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Biomedical subjects

R E Larson

Publications and source records attributed to R E Larson.

At least 19 recordsLinked to original sources

Biochemical and immunological characterization of p190-calmodulin complex from vertebrate brain: a novel calmodulin-binding myosin.

We have recently identified a novel 190-kD calmodulin-binding protein (p190) associated with the actin-based cytoskeleton from mammalian brain (Larson, R. E., D. E. Pitta, and J. A. Ferro. 1988. Braz. J. Med. Biol. Res. 21:213-217; Larson, R. E., F. S. Espindola, and E. M. Espreafico. 1990. J. Neurochem. 54:1288-1294). These studies indicated that p190 is a phosphoprotein substrate for calmodulin-dependent kinase II and has calcium- and calmodulin-stimulated MgATPase activity. We now have biochemical and immunological evidence that this protein is a novel calmodulin-binding myosin whose properties include (a) Ca2+ dependent action activation of its Mg-ATPase activity, which seems to be mediated by Ca2+ binding directly to calmodulin(s) associated with p190 (maximal activation by actin requires the presence of Ca2+ and is further augmented by addition of exogenous calmodulin); (b) ATP-sensitive cross-linking of skeletal muscle F-actin, as demonstrated by the low-speed actin sedimentation assay; and (c) cross-reactivity with mAbs specific for epitopes in the head of brush border myosin I. We also show that p190 has properties distinct from conventional brain myosin II and brush border myosin I, including (a) separation of p190 from brain myosin II by gel filtration on a Sephacryl S-500 column; (b) lack by p190 of K(+)-stimulated EDTA ATPase activity characteristic of most myosins; (c) lack of immunological cross-reactivity of polyclonal antibodies which recognize p190 and brain myosin II, respectively; (d) lack of immunological recognition of p190 by mAbs against an epitope in the tail region of brush border myosin I; and (e) distinctive proteolytic susceptibility to calpain. A survey of rat tissues by immunoblotting indicated that p190 is expressed predominantly in the adult forebrain and cerebellum, and could be detected in embryos 11 d post coitus. Immunocytochemical studies showed p190 to be present in the perikarya and dendritic extensions of Purkinje cells of the cerebellum.

Adenosine Triphosphatases

Primary structure and cellular localization of chicken brain myosin-V (p190), an unconventional myosin with calmodulin light chains.

Recent biochemical studies of p190, a calmodulin (CM)-binding protein purified from vertebrate brain, have demonstrated that this protein, purified as a complex with bound CM, shares a number of properties with myosins (Espindola, F. S., E. M. Espreafico, M. V. Coelho, A. R. Martins, F. R. C. Costa, M. S. Mooseker, and R. E. Larson. 1992. J. Cell Biol. 118:359-368). To determine whether or not p190 was a member of the myosin family of proteins, a set of overlapping cDNAs encoding the full-length protein sequence of chicken brain p190 was isolated and sequenced. Verification that the deduced primary structure was that of p190 was demonstrated through microsequence analysis of a cyanogen bromide peptide generated from chick brain p190. The deduced primary structure of chicken brain p190 revealed that this 1,830-amino acid (aa) 212,509-D) protein is a member of a novel structural class of unconventional myosins that includes the gene products encoded by the dilute locus of mouse and the MYO2 gene of Saccharomyces cerevisiae. We have named the p190-CM complex "myosin-V" based on the results of a detailed sequence comparison of the head domains of 29 myosin heavy chains (hc), which has revealed that this myosin, based on head structure, is the fifth of six distinct structural classes of myosin to be described thus far. Like the presumed products of the mouse dilute and yeast MYO2 genes, the head domain of chicken myosin-V hc (aa 1-764) is linked to a "neck" domain (aa 765-909) consisting of six tandem repeats of an approximately 23-aa "IQ-motif." All known myosins contain at least one such motif at their head-tail junctions; these IQ-motifs may function as calmodulin or light chain binding sites. The tail domain of chicken myosin-V consists of an initial 511 aa predicted to form several segments of coiled-coil alpha helix followed by a terminal 410-aa globular domain (aa, 1,421-1,830). Interestingly, a portion of the tail domain (aa, 1,094-1,830) shares 58% amino acid sequence identity with a 723-aa protein from mouse brain reported to be a glutamic acid decarboxylase. The neck region of chicken myosin-V, which contains the IQ-motifs, was demonstrated to contain the binding sites for CM by analyzing CM binding to bacterially expressed fusion proteins containing the head, neck, and tail domains. Immunolocalization of myosin-V in brain and in cultured cells revealed an unusual distribution for this myosin in both neurons and nonneuronal cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence

Increased paracellular permeability in intrahepatic cholestasis induced by carmustine (BCNU) in rats.

