14 research outputs found

    Underground coal mine : Herrin (no. 6) coal member, stratigraphy, deformational structures, and roof stability

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    One-day Field Trip D, May 20, 1979. Prepared for Ninth International Congress of Carboniferous Stratigraphy and Geology (IX-ICC)Ope

    Strippable coal resources of Illinois : part 8, central and southeastern counties

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    Two folded plates in pocket.Bibliography: p. 25

    Variants In The Oxidoreductase Pyroxd1 Cause Early-Onset Myopathy With Internalized Nuclei And Myofibrillar Disorganization

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    This study establishes PYROXD1 variants as a cause of early-onset myopathy and uses biospecimens and cell lines, yeast, and zebrafish models to elucidate the fundamental role of PYROXD1 in skeletal muscle. Exome sequencing identified recessive variants in PYROXD1 in nine probands from five families. Affected individuals presented in infancy or childhood with slowly progressive proximal and distal weakness, facial weakness, nasal speech, swallowing difficulties, and normal to moderately elevated creatine kinase. Distinctive histopathology showed abundant internalized nuclei, myofibrillar disorganization, desmin-positive inclusions, and thickened Z-bands. PYROXD1 is a nuclear-cytoplasmic pyridine nucleotide-disulphide reductase (PNDR). PNDRs are flavoproteins (FAD-binding) and catalyze pyridine-nucleotide-dependent (NAD/NADH) reduction of thiol residues in other proteins. Complementation experiments in yeast lacking glutathione reductase girl show that human PYROXD1 has reductase activity that is strongly impaired by the disease-associated missense mutations. Immunolocalization studies in human muscle and zebrafish myofibers demonstrate that PYROXD1 localizes to the nucleus and to striated sarcomeric compartments. Zebrafish with ryroxD1 knock-down recapitulate features of PYROXD1 myopathy with sarcomeric disorganization, myofibrillar aggregates, and marked swimming defect. We characterize variants in the oxidoreductase PYROXD1 as a cause of early-onset myopathy with distinctive histopathology and introduce altered redox regulation as a primary cause of congenital muscle disease.WoSScopu

    The zircon evidence of temporally changing sediment transport—the NW Gondwana margin during Cambrian to Devonian time (Aoucert and Smara areas, Moroccan Sahara)

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    Leaders for Manifest Destiny: American Volunteer Colonels Serving in the U.S.‐Mexican War

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    The History, Means, and Effects of Structural Surveillance

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    Early Palaeozoic geodynamics in NW Gondwana

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