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G Bot

Publications and source records attributed to G Bot.

At least 55 records · Page 3Linked to original sources

Interaction of ligands in phosphorylase A as monitored by crosslinking and enzymatic modifications: synergism of glucose and caffeine manifested in the exposure of N-terminal segment.

1. Glycogen, caffeine and glucose dissociate phosphorylase a tetramer to dimers with half-maximum effect at 0.16%, 1.1 and 71 mM concentration, respectively, as monitored by crosslinking with dimethyl suberimidate at 18 degrees C. 2. The above ligands increase the rate of dephosphorylation and tryptic digestion of phosphorylase alpha at 18 degrees C in the same way with half-maximum effect at 0.04%, 0.1 and 9 mM concentration, respectively. 3. Caffeine and glucose acted synergistically in tetramer dissociation as well as in the enzymic modifications. 4. The alpha-anomer of D-glucose was twice as effective as its mutarotational equilibrium solution.

Animals↗

Regulation by phosphorylase kinase of phosphoprotein phosphatase activity: simultaneous control of protein phosphorylation and dephosphorylation in skeletal muscle.

Phosphorylase kinase from rabbit skeletal muscle inhibited the dephosphorylation of phosphorylase a by phosphoprotein phosphatase. Phosphorylation (activation) of phosphorylase kinase by cyclic AMP-dependent protein kinase greatly increased this inhibitory effect. Thus, phosphoprotein phosphatase is inhibited by phosphorylase kinase in a reversible manner (Gergely et al. (1976) Biochim. Biophys. Acta 429 809-816). In this paper the regulation by phosphorylase kinase at phosphoprotein phosphatase activity in different fractions of muscle extract and in the presence of various ligands has been investigated. The presence of phosphorylase kinase also affected the ligand control of phosphatase activity. Phosphorylase kinase almost cancelled the inhibitory effect of AMP but hardly influenced the activating effect of glucose, glucose 6-phosphate and caffeine. Calmodulin, glycogen and phosphorylase b (effectors of phosphorylase kinase) did not influence the inhibitory effect of phosphorylase kinase. Fractions of muscle extract also demonstrated the regulatory role of phosphorylase kinase. These fractions contained considerable amounts of phosphorylase kinase and phosphatase. Phosphatase activity was inhibited by phosphorylation reactions triggered by Mg++ and ATP. Heat-stable inhibitors were absent from these fractions, therefore the transient inhibition of phosphatase could be attributed to the phosphorylation of endogenous phosphorylase kinase. The introduction between phosphorylase kinase and phosphatase resulted in a loss of AMP sensitivity, i.e. AMP did not inhibit the activity of phosphatase in those fractions. Our results imply that the phosphorylation of phosphorylase kinase is equally important both in the formation of enzymatically active phosphorylase a and in the inhibition of dephosphorylation of phosphorylase a. The consequence of these two effects is the elevated level of phosphorylase a.

Adenosine Monophosphate↗

Structural changes in glycogen phosphorylase as revealed by cross-linking with bifunctional diimidates: phospho-dephospho hybrid and phosphorylase a.

The technique of cross-linking with a series of bifunctional diimidates (maximal effective length ranging from 3.7 to 14.5 A), followed by dodecyl sulfate gel electrophoresis, was applied to compare the subunit contact areas of phosphorylases b, ab (the phospho-dephospho hybrid), and a and to study the structure and ligand-induced structural changes in phosphorylases ab and a. Similarly to phosphorylase b, the nearest cross-linkable lysyl-NH2 groups are about 3.7 A apart across the intradimer subunit interface (contact m) and about 8 A apart across the interdimer interface (contact d) in both phosphorylases ab and a. The activation of phosphorylase b induced by phosphorylation and that elicited by AMP binding are distinguishable at both contacts m and d. Phosphorylases ab and a tend to form tetramers whose structures are not identical, but AMP renders phosphorylase ab similar to phosphorylase a. Glucose, caffeine, and glycogen are able to dissociate both a and ab tetramers to dimers, whereas glucose 6-phosphate can only dissociate phosphorylase ab. The structure around the nucleotide site of phosphorylase a is rigid so that ligands binding here, such as AMP, ATP, ADP, inosine monophosphate, and glucose 6-phosphate, fail to influence the cross-link pattern. In control, in phosphorylase ab contact m is markedly affected by AMP, ATP, and glucose 1-phosphate; hence, in this respect phosphorylase ab resembles phosphorylase b.

Adenine Nucleotides↗

[Fausse route].

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Bicuspid↗

Regulation of phosphorylase-phosphatase from skeletal muscle by phosphorylation of a regulator protein.

The inhibitory effect of a heat-stable regulator protein from skeletal muscle on the activity of phosphorylase-phosphatase (EC 3.1.3.17) was studied. The regulator protein was shown to be both phosphorylated and dephosphorylated in vivo as well as in vitro. The incorporation of phosphate into the regulator protein increased, while dephosphorylation decreased the ability of the protein to inhibit phosphatase activity. Our results suggest that the reversible phosphorylation of the regulator protein plays an essential role in the regulation of phosphorylase-phosphatase activity.

Animals↗

Studies on heart isophosphorylases by means of immunotitration.

Anti-phosphorylase produced in cocks against phosphorylase from rabbit skeletal muscle inhibits phosphorylases isolated from mammalian heart and skeletal muscle to different degrees. On the basis of the differential inhibition observed an immunotitration method was developed to determine isophosphorylases in crude heart extracts. It was found that the ratio of isophosphorylases is different for every mammalian species investigated and characteristic for the given species.

Animals↗