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C F Louis

Publications and source records attributed to C F Louis.

119 records · Page 7Linked to original sources

The effects of deoxycholate and trypsin on the cross-linking of rabbit skeletal muscle sarcoplasmic reticulum proteins.

Dithiobis (succinimidyl propionate) has been used to cross-link sarcoplasmic reticulum microsome proteins. Although the 100,000 dalton calcium stimulated ATPase and the 60,000 dalton calcium-binding protein calsequestrin were readily cross-linked to form homopolymers, no heteropolymer formation between these two proteins were detected. The 90,000 dalton protein A1 which is always observed in our preparations appeared to preferrentially form dimers on cross-linking. When calsequestrin was solubilized using 0.1 mg deoxycholate/mg protein, this protein was not cross-linked even at dithiobis(succinimidyl propionate) concentrations ten times those used to cross-link this protein in the intact membrane. In a similar manner the deoxycholate-solubilized ATPase (0.5 mg deoxycholate/mg protein) was not cross-linked by dithiobis (succinimidyl propionate). These results suggest that the state of aggregation of the sarcoplasmic reticulum proteins may be modified when solubilized in detergents such as deoxycholate. When the 100,000 dalton ATPase polypeptide was cleaved with trypsin to two fragments with molecular weights of approximately 55,000, these could be readily cross-linked. The fragments were capable of forming polymers with either other 55,000 dalton fragments or with the 100,000 dalton ATPase. The 29,000 and 22,000 dalton fragments, produced by further tryptic cleavage of the 55,000 dalton fragments, were not cross-linked at dithiobis (succinimidyl propionate) concentrations which readily cross-linked the 55,000 dalton fragments. Thus tryptic cleavage of the ATPase to fragments smaller than 55,000 dalton altered associations made by the ATPase in the membrane.

Adenosine Triphosphatases↗

Effect of halothane on the rate of acid production, lactate production and pyruvate dehydrogenase activity of malignant hyperpyrexia human muscle.

The rates of acid production were compared in thin strips of muscle biopsy samples isolated from malignant hyperpyrexia and control vastus internus human muscle. Halothane doubled the rate of acid production by malignant hyperpyrexia susceptible muscle but had no effect on control samples. This increased rate of release of acid from muscle was not from lactate. In addition, the pyruvate dehydrogenase activity of both control and malignant hyperpyrexia muscle samples was not stimulated by halothane.

Acids↗

Lactoperoxidase-coupled iodination of cardiac sarcoplasmic reticulum proteins.

The peptide compositions of rabbit skeletal- and canine cardiac-muscle sarcoplasmic reticulum preparations have been compared by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulphate. The cardiac preparations contain many proteins in addition to the 105 000 dalton peptide which has been previously identified as the Ca2+ stimulated ATPase. Four peptide components iodinated in the presence of either free or Sepharose 4B-bound lactoperoxidase have molecular weights of 130 000 (component I), 105 000 (component II), 52 000 (component III) and 47 000 (component IV). Comparison of the labelling patterns in the presence of the detergent Triton X-100 suggests that components I, III and IV have part of their peptide internally located. Although part of component II is externally accessible to free lactoperoxidase, its iodination is decreased by Triton X-100. Iodination of phospholamban, the 22 000 dalton substrate for cyclic AMP-dependent protein kinase, was not observed under the conditions investigated.

Animals↗

The cross-linking of rabbit skeletal muscle sarcoplasmic reticulum protein.

Sarcoplasmic reticulum proteins have been cross-linked in situ with two reagents, the disulphide-bridged bifunctional imido ester, dimethyl-3,3'-dithiobispropionimidate dihydrochloride and the mild oxidant cupric phenanthroline. Analysis of proteins so cross-linked by electrophoresis on agarose/acrylamide gels reveals that a series of new polypeptides, up to a molecular weight of 900 000, are formed. These have molecular weights which are multiples of 100 000. Further analysis of samples by electrophoresis in a second dimensions containing a reducing agent revealed the monomeric polypeptides from which the cross-linked polypeptides were formed. With dimethyl 3,3'-dithiobispropionimidate dihydrochloride homopolymers of the Ca2+-stimulated ATPase, calsequestrin and/or calcium binding protein were formed. With cupric phenanthroline only the Ca2+-stimulated ATPase was involved in polymer formation. It has been confirmed on another gel system that these two proteins which are involved in Ca2+ binding are not cross-linked intermolecularly with this latter reagent. We conclude that the 100 000 dalton Ca2+-stimulated ATPase polypeptides are within 2 A of each other in the membrane while calsequestrin and/or calcium binding protein are within 11 A of each other. Although there appears to be no limit to the extent of cross-linking of any of these polypeptides there is not indication of heteropolymer associations between them.

Adenosine Triphosphatases↗

Calcium and magnesium contents of malignant hyperpyrexia-susceptible human muscle.

The calcium and magnesium contents of muscle obtained by muscle biopsy of patients referred for malignant hyperpyrexia screening were determined. The susceptibility to malignant hyperpyrexia was made on the basis of the halothane contracture test. No difference in cation concentrations was found between the normal and malignant hyperpyrexia-susceptible groups.

Adolescent↗

Protein-hydrocarbon interactions. Interactions of various proteins with pure decane.

1. Solutions of a number of proteins were subjected to gentle agitation in the presence of small quantities of decane. 2. Some of the protein was lost from solution and adsorbed on the surface of the emulsion formed; at the same time some of the decane was bound to the protein remaining in solution. 3. The two processes were found to be related and a mechanism is proposed to explain the relationship. 4. With lysozyme and ribonuclease, the protein in the aqueous phase of an emulsion exhibited normal enzymic activity, whereas the fraction adsorbed on the interface was much less active but recovered activity on desorption.

Adsorption↗

Protein-hydrocarbon interactions. Interactions of various proteins with decane in the presence of alcohols.

1. Solutions of proteins were subjected to gentle agitation in the presence of small quantities of decane containing different alcohols. 2. Some of the protein was lost from solution and adsorbed on the surface of the emulsion formed; at the same time some decane was bound to the protein remaining in solution. 3. Comparison of these results with those obtained with pure decane suggests that a mixed film of protein+alcohol is formed on the surface of the emulsion. 4. If the concentration of alcohol in decane is increased the amount of protein adsorbed on the emulsion is decreased. This phenomenon was used to compare the effect of different alcohols in disrupting the hydrophobic interactions between proteins and hydrocarbons.

Adsorption↗

Calcium-induced calcium release in sarcoplasmic reticulum vesicles purified from rabbit fast skeletal muscle.

Addition of small amounts of CaCl2 can induce calcium release from calcium-filled sarcoplasmic reticulum vesicles. The time of onset and rate of calcium release in the vesicular preparations, which occurs when ionized Ca2+ in the medium is increased from less than 1 microM to 3-5 microM, are considerably slower than in skinned muscle fiber preparations.

Adenosine Diphosphate↗