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M W Thompson

Publications and source records attributed to M W Thompson.

At least 55 records · Page 3Linked to original sources

Effect of training on eccentric exercise-induced muscle damage.

Eccentric muscle contractions generate delayed onset muscle soreness (DOMS), possibly as a result of the high tensions involved causing muscle damage. Muscle function, serum indicators of muscle damage, and DOMS were investigated throughout a training regimen that involved a 40-min eccentric walk down a 25% gradient on a treadmill at 6.4 km/h once a week for 8 wk. Serum creatine kinase and myoglobin concentrations were used as indicators of muscle damage, and both demonstrated a delayed increase after the exercise protocol. The muscles that contracted eccentrically exhibited low-frequency fatigue, as well as decreases in muscle fatigability and maximal voluntary contraction force, which were greatest immediately postexercise. Although the results show that training reduces DOMS, the serum muscle protein response, and muscle function impairment, the time courses of these adaptations are different. It is suggested that the function of the muscle can be impaired without apparent muscle damage.

Adaptation, Physiological↗

Purification and characterization of TDP-D-glucose 4,6-dehydratase from anthracycline-producing streptomycetes.

TDP-D-glucose 4,6-dehydratase, which converts TDP-D-glucose to TDP-D-4-keto-6-deoxyglucose, was purified to near-homogeneity from the daunorubicin and baumycin-producing organism Streptomyces sp. C5 (968-fold purification with a 41% recovery), and from the daunorubicin producer Streptomyces peucetius ATCC 29050 (1000-fold purification with a 37% recovery). The TDP-D-glucose 4,6-dehydratases from Streptomyces sp. C5 and S. peucetius were determined by SDS-PAGE and HPLC gel filtration to be homodimers with subunit relative molecular masses of 39,000 and 36,000, respectively. For the enzymes from both organisms, negligible activity was observed in the absence of added NAD+, or when ADP-glucose, ADP-mannose, GDP-mannose, UDP-glucose or UDP-galactose was substituted for TDP-D-glucose as substrate. For the enzyme from Streptomyces sp. C5, the K'm values for NAD+ and TDP-D-glucose were 19.2 microM and 31.3 microM, respectively. The V'max for TDP-D-glucose was 309 nmol min-1 (mg protein)-1. For the S. peucetius enzyme, the K'm values for NAD+ and TDP-D-glucose were 20.1 microM and 34.7 microM, respectively. V'max values were 180 nmol min-1 (mg protein)-1 for NAD+ and 201 nmol min-1 (mg protein)-1 for TDP-D-glucose. TDP was a good inhibitor of TDP-D-glucose 4,6-dehydratase from both organisms. The N-terminal amino acid sequence of the TDP-D-glucose 4,6-dehydratase from S. peucetius and from the erythromycin producer, Saccharopolyspora erythraea, were similar, whereas the enzyme from Streptomyces sp. C5 contained a different N-terminal amino acid sequence from either of the other two enzymes.

Amino Acid Sequence↗

Extracorporeal membrane oxygenation for hydrocarbon aspiration.

Extracorporeal membrane oxygenation is a pulmonary bypass procedure that has been employed in adults to provide temporary treatment for reversible acute pulmonary and cardiac insufficiency. The technology of membrane oxygenation has been used since 1977 in neonates with predictably fatal pulmonary failure due to respiratory distress syndrome, persistent fetal circulation or persistent pulmonary hypertension of the newborn, meconium aspiration syndrome, and congenital diaphragmatic hernia. The use of extracorporeal membrane oxygenation in older children with other pulmonary disorders has been limited. We report two cases of hydrocarbon aspiration involving petroleum-based products, both successfully treated with extracorporeal membrane oxygenation. A 15-month-old male infant who aspirated baby oil (light mineral oil) is particularly unusual owing to the generally expected low risk of aspiration with a hydrocarbon of such viscosity (greater than 60 Saybolt Universal Seconds). The second patient is a 16-month-old male infant who aspirated furniture polish (mineral seal oil). In both children severe intractable hypoxemia developed despite intensive ventilatory support, and they became candidates for alternative therapy. Extracorporeal membrane oxygenation provides a potentially life-saving option when a patient fails to respond to conventional therapy for hydrocarbon aspiration.

