Search PubMedSearch

Biomedical subjects

K Miles

Publications and source records attributed to K Miles.

12 recordsLinked to original sources

Phosphorylation of the cardiac isoform of calsequestrin in cultured rat myotubes and rat skeletal muscle.

Calsequestrin is a high-capacity Ca(2+)-binding protein and a major constituent of the sarcoplasmic reticulum (SR) of both skeletal and cardiac muscle. Two isoforms of calsequestrin, cardiac and skeletal muscle forms, have been described which are products of separate genes. Purified forms of the two prototypical calsequestrin isoforms, dog cardiac and rabbit fast-twitch skeletal muscle calsequestrins, serve as excellent substrates for casein kinase II and are phosphorylated on distinct sites (Cala, S.E. and Jones, L.R. (1991) J. Biol. Chem 266, 391-398). Dog cardiac calsequestrin is phosphorylated at a 50 to 100-fold greater rate than is rabbit skeletal muscle calsequestrin, and only the dog cardiac isoform contains endogenous Pi on casein kinase II phosphorylation sites. In this study, we identified and examined both calsequestrin isoforms in rat muscle cultures and homogenates to demonstrate that the cardiac isoform of calsequestrin in rat skeletal muscle was phosphorylated in vivo on sites which are phosphorylated by casein kinase II in vitro. Phosphorylation of rat skeletal muscle calsequestrin was not detected. In tissue homogenates, cardiac and skeletal muscle calsequestrin isoforms were both found to be prominent substrates for endogenous casein kinase II activity with cardiac calsequestrin the preferred substrate. In addition, these studies revealed that the cardiac isoform of calsequestrin was the predominant form expressed in skeletal muscle of fetal rats and cultured myotubes.

Animals

Rapid-bolus contrast-enhanced dynamic computed tomography in acute pancreatitis: a prospective study.

The purpose of this prospective study was to determine the clinicopathological significance of necrotic areas demonstrated by rapid-bolus contrast-enhanced computed tomography (CT) in patients with biochemically predicted severe pancreatitis. Although CT necrosis occurred significantly more frequently in patients with clinically severe (ten of 12) compared with mild (seven of 20) pancreatitis (P less than 0.025), seven of 17 (41 per cent) patients with CT necrosis developed clinically mild pancreatitis and six of ten (60 per cent) patients with clinically severe pancreatitis and CT necrosis recovered with conservative management. The site and extent of CT necrosis did not correlate with disease severity. Fine-needle aspiration cytology, operative and post-mortem findings and endoscopic retrograde cholangiopancreatography examinations all strongly suggested that CT necrosis represents true pancreatic necrosis. We conclude that the finding of CT necrosis is not in itself an indication for operative intervention, but that rapid-bolus contrast-enhanced dynamic CT greatly facilitates the planning and execution of surgical therapy.

Acute Disease

The use of D-Dimer assay by enzyme immunoassay and latex agglutination techniques in the diagnosis of deep vein thrombosis.

The blood of 107 patients undergoing venography for suspected deep vein thrombosis (DVT) was tested for D-Dimers using enzyme immunoassay (EIA) and two latex agglutination techniques. D-Dimer levels by EIA were raised in 88% of patients with proven DVT. However, levels detected with the two agglutination tests were much less sensitive, being raised in only 43% patients with DVT. A more sensitive rapid screening test is needed to provide a useful non-invasive test for the exclusion of DVT.

Adolescent

The histologic evaluation of new attachment in periodontally diseased human roots treated with tetracycline-hydrochloride and fibronectin.

The purpose of this study was to determine how the treatment of human tooth roots with tetracycline-HCl and fibronectin during periodontal surgery influences the attachment of the gingiva to the root surface. Mucoperiosteal flap surgery was performed on 22 teeth with periodontal disease. Teeth were assigned to three groups. Group one received surgery with degranulation and root planing. Group two received surgery with treatment of roots with tetracycline-HCl. Group three received surgery with treatment of roots with tetracycline-HCl and fibronectin. At 90 days, block sections were taken and teeth, gingiva, alveolar bone, and periodontal ligament were evaluated histologically. Controls healed with a long junctional epithelial attachment. Tetracycline and tetracycline with fibronectin groups demonstrated some reattachment, but only within the notches placed in the root at the original level of the bone. There was a trend for greater connective tissue attachment following tetracycline-HCl treatment of roots. The additional application of fibronectin to tetracycline treated roots appeared to partially negate the enhanced connective tissue attachment observed with tetracycline treatment alone.

Acid Etching, Dental

Calcitonin gene-related peptide regulates phosphorylation of the nicotinic acetylcholine receptor in rat myotubes.

The nicotinic acetylcholine receptor (AChR) is a substrate for at least three different protein kinases, and phosphorylation of the receptor has been shown to increase its rate of desensitization. However, the first messengers that regulate AChR phosphorylation have not yet been identified. This study demonstrates that calcitonin gene-related peptide (CGRP), a neuropeptide present in the axon terminals of the neuromuscular junction, regulates phosphorylation of the AChR in primary rat myotube cultures. CGRP, in the presence of the phosphodiesterase inhibitor Ro 20-1724, increased phosphorylation of the alpha and delta subunits of the AChR. CGRP-induced phosphorylation of the AChR had the same subunit specificity and temporal sequence as previously observed using forskolin or cAMP analogs. Phosphorylation of the AChR in the presence of CGRP appears to be mediated by CGRP-stimulated increases in cAMP levels leading to activation of cAMP-dependent protein kinase. The present results, taken together with the recent demonstration that CGRP increases the rate of AChR desensitization in mouse myotubes, suggest that CGRP may play a physiological role as a regulator of AChR desensitization by modulating AChR phosphorylation at the neuromuscular junction.

