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Biomedical subjects

M L Chapman

Publications and source records attributed to M L Chapman.

At least 19 recordsLinked to original sources

GYGD pore motifs in neighbouring potassium channel subunits interact to determine ion selectivity.

Cells maintain a negative resting membrane potential through the constitutive activity of background K+ channels. A novel multigene family of such K+ channels has recently been identified. A unique characteristic of these K+ channels is the presence of two homologous, subunit-like domains, each containing a pore-forming region. Sequence co-variations in the GYGD signature motifs of the two pore regions suggested an interaction between neighbouring pore domains. Mutations of the GYGD motif in the rat drk1 (Kv2.1) K+ channel showed that the tyrosine (Y) position was important for K+ selectivity and single channel conductance, whereas the aspartate (D) position was a critical determinant of open state stability. Tandem constructs engineered to mimic the GYGx-GxGD pattern seen in two-domain K+ channels delineated a co-operative intersubunit interaction between the Y and D positions, which determined ion selectivity, conductance and gating. In the bacterial KcsA K+ channel crystal structure, the equivalent aspartate residue (D80) does not directly interact with permeating K+ ions. However, the data presented here show that the D position is able to fine-tune ion selectivity through a functional interaction with the Y position in the neighbouring subunit. These data indicate a physiological basis for the extensive sequence variation seen in the GYGD motifs of two-domain K+ channels. It is suggested that a cell can precisely regulate its resting membrane potential by selectively expressing a complement of two-domain K+ channels.

Amino Acid Motifs↗

Activation-dependent subconductance levels in the drk1 K channel suggest a subunit basis for ion permeation and gating.

Ion permeation and channel opening are two fundamental properties of ion channels, the molecular bases of which are poorly understood. Channels can exist in two permeability states, open and closed. The relative amount of time a channel spends in the open conformation depends on the state of activation. In voltage-gated ion channels, activation involves movement of a charged voltage sensor, which is required for channel opening. Single-channel recordings of drk1 K channels expressed in Xenopus oocytes suggested that intermediate current levels (sublevels) may be associated with transitions between the closed and open states. Because K channels are formed by four identical subunits, each contributing to the lining of the pore, it was hypothesized that these sublevels resulted from heteromeric pore conformations. A formal model based on this hypothesis predicted that sublevels should be more frequently observed in partially activated channels, in which some but not all subunits have undergone voltage-dependent conformational changes required for channel opening. Experiments using the drk1 K channel, as well as drk1 channels with mutations in the pore and in the voltage sensor, showed that the probability of visiting a sublevel correlated with voltage- and time-dependent changes in activation. A subunit basis is proposed for channel opening and permeation in which these processes are coupled.

Animals↗

Long-term neurochemical and behavioral effects induced by acute chlorpyrifos treatment.

A single dose of the organophosphate insecticide O,O'-diethyl-O-3,5,6- trichloro-2-pyridylphosphorothioate [chlorpyrifos (CPF), 279 mg/kg, SC] caused extensive inhibition of cortical and striatal cholinesterase (ChE) activity in adult rats at 2 (94-96%), 4 (82-83%), and 6 (58-60%) weeks after treatment. These persistent changes in ChE activity were concomitant with reductions in muscarinic receptor binding sites in cortex (34, 33, and 18% reduction in Bmax) and striatum (48, 40, and 23% reduction in Bmax) at 2, 4, and 6 weeks after exposure. Neither ChE activities nor muscarinic receptor densities were different from control levels at 12 weeks after exposure. CPF treatment caused a reduction in locomotor activity for the first 2 days after treatment, after which basal activity levels were not different from controls. CPF-treated rats showed higher activity relative to controls, however, following challenge with scopolamine (1 mg/kg, IP) at 2, 4, 6, 8, and 12 weeks after treatment. These data indicate that acute exposure to CPF in adult rats can cause long-term neurobehavioral changes that may persist following the recovery of neurochemical parameters associated with exposure and tolerance to cholinesterase inhibitors.

Animals↗

Phenylmethylsulfonyl fluoride alters sensitivity to organophosphorus-induced delayed neurotoxicity in developing animals.

The serine/cysteine hydrolase inhibitor phenylmethylsulfonyl fluoride (PMSF) markedly intensifies the clinical expression of organophosphorus-induced delayed neurotoxicity (OPIDN) in adult chickens when administered after organophosphate exposure. In this study, we have examined the ability of PMSF post-treatment to affect sensitivity to OPIDN in developing animals at ages normally showing resistance. Chickens (35, 49 or 70 days of age) were treated with diisopropylphosphorofluoridate (DFP, 2 mg/kg, sc) and then treated four hours later with PMSF (90 mg/kg, sc) or vehicle only and examined for clinical signs of ataxia and incoordination. Chickens treated with DFP alone showed a marked age-related increase in the severity of motor deficits. Birds treated with DFP followed by PMSF showed more extensive clinical deficits relative to those treated with DFP only, but relatively similar degrees of motor dysfunction among the age groups. Cervical spinal cord samples processed by the Fink-Heimer degeneration method indicated that PMSF post-treatment induced more extensive axonal degeneration in all age groups relative to treatment with DFP only. As the DFP treatment alone caused greater than or equal to 90% inhibition of neurotoxic esterase activity (NTE, the putative molecular target site for OPIDN), interaction with NTE by PMSF does not appear to be involved in potentiation. We hypothesize that PMSF potentiates OPIDN through impairment of a physiological process which normally imparts resistance to young animals and which regresses during development.