Extracorporeal Membrane Oxygenation↗

Duplicational mutation at the Duchenne muscular dystrophy locus: its frequency, distribution, origin, and phenotypegenotype correlation.

Partial gene deletion is the major cause of mutation leading to Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD). Partial gene duplication has also been recognized in a few cases. We have conducted a survey for duplication in 72 unrelated nondeletion patients, analyzed by Southern blot hybridization with clones representing the entire DMD cDNA. With careful quantitative analysis of hybridization band intensity, 10 cases were found to carry a duplication of part of the gene, a frequency of 14% for nondeletion cases (10/72), or 6% for all cases (10/181). The extent of these duplications has been characterized according to the published exon-containing HindIII fragment map, and in six of the 10 duplications a novel restriction fragment that spanned the duplication junction was detected. The resulting translational reading frame of mRNA has been predicted for nine duplications. A shift of the reading frame was predicted in four of the six DMD cases and in one of the two intermediate cases, while the reading frame remained uninterrupted in both BMD cases. RFLP and quantitative Southern blot analyses revealed a grandpaternal origin of duplication in four families and grandmaternal origin in one family. In all five families, the duplication was found to originate from a single X chromosome. Unequal sister-chromatid exchange is proposed to be the mechanism for the formation of these duplications.

Adolescent↗

Molecular and phenotypic analysis of patients with deletions within the deletion-rich region of the Duchenne muscular dystrophy (DMD) gene.

Eighty unrelated individuals with Duchenne muscular dystrophy (DMD) or Becker muscular dystrophy (BMD) were found to have deletions in the major deletion-rich region of the DMD locus. This region includes the last five exons detected by cDNA5b-7, all exons detected by cDNA8, and the first two exons detected by cDNA9. These 80 individuals account for approximately 75% of 109 deletions of the gene, detected among 181 patients analyzed with the entire dystrophin cDNA. Endpoints for many of these deletions were further characterized using two genomic probes, p20 (DXS269; Wapenaar et al.) and GMGX11 (DXS239; present paper). Clinical findings are presented for all 80 patients allowing a correlation of phenotypic severity with the genotype. Thirty-eight independent patients were old enough to be classified as DMD, BMD, or intermediate phenotype and had deletions of exons with sequenced intron/exon boundaries. Of these, eight BMD patients and one intermediate patient had gene deletions predicted to leave the reading frame intact, while 21 DMD patients, 7 intermediate patients, and 1 BMD patient had gene deletions predicted to disrupt the reading frame. Thus, with two exceptions, frameshift deletions of the gene resulted in more severe phenotype than did in-frame deletions. This is in agreement with recent findings by Baumbach et al. and Koenig et al. but is in contrast to findings, by Malhotra et al., at the 5' end of the gene.

Chromosome Aberrations↗

Frame-shift deletions in patients with Duchenne and Becker muscular dystrophy.

Duchenne muscular dystrophy (DMD) and its less severe form Becker muscular dystrophy (BMD) are allelic disorders. It has been suggested that in the mutations involving BMD, the translational reading frame of messenger RNA is maintained and a smaller, though partially functional, protein is produced. In order to test this, the exon-intron boundaries of the first ten exons of the DMD gene were determined, and 29 patients were analyzed. In a number of BMD patients (mild and severe BMD), the reading frame of messenger RNA was not maintained. On the basis of these findings, a model for reinitiation from an internal start codon is suggested.

Base Sequence↗

The problem of Duchenne muscular dystrophy.

Duchenne muscular dystrophy (DMD) is a lethal X-linked muscular disorder. The biochemical defect remains unknown, but the gene responsible has been mapped to band Xp21. The gene has now been cloned in two laboratories solely from knowledge of its map location. L. M. Kunkel and his colleagues isolated genomic sequences (PERT 87) from within a large deletion causing DMD, whereas our group isolated genomic sequences (XJ) spanning the junction of an X-autosome translocation causing the disease. Chromosome walking by both groups has led to the isolation of over 400 kilobases of the PERT 87 and XJ region. Subclones of PERT 87 and XJ reveal restriction fragment length polymorphisms that segregate with the DMD gene in 95% of meioses, and fail to hybridize with DNA from about 8% of male patients. Selected subclones of PERT 87 and XJ contain exons that hybridize to muscle-derived complementary DNA (cDNA) clones. The cDNA clones detect a large (16 kilobase) message. Analysis of deletions, mutations and translocations suggests a DMD gene of between two million and three million base pairs. The clones obtained so far are useful for attempts to generate antibody against the gene product and for carrier identification and prenatal diagnosis.