Carmustine [i.e., 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU)] is a drug with cholestatic potency both in experimental animals and in humans. To study the mechanisms involved in the development of the hepatic lesions, early changes in liver function in rats pretreated with the drug were investigated. Dosages and sampling times that did not result in hepatocellular injury, as indicated by release of marker enzymes, were applied. In isolated perfused livers from pretreated rats, bile flow and maximal secretion rate of taurocholate were decreased. An increase in biliary [14C]sucrose clearance suggested enhanced permeability of the bile tract and was correlated with increased inorganic phosphate concentration in bile. To assess the contribution of paracellular and transcellular pathways of sucrose, [14C]sucrose access into bile was analyzed by biliary off-kinetics after omission of the radioactive marker from the perfusion medium. An improved method was developed to quantitate the permeability of the bile tract by applying the classical flow equation to the paracellular portion of biliary sucrose clearance. With this method it was shown that pretreatment of rats with BCNU resulted in an increase in both diffusion and convection of paracellular sucrose from perfusate into bile. Accordingly, the fast access of horseradish peroxidase from perfusate into bile was facilitated in isolated perfused livers of BCNU-treated rats. The results indicate that an increase in paracellular permeability is an early alteration that may contribute to the development of hepatotoxic lesions caused by BCNU. It is shown that inert solute clearance can be used to assess paracellular permeability if the paracellular fraction is determined.

1-Naphthylisothiocyanate

Gastroduodenal artery-duodenal fistula: a complication of continuous floxuridine (FUDR) infusion into the gastroduodenal artery.

This case report describes a patient who for 31 months has received regional intrahepatic chemotherapy from a continuous infusion pump and who developed a gastroduodenal artery-duodenal fistula, a previously unreported complication of regional infusion therapy. The patient presented with signs and symptoms of upper gastrointestinal bleeding. The clinical evaluation and management are described. An angiogram was performed through the auxillary septum to identify the source of bleeding. The possible etiologic factors in this case are discussed. We believe that this complication will continue to be rare, but health care providers should be aware of its presentation and its preferred method of evaluation and management.

Adenocarcinoma

BCNU-induced quantitative and qualitative changes in hepatic cytochrome P-450 can be correlated with cholestasis.

Male Sprague-Dawley rats were given single i.p. injections of 1,3-bis(2-chloroethyl)-1-Nitrosourea (BCNU) to investigate changes in hepatic microsomal cytochrome P-450 content and metabolic activity. On day 14 after treatment (20 mg/kg), cytochrome P-450 content had decreased by approximately 25% and ethylmorphine N-demethylase activity (nmol product/nmol P-450/min) had decreased by 36%. In contrast, ethylmorphine O-deethylase and 7-ethoxycoumarin O-deethylase activities were not significantly decreased by BCNU treatment. Hepatic delta-aminolevulinic acid synthetase activity was only 60% of control values, and microsomal heme oxygenase activity was slightly but not statistically elevated. Cytochrome P-450 content in control and BCNU-treated rats increased in a similar manner after phenobarbital or beta-naphthoflavone induction. Electrophoretic analysis of cytochrome P-450 proteins isolated from hepatic endoplasmic reticular membranes of treated and control rats suggested that alterations in these proteins occurred in BCNU-treated rats. These changes in cytochrome P-450 content and activity are very similar to those reported in isolated systems exposed to bile acids or in rats with experimentally produced cholestasis. BCNU has been shown to produce cholestasis, which precedes its effects on microsomal mixed-function oxygenase activity. Thus, the delayed effects of BCNU on microsomal drug metabolism are probably secondary to its interference with bile formation.

Animals

Calmodulin-binding proteins and calcium/calmodulin-regulated enzyme activities associated with brain actomyosin.