Animals↗

Comparison of in vivo cholinesterase inhibition in neonatal and adult rats by three organophosphorothioate insecticides.

Developing mammals are more sensitive than adults to a variety of organophosphorothioate insecticides (OPs), compounds which act in vivo by inhibition of cholinesterase (ChE). Little is known, however, regarding age-related differences in biochemical responses to these toxicants. The time course of ChE inhibition and recovery in whole brain was compared in neonatal (7 days of age) and adult (80-100 days of age) rats after treatment with maximal tolerated doses (MTDs) of either methyl parathion (MPS), parathion (PS) or chlorpyrifos (CPF). Neonatal rats were more sensitive than adults in all cases (MTDs for MPS, PS and CPF; neonates = 7.8, 2.1 and 45 mg/kg, s.c.; adults = 18, 18, and 279 mg/kg, s.c., respectively). In general, maximal brain ChE inhibition was similar (greater than 78%) in both age groups but ChE activity recovered faster in neonates. Plasma and erythrocyte ChE activities correlated relatively well (r = 0.794-0.943) with brain ChE activity in neonatal rats at all time points between 4 h and 7 days after treatment but similar correlations between circulating and brain ChE activities in adults were more variable (r = 0.211-0.917). The results indicate that neonatal rats are more sensitive to acute lethality from these compounds and that MTD exposures produce extensive brain ChE inhibition in both age groups. Significant inhibitor-related and age-related differences in the duration of ChE inhibition can ensue, however, following such OP exposures.

Aging↗

Cellular models and tissue equivalent systems for evaluating the structures and significance of age-modified proteins.

The accumulation of modified proteins in aging is well documented in many aging models. For example, the deamidated isoforms of triosephosphate isomerase accumulate in: (a) old erythrocytes, (b) fibroblasts from old donors, (c) fibroblasts aged in vitro, (d) premature-aging syndromes and (e) old cells in the eye lens. However, a fundamental remaining question is: 'Do such modified proteins interfere with cellular function?' It has been difficult to assess this question at the molecular level using whole-organism models and equally frustrating to evaluate the physiological significance of such changes using classical cellular models. Tissue equivalent systems (TES) provide an opportunity for examining the molecular basis and physiological consequences of modified proteins during aging. TES are composed of differentiating and proliferating heterogeneous cell types with symbiotic cell-cell and cell-matrix interactions. They closely resemble, both morphologically and functionally, the tissues from which they were derived. Aging studies utilizing TES can provide information on modifications of protein structures, isozyme patterns, enzymes of the cellular environmental protection system and metabolic parameters which may regulate protein synthesis and degradation.

Adenosine Triphosphate↗

Inhibition of psoriatic cell proliferation in in vitro skin models by amiprilose hydrochloride.

Amiprilose hydrochloride, a 3-substituted glucose derivative, was found to inhibit the proliferation of human fibroblasts and keratinocytes originating from psoriatic lesions. Fibroblasts and keratinocytes were obtained from skin biopsies of normal donors, and from the biopsies of active/involved and uninvolved sites of psoriatic donors. The cells were cultured as monolayers or as components of tissue equivalent models. Keratinocytes and fibroblasts originating from biopsies of psoriatically involved areas were shown to proliferate at a significantly higher rate than those derived from uninvolved areas. The antiproliferative effect of amiprilose hydrochloride was not observed with normal keratinocytes or fibroblasts from the skin of healthy donors or from uninvolved areas of psoriatic donors. Amiprilose hydrochloride was not cytotoxic to any of these cells at levels below 0.1%. The combination of the low cytotoxicity and the selective antiproliferative effect indicates that this compound may be a useful antipsoriatic agent. The use of monolayer cultures and tissue equivalent models in this study illustrates the utility of such a progressive strategy in the evaluation of potential topical pharmaceuticals.

Cell Division↗

ACTH-induced adrenal hemorrhage: a complication of therapy masquerading as an acute abdomen.

