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M K Bennett

Publications and source records attributed to M K Bennett.

At least 73 records · Page 4Linked to original sources

Ranitidine increases the bioavailability of postprandial ethanol by the reduction of first pass metabolism.

Blood ethanol concentrations after separate oral dosing and intravenous infusion of ethanol (0.15 g/kg) were measured in 16 control subjects and 13 subjects treated with ranitidine. All subjects underwent routine upper gastrointestinal endoscopy. Peak blood ethanol concentrations, and area under the blood ethanol/time curve, were significantly higher in the ranitidine group after oral, but not intravenous, ethanol administration. The first pass metabolism, as calculated by the difference between the area under the curves, was significantly lower in the ranitidine group. In addition, all subjects withdrawn from ranitidine (n = 6) had a significant reduction in peak blood ethanol concentration and area under the curve after repeat dosing with oral ethanol. Both groups were well matched for age, sex, indications for endoscopy, findings at endoscopy, and gastric histology. These findings show that ranitidine increases the bioavailability of low dose ethanol and has possible short term forensic, and longterm physical implications for moderate drinkers who are taking the drug.

Administration, Oral↗

The natural history of nonalcoholic fatty liver: a follow-up study.

Nonalcohol-induced fatty liver is widely believed to be a benign condition with little or no risk of disease progression. There have been occasional reports of progression to cirrhosis but none in the absence of preexisting fibrosis on the index biopsy specimen even when co-existing hepatitis was present (steatohepatitis). From our histological database (1978 to 1985), we identified 161 patients with fatty liver seen at our institution and traced the case notes of 156. One hundred five patients were initially excluded as having an alcohol-induced cause, and the remaining 51 either were seen in the clinic (37) or had died, in which cases copies of their death certificates were obtained (14). A further 7 patients were excluded after clinic attendance gave evidence of alcohol excess and another 4 after review of their initial biopsy showed the presence of fibrosis or steatohepatitis. The apparent cause of the steatosis in the 40 included patients with strictly nonalcohol-induced pure fatty liver was obesity in 12, diabetes in 4 (1 obese patient), and cachexia associated with extrahepatic malignancy in 6. Four of the remaining 19 had serological evidence of an autoimmune disorder, but none of these had any clinical or histological features of autoimmune liver disease. Nine patients had evidence of hyperlipidemia, 3 of whom were also obese. At a median follow-up of 11 years (7 to 16), 12 of 26 living patients had abnormal results of liver blood tests and had repeat liver biopsies performed. None had progressed to steatohepatitis or cirrhosis; 1 obese patient had developed mild fibrosis 9.8 years after her index biopsy.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Protein-protein interactions contributing to the specificity of intracellular vesicular trafficking.

Intracellular vesicles destined to fuse with the plasma membrane and secrete their contents must have a mechanism for specifically interacting with the appropriate target membrane. Such a mechanism is now suggested by the demonstration of specific interaction between vesicular proteins and plasma membrane proteins. The vesicle-associated membrane proteins (VAMPs) 1 and 2 specifically bind the acceptor membrane proteins syntaxin 1A and 4 but not syntaxin 2 or 3. The binding site is within amino acids 194 to 267 of syntaxin 1A, and the approximate equilibrium dissociation constants is 4.7 x 10(-6) molar. These data suggest a physical basis for the specificity of intracellular vesicular transport.

Amino Acid Sequence↗

Specificity and regulation of a synaptic vesicle docking complex.

Synaptic vesicles are proposed to dock at the presynaptic plasma membrane through the interaction of two integral membrane proteins of synaptic vesicles, VAMP and synaptotagmin, and two plasma membrane proteins, syntaxin and SNAP-25. We have characterized the binding properties of these proteins and observed SNAP-25 potentiation of VAMP 2 binding to syntaxins 1a and 4 but not syntaxins 2 or 3. n-sec1, a neuron-specific syntaxin-binding protein, bound syntaxin with nanomolar affinity, forming a complex that is distinct from the previously identified 7S and 20S syntaxin-containing complexes. This suggests that syntaxin exists in at least three states: bound to n-sec1, in a 7S particle, and in a 20S particle. Recombinant n-sec1 inhibited VAMP or SNAP-25 binding to syntaxin. We propose that the specific associations of VAMP, SNAP-25, and syntaxin mediate vesicle docking and that a syntaxin/n-sec1 complex precedes and/or regulates formation of these complexes.