Calcium- and calmodulin-regulated ATPase and protein kinase activities are shown to be strongly associated with brain actomyosin. Similar enzymatic activities and an invariable polypeptide profile on sodium dodecyl sulfate-polyacrylamide gel electrophoresis were obtained for brain actomyosin taken through a solubilization-precipitation cycle (1.0-0.1 M KCl), or precipitated from buffers containing 1% Triton X-100 or 10 mM EDTA and 10 mM EGTA. These data suggest a specific complex of brain actomyosin with a protein kinase similar to calmodulin-dependent kinase II, a 190-kDa calmodulin-binding protein (P190), and a calmodulin-like polypeptide. P190 was the major substrate for endogenous calcium-dependent phosphorylation. 125I-Calmodulin overlay technique revealed four major calmodulin-binding polypeptides associated with brain actomyosin: 50- and 60-kDa subunits of the calmodulin-dependent kinase II, P190, and a high molecular weight polypeptide which is probably fodrin. A fraction enriched in P190 had Ca2(+)- and calmodulin-stimulated MgATPase activity, but not myosin-like K-EDTA ATPase activity. The lack of immunological cross-reactivity between brain myosin heavy chain and P190 confirmed that they are distinct molecules.

Actomyosin

Cholestatic effect of carmustine in rats.

A single i.p. dose of 20 mg/kg of carmustine [1,3-bis-(2-chloroethyl)-1-nitrosourea; BCNU] caused intrahepatic cholestasis in rats within 48 hr of administration. Cholestasis was characterized by a selective reduction of the bile salt independent fraction of bile flow. Increased plasma K+ and decreased plasma Na+ concentrations, consistent with this effect, were observed. Because bile: plasma osmolality and biliary bile salt concentrations were elevated, increased permeability to bile salts and other osmotically active solutes between bile and plasma is unlikely. Bile salt excretion was normal despite the reduced bile flow because biliary bile salt concentration was increased. In contrast, the treated rats were unable to concentrate bromosulfophthalein in bile before, during and after the onset of cholestasis. Because no reduction in hepatic perfusion was observed in vivo in BCNU-treated rats, reduced xenobiotic organic anion excretion may be a selective effect of the drug. The cholestatic effects of BCNU appear to be different from either alpha-naphthylisothiocyanate or estrogenic steroids.

Animals

Effect of 1,3-bis-(2-chloroethyl)-1-nitrosourea on cholephilic dye metabolism and excretion in anesthetized rats.

The maximal biliary excretion of sulfobromophthalein (BSP) during constant i.v. infusion (2.5 mg/min/kg) was inhibited 45% in pentobarbital-anesthetized Sprague-Dawley rats, 48 hr after treatment with 1,3-bis-(2-chloroethyl)-1-nitrosourea (BCNU; 20 mg/kg i.p.). Thirty-six to 48 hr after treatment, BCNU also inhibited the biliary excretion of an i.v. bolus of indocyanine green (24 mg/kg) by 75 to 85%. This suggested that inhibition of glutathione-S-transferase activity was not the main site of action of BCNU in its interference with cholephilic dye excretion. Indeed, it was found that conjugation of BSP with reduced glutathione (GSH) mediated by liver cytosol isolated from BCNU-pretreated rats was unaltered. In addition, BCNU did not deplete hepatic GSH. On the contrary, the hepatic concentration of GSH was increased by 60% 48 hr after treatment with BCNU. Thus, the ability of BCNU to block BSP excretion is probably not due to decreased conjugation of BSP with GSH. Inhibition of excretion under the saturating conditions of constant infusion strongly suggests an effect on canalicular excretion.

Anesthesia

Cardiovascular performance in anesthetized rats pretreated with 1,3-bis(2-chloroethyl)-1-Nitrosourea (BCNU).

Cardiovascular function was studied in anesthetized rats at weekly intervals following their pretreatment with single i.p. doses of BCNU (20 mg/kg). Over the first two weeks post-treatment the predominant effects were on total peripheral resistance. Femoral artery diastolic and mean pressures increased with a corresponding decrease in pulse pressure. Thereafter, apparent cardiac effects were also manifest by decreases in systolic and mean pressures, and possibly heartrate. Diastolic and pulse pressures also declined in this second phase. The water content of caudal artery segments from these rats decreased from 82.3 +/- 0.6% in controls to 78.4 +/- 0.6% (P less than 0.05) at 4 weeks post treatment. The total collagen content of these segments had increased 35% over controls as early as 2 weeks after BCNU while total protein content remained unchanged. Whole body responsiveness to the pressor effects of bolus injections of norepinephrine was significantly diminished only at the 4-week sampling time. The cardiovascular toxicity of BCNU may be a complex of direct effects of the drug on vascular endothelia and secondary effects associated with the cholestasis which develops over a similar time course.

