site of the manganese enzyme. Titration of the water boound to the metal ion revealed the presence of one water molecular which could be displaced from the sphere of the managenese ion by various inhibitors. The structural features of the inhibitors required for this displacement as well as the mode of interaction is described.

Animals↗

Temperature and requency dependence of solvent proton relaxation rates in solutions of manganese(II) carbonic anhydrase.

Longitudinal and transverse proton relaxation rates of water in solutions of manganese(II) bovine carbonic anhydrase have been measured by pulsed nuclear magnetic resonance spectrometry as a function of temperature (2-35 degrees), frequently (5-100 MHz) and pH. The pH dependence of the longitudinal relaxation rate was fitted to a sigmoidal curve with a pK value at 7.8, while the esterase activity of the manganese(II) enzyme in the hydrolysis of p-nitrophenyl acetate revealed an inflection point at pK = 8.2. The hydration number of manganese(II) carbonic anhydrase could be derived using either the frequency dependence of T1p or the T1p/T2p ratio at only one (high) frequency. Both treatments are in agreement with a model in which one water molecule is bound to the metal at high pH. At low pH the relaxation data imply that no-H20 exists in the first coordination sphere of the manganese ion. The various parameters which are responsible for the proton relaxation mechanisms have been evaluated and are compared to other manganese(II) enzyme systems. The pH dependence of the binding constant of manganese to apocarbonic anhydrase is also reported.

Animals↗

Application of the carbonic anhydrase inhibitory effect of furosemide to the study of furosemide release from two of its diuretic derivatives.

Bovine carbonic anhydrase B (CA) inhibitory effect of furosemide was established in two pH values at 26 degress. FFBu [N-furfuryl-4-chloro-5-(butoxymethylsulfamoyl)anthranilic acid] and FFMe [N-furfuryl-4-chloro-5-(methoxy-methylsulfamoyl)anthranilic acid], two of its alkoxymethyl derivatives, did not exert any CA inhibitory effect at those conditions but were found to inhibit the CA activity after their hydrolysis, which yielded the furosemide molecule. The CA inhibitory effect of furosemide was utilized for determining the kinetic rate constants for the hydrolysis of FFBu and FFMe at various pH and temperature levels. The hydrolysis rate constants of FFBu and FFMe were pH-independent in the pH range tested, and the temperature dependence for FFBu yielded an activation energy of 18 kcal/mol. It is pointed out that the hydrolysis rates of FFBu may be important for the explanation of its possible delayed diuretic effect.

Carbonic Anhydrase Inhibitors↗