Amino Acid Sequence↗

Molecular correlates of synaptic vesicle docking and fusion.

The mechanisms responsible for neurotransmitter release at the synapse have been extensively studied using biochemical, genetic, and cell biological approaches. Several significant advances have recently contributed towards an improved understanding of the molecular details of both synaptic vesicle docking and fusion, and of the general process of vesicle-mediated membrane trafficking.

Animals↗

Expression of glutathione S-transferases in normal and malignant pancreas: an immunohistochemical study.

The glutathione S-transferases (GSTs) are a family of detoxification and metabolising enzymes, which have been linked with the susceptibility of tissues to environmental carcinogens and resistance of tumours to chemotherapy. Environmental carcinogens have been implicated in the pathogenesis of pancreatic carcinoma, which is also a tumour characterised by marked chemotherapeutic drug resistance. In this study 26 pancreatic adenocarcinoma and 12 normal pancreatic samples were examined immunohistochemically for expression of pi (acidic), alpha (basic), and mu (neutral) GST. Fourteen (54%) of the tumours expressed pi GST alone, two (8%) expressed both pi and alpha GST, and two (8%) showed immunoreactivity with alpha GST alone. In the normal pancreas the intralobular ducts and centroacinar cells expressed pi GST alone whereas the large ducts expressed both pi and alpha GST. The acinar cells showed immunoreactivity only with anti-alpha GST. Mu GST was not expressed by normal or malignant pancreas. Expression of pi GST by pancreatic carcinoma may be a marker of the malignant phenotype and be induced during neoplastic transformation. Alternatively it could possibly reflect cell of origin, suggesting that the tumour arises from the centroacinar cells or intralobular ducts, or both rather than the large ducts.

Adenocarcinoma↗

Post-infantile giant cell hepatitis: histological and immunohistochemical study.

AIM: To determine the composition of the inflammatory infiltrate and to check for the presence of cytomegalovirus (CMV) and Epstein-Barr virus (EBV) in nine cases of post-infantile giant cell hepatitis. METHODS: The clinical, serological, and histological features of the nine cases were reviewed. Immunohistochemistry was used on liver biopsy specimens from six cases to: (i) characterise the lymphocytic infiltrate; (ii) assess the monocyte/macrophage response; (iii) detect "activated" perisinusoidal cells; and (iv) detect CMV and EBV antigens. Electron microscopic examination was carried out in two cases. RESULTS: Four patients had serological features suggestive of autoimmune chronic active hepatitis; in the other five cases the aetiology was obscure. Two patients presented with neurological symptoms. Hepatitis resolved completely in one patient; two patients showed clinical improvement; and one remained stable. Cirrhosis developed in three patients, one of whom proceeded to liver transplantation, and three patients died. Portal inflammation was present in all cases and lymphocytic piecemeal necrosis in eight cases, but intra-acinar inflammation associated with hepatocyte necrosis was observed in only five cases. The inflammatory infiltrate was composed predominantly of T lymphocytes; an increase in monocyte/macrophage cells was also observed. Mallory bodies, often with associated neutrophilic infiltrate, were present in four cases, and bilirubinostasis was a feature in four cases. "Activated" perisinusoidal cells were present, especially in relation to areas of inflammation, necrosis, and fibrosis. There was severe fibrosis or cirrhosis in five cases. Paramyxoviral nucleocapsids were not seen in the two cases examined ultrastructurally. CONCLUSIONS: Post-infantile giant cell hepatitis should be viewed as a heterogeneous clinical and aetiological entity encompassing cases of hepatitis with extensive giant cell hepatocyte transformation.

Adult↗

Low-reflectivity periportal collar on hepatic ultrasound.