3',5'-Cyclic-AMP Phosphodiesterases

Protein phosphorylation of nicotinic acetylcholine receptors.

The nicotinic acetylcholine receptor (nAcChR) is a ligand-gated ion channel found in the postsynaptic membranes of electric organs, at the neuromuscular junction, and at nicotinic cholinergic synapses of the mammalian central and peripheral nervous system. The nAcChR from Torpedo electric organ and mammalian muscle is the most well-characterized neurotransmitter receptor in biology. It has been shown to be comprised of five homologous (two identicle) protein subunits (alpha 2 beta gamma delta) that form both the ion channel and the neurotransmitter receptor. The nAcChR has been purified and reconstituted into lipid vesicles with retention of ion channel function and the primary structure of all four protein subunits has been determined. Protein phosphorylation is a major posttranslational modification known to regulate protein function. The Torpedo nAcChR was first shown to be regulated by phosphorylation by the discovery that postsynaptic membranes contain protein kinases that phosphorylate the nAcChR. Phosphorylation of the nAcChR has since been shown to be regulated by the cAMP-dependent protein kinase, protein kinase C, and a tyrosine-specific protein kinase. Phosphorylation of the nAcChR by cAMP-dependent protein kinase has been shown to increase the rate of nAcChR desensitization, the process by which the nAcChR becomes inactivated in the continued presence of agonist. In cultured muscle cells, phosphorylation of the nAcChR has been shown to be regulated by cAMP-dependent protein kinase, a Ca2+-sensitive protein kinase, and a tyrosine-specific protein kinase. Stimulation of the cAMP-dependent protein kinase in muscle also increases the rate of nAcChR desensitization and correlates well with the increase in nAcChR phosphorylation. The AcChR represents a model system for how receptors and ion channels are regulated by second messengers and protein phosphorylation.

Amino Acid Sequence

Regulation of nicotinic acetylcholine receptor phosphorylation in rat myotubes by forskolin and cAMP.

The nicotinic acetylcholine receptor (AcChoR) from rat myotubes prelabeled in culture with [32P]orthophosphate was isolated by acetylcholine affinity chromatography followed by immunoaffinity chromatography. Under basal conditions, the nicotinic AcChoR was shown to be phosphorylated in situ on the beta and delta subunits. Regulation of AcChoR phosphorylation by cAMP-dependent protein kinase was explored by the addition of forskolin or cAMP analogues to prelabeled cell cultures. Forskolin, an activator of adenylate cyclase, stimulated the phosphorylation of the delta subunit 20-fold over basal phosphorylation and induced phosphorylation of the alpha subunit. The effect of forskolin was dose dependent with a half-maximal response at 8 microM in the presence of 35 microM Ro 20-1724, a phosphodiesterase inhibitor. Stimulation of delta subunit phosphorylation was almost maximal within 5 min, whereas stimulation of alpha subunit phosphorylation was not maximal until 45 min after forskolin treatment. Stimulation of AcChoR phosphorylation by 8-benzylthioadenosine 3',5'-cyclic monophosphate was identical to that obtained by forskolin. Two-dimensional thermolytic phosphopeptide maps of the delta subunit revealed a single major phosphopeptide. These results correlate closely with the observed effects of forskolin on AcChoR desensitization in muscle and suggest that cAMP-dependent phosphorylation of the delta subunit increases the rate of AcChoR desensitization in rat myotubes.

Animals

Type C RNA virus proteins: lack of binding specificity to host cell chromosomal DNA in vitro.

Through the use of two different DNA-protein reconstitution methods, we examined the potential role of type C RNA tumor virus proteins as putative regulatory agents in the control of virus expression. Rauscher murine leukemia virus, purified from chronically infected rat cell cultures, was iodinated in vitro with [125I], and dissociated in a nondetergent high-ionic-strength urea-containing buffer. The chemically separated [125I]-labeled viral polypetides were reconstituted with purified DNA by affinity column chromatography and by gradient dialysis renaturation. In both instances, no detectable amount of radioactivity specifically bound to double-stranded DNA of any origin. This observation was in contrast to the binding behavior of identically prepared and radiolabeled, nonhistone chromosomal proteins purified from rat cell nuclei. This finding may rule out, in eukaryotic cells, a well-described prokarytoic regulatory mechanism for the control of integrated viral gene expression.

Animals

Clinical use of plasma renin assays.

The use of plasma renin assays in clinical practice is reviewed and experience with an assay for plasma renin activity (PRA) is reported. In normal subjects, 10am ambulant PRA was significantly related to plasma angiotensin II levels but not related to daily urine sodium exretion in these subjects consuming normal diets. PRA was suppressed in patients with mineralocorticoid hypertension and in a small proportion of patients with essential hypertension. Very high values were observed in patients with untreated primary adrenal insufficiency, treatment of which resulted in a prompt fall of PRA to normal. PRA was usually normal in adrenalectomised patients and those with chronic adrenal insufficiency receiving satisfactory steroid replacement therapy. It is concluded that provided standardised conditions are used for the collection and assay, PRA is helpful in the assessment of hypokalaemic hypertension as well as in the early detection and management of patients with primary adrenal insufficiency or related conditions of salt wasting.

Adolescent

Adrenal venography and sampling in the diagnosis and treatment of primary aldosteronism.

Adrenal venography and adrenal venous blood sampling for aldosterone and cortisol estimations have been attempted in eight patients with primary aldosteronism. The techniques accurately predicted the location of the aldosterone secreting tumour in all six patients in whom an adrenal vein cannulation was possible. The techniques are useful in the surgical management of solitary adrenal adenomas and are important in the choice of optimal therapy for the variety of disorders presenting as primary aldosteronism.

Adenoma