Chromosome Mapping↗

Partial gene duplication in Duchenne and Becker muscular dystrophies.

Duchenne and Becker muscular dystrophies (DMD and BMD) are progressive muscle wasting disorders with an X linked recessive mode of inheritance. We have surveyed 120 unrelated patients with DMD or BMD for gene duplications using a series of genomic probes from within the DMD/BMD gene locus. In three patients, two with DMD and one with BMD, a duplicated region within the DMD/BMD locus has been shown by Southern blot analysis and transmission densitometry. In two cases a new restriction fragment spanning the duplication junction has been visualised, indicating that the duplications are tandemly arranged. Mendelian inheritance of the duplication has been shown in two families by following the segregation of the duplication junction fragment. The three duplication cases have been analysed with a cDNA probe isolated from the DXS206 region of the DMD/BMD locus and the duplication of a specific set of exons has been found in two cases. This study shows that all three duplications are internal to the gene and confirms that such a duplication can result in a genetic disorder through the disruption of exon organisation.

Child↗

Genetic aspects of immotile cilia syndrome.

The genetics of the immotile cilia syndrome has been analyzed in a series of 46 affected individuals from 38 families. Both sexes were equally affected: there were 20 males and 26 females in this series. All patients had upper and lower respiratory disease with chronic sinusitis, otitis, and chronic cough from early childhood. Bronchiectasis was common in older children and adults. Situs inversus occurred randomly, affecting 11 males and 15 females. Biopsies of nasal and bronchial mucosa from these subjects have been investigated by electron microscopy and identified as having specific ultrastructural defects of respiratory tract cilia including deficiencies in outer dynein arms (19), inner dynein arms (3), both inner and outer dynein arms (15), radial spoke defect (5); and microtubular transposition anomaly (4). Segregation analysis of proband sibships was consistent with autosomal recessive inheritance. However, the different ultrastructural defects that underly the immotile cilia syndrome involve presumably different genetic determinants, and the different types have not been analyzed separately. Examination of paternal age and birth order gave no evidence of new autosomal dominant mutation in the series.

Ciliary Motility Disorders↗

Paternal inheritance of translocation chromosomes in a t(X;21) patient with X linked muscular dystrophy.

A number of DNA probes from the short arm of the X chromosome have been used to study the inheritance of the translocation chromosomes in a girl with an X; autosome translocation and muscular dystrophy. The two translocation chromosomes were found to be derived from the father's single normal X chromosome, ruling out maternal inheritance of a pre-existent mutation and enhancing the concept that the de novo translocation is responsible for the dystrophic phenotype.

Chromosomes, Human, Pair 21↗

Linkage analysis of polymorphisms within the DNA fragment XJ cloned from the breakpoint of an X;21 translocation associated with X linked muscular dystrophy.

Cloning of a DNA segment including the translocation breakpoint in a female with an X;21 translocation and X linked muscular dystrophy has led to identification of three subclones which detect polymorphic markers. The alleles of these markers, XJ1 X 1, XJ1 X 2, and XJ2 X 2, are in strong linkage disequilibrium. Linkage analysis in 31 families with Duchenne or Becker muscular dystrophy has shown recombination within the XJ segment in one case, and recombination of DMD with both the XJ segment and the pERT87 segment in a second, but has revealed no recombination between the XJ and pERT87 segments. The XJ markers increase the proportion of DMD and BMD families that are informative for carrier detection and prenatal diagnosis, but in view of the risk of recombination they must be used with caution. The site(s) of the DMD mutation(s) relative to the XJ and pERT87 markers, and the detailed molecular structure of the DMD region, remain to be determined.

Alleles↗

Physiological responses to prolonged exercise in ultramarathon athletes.