A low attenuation periportal collar is frequently found on computed tomography (CT) in association with a variety of liver diseases and other conditions (Lawson, T L, Thorsen, M K, Erikson, S J et al, Periportal halo: a CT sign of liver disease, Abdom. Imaging, 18, 42-46 (1993)). Abnormal periportal intensity has been reported on magnetic resonance imaging (MRI) in various hepatobiliary diseases. Transient low reflectivity periportal cuffing has recently been described and was presumed to be due to periportal lymphoedema associated with malignant lymphadenopathy. We report the finding of such bands in four patients with chronic hepatobiliary disease and present the associated histological findings.

Aged↗

A protein assembly-disassembly pathway in vitro that may correspond to sequential steps of synaptic vesicle docking, activation, and fusion.

The SNARE hypothesis holds that a transport vesicle chooses its target for fusion when a soluble NSF attachment protein (SNAP) receptor on the vesicle (v-SNARE) pairs with its cognate t-SNARE at the target membrane. Three synaptosomal membrane proteins have previously been identified: syntaxin, SNAP-25 (t-SNAREs), and vesicle-associated membrane protein (VAMP) (v-SNARE); all assemble with SNAPs and NSF into 20S fusion particles. We now report that in the absence of SNAP and NSF, these three SNAREs form a stable complex that can also bind synaptotagmin. Synaptotagmin is displaced by alpha-SNAP, suggesting that these two proteins share binding sites on the SNARE complex and implying that synaptotagmin operates as a "clamp" to prevent fusion from proceeding in the absence of a signal. The alpha-SNAP-SNARE complex can bind NSF, and NSF-dependent hydrolysis of ATP dissociates the complex, separating syntaxin, SNAP-25, and VAMP. ATP hydrolysis by NSF may provide motion to initiate bilayer fusion.

Adenosine Triphosphatases↗

The syntaxin family of vesicular transport receptors.

Syntaxins A and B are nervous system-specific proteins implicated in the docking of synaptic vesicles with the presynaptic plasma membrane. A family of syntaxin-related proteins from rat has been identified that shares 23%-84% amino acid identity. Each of the six syntaxins terminate with a carboxy-terminal hydrophobic domain that anchors the protein on the cytoplasmic surface of cellular membranes. The syntaxins display a broad tissue distribution and, when expressed in COS cells, are targeted to different subcellular compartments. Microinjection studies suggest that the nervous system-specific syntaxin 1A is important for calcium-regulated secretion from neuro-endocrine PC12 cells. These results indicate that the syntaxins are a family of receptors for intracellular transport vesicles and that each target membrane may be identified by a specific member of the syntaxin family.

Amino Acid Sequence↗

The molecular machinery for secretion is conserved from yeast to neurons.

A variety of approaches have been utilized to identify and characterize the molecules that mediate vesicular trafficking along the secretory pathway. Two approaches that have been particularly fruitful include the genetic dissection of the yeast secretory pathway and the biochemical characterization of proteins involved in the synaptic vesicle membrane trafficking in the mammalian nerve terminal. The recent convergence of these approaches suggests that common mechanisms may underlie a wide variety of vesicle-mediated transport steps. We discuss the results that support this possibility and propose a model for synaptic vesicle docking and fusion that incorporates evolutionarily conserved elements that may be part of a constitutive fusion machinery and specialized elements that may mediate regulatory events that are specific to the process of neurotransmitter release.

Animals↗

The activity of the metabolic form of hepatic phosphatidate phosphohydrolase correlates with the severity of alcoholic fatty liver in human beings.