Anesthesia

The human androgen receptor: complementary deoxyribonucleic acid cloning, sequence analysis and gene expression in prostate.

Androgenic hormones mediate their effects on male sex differentiation and development through a high affinity receptor protein. We report here cloning of the complete coding sequence of the human androgen receptor (hAR). By sequence homology hAR is a member of the nuclear receptor family, with closest sequence identity to the progesterone, mineralocorticoid, and glucocorticoid receptors. Regions of highest homology include the DNA-binding domain and a small region within the hydrophobic ligand-binding domain. Comparison of the deduced 919 amino acid sequence of hAR (98,999 mol wt) to the 902 amino acid sequence of rat AR (98,227 mol wt) reveals identical sequences in the DNA- and hormone-binding domains, with an overall homology of 85%. In human prostate, the major androgen receptor mRNA species is 10 kilobases while a less abundant mRNA is approximately 7 kilobases. Rabbit polyclonal antibodies were raised against a synthetic peptide from the N-terminal region of hAR. Immunocytochemical analysis of human prostate tissue demonstrated that AR is localized predominantly in nuclei of glandular epithelial cells.

Amino Acid Sequence

A novel 190 kDa calmodulin-binding protein associated with brain actomyosin.

We present evidence for a novel calmodulin-binding protein associated with Ca2+-sensitive, non-muscle actomyosin from rabbit brain. Gel filtration chromatography of brain actomyosin and SDS-PAGE analysis of resulting fractions revealed the presence of a stable complex of a 190 kDa polypeptide and calmodulin. Furthermore, brain actomyosin was retained on a column of conjugated calmodulin-Sepharose 4B and eluted by 6 M urea in the presence of Ca2+. Further elution with 6M urea plus EGTA released the 190 kDa polypeptide from the column. These results show that the 190 kDa polypeptide forms a tight complex with calmodulin and that this complex associates with brain actomyosin in a Ca2+-independent manner.

Actomyosin

Sexually transmitted urogenital diseases.

Patients with sexually transmitted diseases (STDs) frequently present for care to the Emergency Department. Some of the more common STDs are increasing in number despite public health efforts to control their spread. Relatively simple diagnostic modalities for several of the more common STDs are presented. In addition, the most current treatment regimens for each STD discussed are described in detail.

Emergencies

Calcium/calmodulin regulation of ATPase activity and endogenous phosphorylation of mammalian brain actomyosin.

Rabbit brain actomyosin showed several fold stimulation of the MgATPase activity by Ca2+ alone and by Ca2+/calmodulin. The calmodulin-binding drug, fluphenazine, abolished the stimulated activity. In the presence of Ca2+, exogenous calmodulin had a biphasic effect on ATPase activity at low concentrations (less than 0.15 microM) and activated the ATPase activity by 60-70% at about 1 microM. Tropomyosin-troponin complex from skeletal muscle did not stimulate the ATPase activity of brain actomyosin, but conferred Ca2+ sensitivity to a skeletal muscle myosin/brain actomyosin mixture. These results indicate the presence of myosin-linked, calmodulin-dependent, Ca2+-regulatory system for brain actomyosin. Heavy and light chains of brain myosin were found to be rapidly phosphorylated by endogenous Ca2+-dependent protein kinase(s). Ca2+-independent phosphorylation of one of the light chains was also observed.

Actomyosin

Perforation of the gall bladder following blunt abdominal trauma.

A 66-year-old man presented after having been involved in a motor vehicle accident. He was not wearing his seatbelt, and his vehicle had a deformed steering wheel after the incident. In the emergency department, his only complaint was mild right lower quadrant abdominal pain without signs of rebound or guarding. His laboratory and radiologic evaluations were unremarkable and he was observed in the intensive care unit. Nine hours after the accident, he developed an acute abdomen; exploratory laparotomy revealed a perforation of the gall bladder. Gall bladder injuries secondary to blunt trauma are infrequent events.

Abdomen, Acute

Simultaneous quantification of ethylmorphine O-deethylase and N-demethylase activity by high-performance liquid chromatography.