Four patients developed adrenal hemorrhage during treatment with intravenous adrenocorticotropic hormone (ACTH) for severe inflammatory bowel disease (IBD). This complication presented suddenly with upper abdominal and flank pain mimicking an acute surgical abdomen. In each patient the symptoms of the underlying bowel disease had subsided under the ACTH therapy. In our first patient the diagnosis was not made until laparotomy, but in the subsequent three patients the diagnosis was suspected by the strikingly similar clinical presentation. In each of these three latter patients the diagnosis was confirmed by sonography or computed tomography (CT) scan, and surgery was avoided. All four of our patients are doing well at 1-58 months of follow-up. Signs of adrenal insufficiency occurred only in the one of our four patients, and in those six of 11 previously reported patients, who had bilateral adrenal hemorrhage. ACTH-induced adrenal hemorrhage requires stopping ACTH and maintaining corticosteroid support. The diagnosis of adrenal hemorrhage should be considered in the patient treated with ACTH who develops unexplained acute abdominal or flank pain. Failure to recognize this complication of ACTH therapy can lead to unnecessary surgery or the dangerous continuation of the offending agent.

Abdomen, Acute↗

Increased carbonyl content of proteins in synovial fluid from patients with rheumatoid arthritis.

The carbonyl content of proteins in the synovial fluid (SF) of patients with rheumatoid arthritis was significantly (p less than or equal to 0.10) elevated over levels in the SF of patients with osteoarthritis (OA). Other indicators of oxidative damage including catalse, ceruloplasmin, ferritin and superoxide dismutase also showed statistically significant differences (p less than or equal to 0.05) compared to patients with OA.

Arthritis, Rheumatoid↗

Medical decompression of toxic megacolon by "rolling". A new technique of decompression with favorable long-term follow-up.

We treated 19 consecutive patients with toxic megacolon complicating inflammatory bowel disease with the usual intensive medical regimen, but also added a new technique, namely, the frequent rolling of the patient to the prone position in order to redistribute colonic gas and thereby promote decompression. In all 19 patients (100%) the colon was decompressed within 1-13 days (mean 4.9 days). Two patients (10.5%) died. In long-term follow-up (mean 6.5 years), only 4 of the 17 survivors (21%) ultimately required colectomy; the remaining 13 (68%) were either completely well or only minimally symptomatic and did not require steroids. Most reports on the management of toxic megacolon stress the need for early surgical intervention, but our success in decompression with the addition of the "rolling technique" suggests an improvement in the nonoperative management of toxic megacolon.

Adult↗

The redox state in lymphocytes from patients with rheumatoid arthritis.

Our study was designed to quantitate levels of NAD+, NADH, NADP(H), and ATP in peripheral blood lymphocytes with and without mitogenic stimulation from patients with rheumatoid arthritis (RA). No differences were found in patients with RA and healthy controls. Our data suggest the ability of the redox system of circulating peripheral lymphocytes to respond to mitogenic stimulation in patients with RA is not markedly impaired.

Adenosine Triphosphate↗

Changes in NAD levels in human lymphocytes and fibroblasts during aging and in premature aging syndromes.

NAD levels markedly increase upon mitogen stimulation of lymphocytes from young subjects. In contrast, lymphocytes from old subjects do not increase NAD levels upon stimulation. A survey of 35 individuals aged 18-79 years revealed a significant age-dependent decrease in the NAD response to mitogen stimulation. No significant differences were noted in lymphocytes from age-matched individuals with Down's syndrome or diabetes mellitus. On the other hand, cultured skin fibroblasts showed elevated NAD levels with age. However, this effect appears to be due to increased size of the cells since the NAD/protein ratio is unchanged. Skin fibroblasts from patients with progeria exhibit much higher levels of NAD and protein per cell than age-matched controls.

Adolescent↗

Impaired glycolysis of human lymphocytes during aging.

When peripheral lymphocytes from young persons are stimulated in vitro with phytohemagglutinin, an increase in the levels of all the glycolytic enzymes occurs concomitantly with blastogenesis. The specific activities of enzymes increase approximately 200%, with a greater induction of the latter half of the pathway. The increases do not represent a general enzyme induction, since nonglycolytic enzymes such as glucose 6-phosphate dehydrogenase and isocitrate dehydrogenase do not increase during transformation. Human lymphocytes from a geriatric population were also subjected to mitogen stimulation under identical conditions. The initial levels of the enzymes were essentially identical in lymphocytes from young and old subjects as were cultured controls which received no mitogen. However, during mitogen stimulation the cells from the old subjects failed to increase the glycolytic enzymes. This inability to activate glycolysis may be related to the decline in cell-mediated immunity which is known to occur with advancing age.

Adult↗

Fractionation on lymphocyte surface antigens. I. Rapid method for eliminating labeled lipid from cell surface antigens iodinated by the lactoperoxidase catalysed reaction.

Fractionation of lactoperoxidase iodinated cell surface material on miniature DEAE-cellulose columns provided a rapid method for separating labeled lipid from cell surface antigens. The procedure also removed poorly solubilized aggregates yielding a labeled preparation which demonstrated stable, reproducible immunoprecipitation results. Using these fractionated antigens components tentatively designated as human 'T' cell specific antigens have been identified.

Antigens↗