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D S Pierce

Publications and source records attributed to D S Pierce.

8 recordsLinked to original sources

A peptide substrate-based affinity label blocks protein kinase C-catalyzed ATP hydrolysis and peptide-substrate phosphorylation.

Studies focused on the cAMP-dependent protein kinase (PKA) have led to the identification of conserved active-site residues involved in Ser/Thr protein kinase catalysis and have ruled out a role for Cys residues in the catalytic mechanism. Protein kinase C (PKC) is a Ser/Thr protein kinase isozyme family. We recently reported that the peptide-substrate analog N-biotinyl-Arg-Arg-Arg-Cys-Leu-Arg-Arg-Leu (N-biotinyl-RRRCLRRL) spontaneously forms intermolecular disulfide bridges with the active-site region of PKC isozymes concomitant with inactivation of histone kinase catalysis. Because Cys does not participate in PKC catalysis, one can analyze the active-site topology of PKC by examining which catalytic reactions are sterically hindered when the inactivator peptide is tethered to Cys in the active-site region of the enzyme. In this report, we show that N-biotinyl-RRRCLRRL inactivates the bulky PKC-catalyzed histone phosphorylation reaction, the comparatively less bulky PKC-catalyzed phosphorylation of a series of octapeptide, hexapeptide, and pentapeptide substrates, the intramolecular autophosphorylation reaction of PKC, and the least bulky PKC-catalyzed reaction, ATP hydrolysis, in a dithiothreitol-sensitive manner with comparable efficacy. Our results provide evidence that the covalent linkage of N-biotinyl-RRRCLRRL to the active-site region of PKC sterically hinders PKC catalysis, even in the absence of peptide and protein substrates.

Adenosine Triphosphate↗

Irreversible inactivation of protein kinase C by glutathione.

The tripeptide glutathione (GSH) is the predominant low molecular weight thiol reductant in mammalian cells. In this report, we show that at concentrations at which GSH is typically present in the intracellular milieu, GSH and the oxidized GSH derivatives GSH disulfide (GSSG) and glutathione sulfonate each irreversibly inactivate up to 100% of the activity of purified Ca2+- and phosphatidylserine (PS)-dependent protein kinase C (PKC) isozymes in a concentration-dependent manner by a novel nonredox mechanism that requires neither glutathiolation of PKC nor the reduction, formation, or isomerization of disulfide bridges within PKC. Our evidence for a nonredox mechanism of PKC inactivation can be summarized as follows. GSSG antagonized the Ca2+- and PS-dependent activity of purified rat brain PKC with the same efficacy (IC50 = 3 mM) whether or not the reductant dithiothreitol was present. Glutathione sulfonate, which is distinguished from GSSG and GSH by its inability to undergo disulfide/thiol exchange reactions, was as effective as GSSG in antagonizing Ca2+- and PS-dependent PKC catalysis. The irreversibility of the inactivation mechanism was indicated by the stability of the inactivated form of PKC to dilution and extensive dialysis. The inactivation mechanism did not involve the nonspecific phenomena of denaturation and aggregation of PKC because it obeyed pseudo-first order kinetics and because the hinge region of PKC-alpha remained a preferential target of tryptic attack following GSH inactivation. The selectivity of GSH in the inactivation of PKC was also indicated by the lack of effect of the tripeptides Tyr-Gly-Gly and Gly-Ala-Gly on the activity of PKC. Furthermore, GSH antagonism of the Ser/Thr kinase casein kinase 2 was by comparison weak (<25%). Inactivation of PKC-alpha was not accompanied by covalent modification of the isozyme by GSH or other irreversible binding interactions between PKC-alpha and the tripeptide, but it was associated with an increase in the susceptibility of PKC-alpha to trypsinolysis. Treatment of cultured rat fibroblast and human breast cancer cell lines with N-acetylcysteine resulted in a substantial loss of Ca2+- and PS- dependent PKC activity in the cells within 30 min. These results suggest that GSH exerts negative regulation over cellular PKC isozymes that may be lost when oxidative stress depletes the cellular GSH pool.

Acetylcysteine↗

Familial bilateral carpal tunnel syndrome: report of two families.

Cases of familial carpal tunnel syndrome without other associated conditions are rare. We report two families in which multiple members had bilateral carpal tunnel syndromes. The pattern was consistent with autosomal dominant inheritance. Electrophysiologic studies were performed on nine of the 15 patients, and they demonstrated bilateral pathology of the median nerves at the wrist in all but one patient, without evidence for subclinical, generalized peripheral neuropathy. Quantitative sensory testing was performed in two cases, and it corroborated the absence of peripheral neuropathy. Five of the six patients who underwent carpal tunnel release improved after surgery.

Adolescent↗

Electrodiagnosis in orthopedic surgery.

The electromyogram is gaining importance as a diagnostic tool in the clinical practice of orthopedic surgery. Its uses in the area of kinesiology will undoubtedly be further developed in the future in ways which can be standardized and made available to the practicing orthopedist to improve the results of muscle and tendon surgery and the design of surgical procedures. It should be noted that in either case electromyograms can be utilized to give a great deal of valuable information concerning the competence of the motor unit, the functioning mass of muscle fibers and the phasic relationships of muscle groups. Its value in diagnosis, however, depends directly upon the care with which it is performed, the patience of the electromyographer in sampling an adequate quantity of muscle mass to be certain that nothing has been overlooked and, above all, the specificity of the orthopedic surgeon in delineating exactly what information he wishes to obtain, so that the performance of the electromyogram can be confirmed and aimed directly at producing answers to the questions he is asking. In this regard, the electromyogram is in no sense a screening test or a catchall which the orthopedic surgeon can substitute for a careful clinical evaluation.

Action Potentials↗

Electrodiagnosis.

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Electrodiagnosis↗