The physiological responses of 10 ultramarathon athletes to prolonged exercise at the highest intensity level they could sustain for 4 h have been examined. Energy expenditure for the 4 h of exercise was 14,146 +/- 1,789 kJ, of which 63% was provided by the oxidation of fat. Plasma free fatty acids rose, but the changes in blood lactate concentration (delta 0.2 mmol/l) and exchange ratio (delta 0.05) were small, and the postexercise glycogen content (130 +/- 42 mumol/g) of the vastus lateralis muscles was estimated to be 37-53% of normal resting values. During exercise O2 intake (VO2) increased with time from the 50th to 240th min, the rise becoming significant (P less than 0.01) after 110 min of work. The change in VO2 was equivalent to a rise in relative intensity (%VO2max) of +9.1% and a change of speed of 1.49 km/h. A rise in cardiac frequency compensated for a fall in stroke volume (SV), so that cardiac output was maintained, and the increases in rectal temperature (Tre) (delta 0.63 degree C) and sweat loss (3.49 +/- 0.50 kg, equivalent to 5.5% of body wt) and the decreased mean skin temperature (Tsk) (-1.22 degree C) were within tolerable limits during exercise. Following exercise there was a loss (-25%) of ability to generate voluntary force of the quadriceps femoris, though electrically evoked mechanical properties of the muscle remained unchanged. The results suggest that neither thermal nor cardiovascular factors are limiting to prolonged (4 h) exercise, although the ability to utilize fat as a fuel may be important in ultradistance athletes.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

A comparison of the absorption and metabolism of isopropyl alcohol by oral, dermal and inhalation routes.

The admission of a child with an almost lethal level of isopropyl (alcohol 380 mg/dl) after sponge bathing for fever, and questionable ingestion, prompted the present experiment in animals. Twelve rabbits (2-2.6 kg) were divided into 4 groups of 3 each. Groups 1 and 2 were given isopropyl alcohol, 2 and 4 ml/kg respectively, by gavage. Groups 3 and 4 were placed in an inhalation chamber with group 3 having a towel soaked with isopropyl alcohol applied to the chest. Group 4 had a similar towel placed on the chest but with a plastic layer to preclude skin contact. Average blood levels (mg/dl) of isopropanol/acetone were then measured over 4 hr. Oral absorption produced the highest levels of isopropyl alcohol and acetone, followed by inhalation and dermal. Inhalation alone was of little significance. Acetone levels continued to rise even as isopropyl levels fell following oral exposure. With the inhalation plus skin absorption group, both isopropyl and acetone levels continued to rise throughout the 4 hr time period. These results indicate that skin absorption is a significant factor in isopropyl alcohol toxicity, and the delayed rise in acetone levels may be responsible for prolonged activity.

1-Propanol↗

Cystic fibrosis in Ontario.

The incidence of cystic fibrosis in Ontario, Canada has been determined from clinical data, from the cystic fibrosis database of the Hospital for Sick Children, Toronto, and from population statistics in the Province of Ontario. The survey included 420 confirmed cases of cystic fibrosis born during the period 1966-1980. The mean incidence during this period was one in 2,927. In the last 5-year period, a decline was noted in incidence that may have reflected in part the effectiveness of early diagnosis and genetic counseling in affected families. During the period of the survey, over 60% of cases were diagnosed within the first year of life, 74% by age 2 years, and 90% by age 5 years. Clinical diagnosis in the first year of life was more common in males (65%) than in females (54%), a consistent finding during the period of the survey. The incidence of meconium ileus was 15.7% of ascertained cases of cystic fibrosis, with similar incidences in males (16.4%) and females (14.4%). Although survival has not been the subject of this survey, mortality in the neonatal period was significantly higher in males than in females with cystic fibrosis.

Age Factors↗

Expression of an X-linked muscular dystrophy in a female due to translocation involving Xp21 and non-random inactivation of the normal X chromosome.

A young female was diagnosed as having X-linked muscular dystrophy of the Duchenne type. Chromosome studies, including trypsin-Giemsa banding, Quinacrine fluorescence, and nucleolus organizer region (NOR) silver staining revealed an X-autosome reciprocal translocation t(X;21) (p21;p12). Utilizing both [3H] thymidine autoradiography and the BrdU-Hoechst 33258-Giemsa technique, lymphocytes and fibroblasts were found to show a preferential inactivation of the normal X suggesting the presence of a single mutant gene on the translocated X. This patient is one of seven reported cases of an X-linked muscular dystrophy associated with an X-autosome translocation. In all seven cases the exchange point in the X chromosome is in band p21 at or near the site of the Duchenne gene.

Adult↗