The N-demethylation and O-deethylation of ethylmorphine by cytochrome P-450 are simultaneously measured using high-performance liquid chromatography. All the metabolites and the substrate are extracted from the enzymatic incubation mixture with isopropanol-methylene chloride (20:80) containing 6.0 micrograms/ml codeine sulfate as an internal standard. Separation of the compounds is achieved on a C18 reversed-phase column using a mobile phase of 1% acetic acid--acetonitrile (85:15) with 1-hexanesulfonic acid as a counter-ion. Total run time is 12 min at a flow-rate of 2.0 ml/min and 144 bar. Assay of ethylmorphine N-demethylase and O-deethylase activities in rat liver microsomes revealed close agreement between this method and conventional ones. N-Demethylation was found to greatly exceed O-deethylation in liver microsomes from either control or phenobarbital-treated rats confirming results from other laboratories. This method can also be used to measure the N- and O-demethylation of codeine.

Animals

Isolation and purification of actomyosin ATPase from mammalian brain.

A simple technique for the isolation and purification of mammalian brain actomyosin, based on extraction of whole brains in low ionic-strength buffer, is described. The final preparation of brain actomyosin is obtained in good yield, has relatively high K+-EDTA and Ca2+-ATPase activities, and is substantially free of other ATPases and tubulin. The preparation is useful for initial enzymatic studies and/or as an enrichment step toward purification of the individual protein components. The Mg2+-ATPase and K+-EDTA ATPase activities are strongly inhibited by the sulfhydryl blocking reagent, pHMB. Interaction between the actin and myosin components can be demonstrated. Brain actomyosin had a distinct electrophoretic profile and enzymatic activity when compared with smooth muscle actomyosin from the aorta.

Actins

Rapid glucose-dependent increases in phosphatidic acid and phosphoinositides in rat pancreatic islets.

Glucose effects on islet phospholipids were examined during direct incubation or after 3 days of 32P prelabeling in primary culture. In both cases, glucose increased the 32P content of phosphatidic acid (PA), phosphatidylinositol (PI), and polyphosphoinositides (PPI). Glucose-induced increases in PA, PI, and PPI in the culture-prelabeling experiments were evident within 1 min, dose related, and reflective of increases in phospholipid mass, which was confirmed in direct incubations by measurement of PI phosphorus. Thus, in addition to increasing PI-PPI hydrolysis, glucose increases de novo phospholipid synthesis in pancreatic islets. The latter may result from enhanced glycolysis and substrate availability for PA-PI-PPI synthesis, since glyceraldehyde and pyruvic acid also increased PI levels. Our findings raise the possibility that increases in PA, PI, and PPI synthesis could serve as a mechanism to enhance the generation of intracellular mediators, which are purported to regulate insulin secretion.

Animals

Phosphatidylinositol hydrolysis and phosphatidylinositol 4',5-diphosphate hydrolysis are separable responses during secretagogue action in the rat pancreas.

Rat pancreatic fragments and acinar preparations were incubated in vitro to characterize further the changes in phosphoinositide metabolism that occur during secretagogue action. Two distinct responses were discernible. The first response, most notably involving a decrease in phosphatidylinositol content, was (a) observed at lower carbachol concentrations in dose-response studies, (b) inhibited by incubation in Ca2+-free media containing 1 mM EGTA, (c) associated with increases in inositol monophosphate production, and (d) provoked by all tissue secretagogues (carbachol, cholecystokinin, secretin, insulin, dibutyryl cAMP and the ionophore A23187), regardless of whether their mechanism of action primarily involved Ca2+ mobilization or cAMP generation. This decrease in phosphatidylinositol content was at least partly due to phospholipase C (and/or D) activation, as evidenced by the increase in inositol monophosphate. The second response, most notably involving markedly increased incorporation of 32PO4 into phosphatidic acid and phosphatidylinositol, was (a) observed at higher carbachol concentrations, (b) not influenced by incubation in Ca2+-free media containing 1 mM EGTA, and (c) associated with increases in inositol triphosphate production. This 32PO4 turnover response was probably largely the result of phospholipase C-mediated hydrolysis of phosphatidylinositol 4',5'-diphosphate, which, as shown previously, also occurs at higher carbachol concentrations and is insensitive to comparable EGTA-induced Ca2+ deficiency. This phosphatidylinositol 4',5'-diphosphate hydrolysis response was only observed in the action of agents (carbachol and cholecystokinin) which mobilize Ca2+ via activation of cell surface receptors. The present results indicate that phosphatidylinositol and phosphatidylinositol 4',5'-diphosphate hydrolysis are truly separable responses to secretagogues acting in the rat pancreas. Furthermore, phosphatidylinositol 4',5'-diphosphate, rather than phosphatidylinositol hydrolysis is more likely to be associated with receptor activation and Ca2+ mobilization.

Animals