Increased esterification of fatty acids to triglyceride is common to most of the mechanisms proposed to explain the causation of alcoholic fatty liver. However, it is unclear whether this is caused by increased substrate supply or whether direct stimulation of the enzymes of the esterification pathway occurs after excessive alcohol intake. The rate-limiting step in triglyceride synthesis is catalyzed by the enzyme phosphatidate phosphohydrolase, which is present in the cytosol and microsomes and is sensitive to inhibition by N-ethylmaleimide. This enzyme is physically distinct from a second form of phosphatidate phosphohydrolase that is located predominantly in the plasma membrane, is insensitive to N-ethylmaleimide inhibition and has a putative role in cell-signaling. We have investigated whether the activity of the N-ethylmaleimide-sensitive ("metabolic") form of phosphatidate phosphohydrolase is increased in patients with alcoholic liver disease and whether any increased activity correlates with the severity of steatosis. N-ethylmaleimide-sensitive and -insensitive phosphatidate phosphohydrolase activities were measured in needle liver biopsy specimens from 42 alcoholic patients and 6 patients with primary biliary cirrhosis and in wedge biopsy specimens from 6 normal patients undergoing routine cholecystectomy. Steatosis was "scored" on coded slides from 0 to 3. N-ethylmaleimide-sensitive activity was higher in alcoholic biopsy specimens scoring 3 (3.25 +/- 0.4 units/mg protein, n = 10) than in those scoring either 0 (1.21 +/- 0.2, n = 14) or 1 to 2 (1.58 +/- 0.2, n = 18), and it was also higher than in biopsy specimens from normal and primary biliary cirrhosis patients (1.65 +/- 0.3, n = 12; p < 0.0001, analysis of variance).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Plasma membrane form of phosphatidate phosphohydrolase: a possible role in signal transduction during liver fibrogenesis.

1. Several growth factors important in liver regeneration and fibrosis stimulate phospholipase D in plasma membranes via a receptor/G-protein-coupled mechanism resulting in hydrolysis of phosphatidylcholine to phosphatidate. Phosphatidate can be further hydrolysed to diacylglycerol by phosphatidate phosphohydrolase. Phosphatidate and diacylglycerol can act as 'second-messengers' and regulation of phosphatidate phosphohydrolase activity could control the balance between them. 2. A form of phosphatidate phosphohydrolase, located in the plasma membrane and insensitive to inhibition by N-ethylmaleimide, has recently been identified that is distinct from the 'metabolic' form, which is present in the cytosol and microsomes and is sensitive to N-ethylmaleimide. 3. We have investigated the hypothesis that the balance between regeneration and fibrosis is, in part, determined by the activity of plasma membrane phosphatidate phosphohydrolase through its effect on the phosphatidate/diacylglycerol ratio. N-Ethylmaleimide-insensitive and -sensitive phosphatidate phosphohydrolase activities were measured in three hepatic conditions characterized by regeneration and/or fibrosis: alcoholic liver disease in humans (regeneration and fibrosis) and rat livers after either acute CCl-4-induced injury (regeneration) or common bile duct ligation (fibrosis). 4. In patients with alcoholic liver disease, N-ethylmaleimide-insensitive phosphatidate phosphohydrolase activity was higher in cirrhotic biopsies (5.82 +/- 0.3 nmol of Pi min-1 mg-1 of protein, n = 19) than in non-cirrhotic biopsies (2.17 +/- 0.2, n = 23) or in wedge biopsies from healthy subjects undergoing routine cholecystectomy (2.16 +/- 0.5, n = 6).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Casein kinase II phosphorylates the synaptic vesicle protein p65.

p65 (synaptotagmin), an abundant synaptic vesicle protein, has been implicated in the processes of vesicle docking and fusion. To characterize further the properties of this important neuronal protein, we have investigated its phosphorylation in vitro. Immunoprecipitation of p65 results in coprecipitation of a protein kinase that phosphorylates p65 as well as syntaxin, a plasma membrane protein that interacts with p65. p65 is phosphorylated on a threonine residue (Thr-128) within the cytoplasmic domain near the transmembrane region. The coprecipitating protein kinase was identified as casein kinase II based on its catalytic properties, the sequence surrounding Thr-128, and Western blot analysis of the anti-p65 immunoprecipitates. Affinity chromatography utilizing bacterially expressed fragments of p65 demonstrated that casein kinase II interacts with a domain of p65 distinct from the phosphorylation site. In a synaptic vesicle fraction, the phosphorylation of p65 is stimulated by sphingosine and by detergent solubilization, suggesting that p65 phosphorylation may be subject to regulatory processes.

Amino Acid Sequence↗