OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE
Kluxen FW, Schöffl F, Berchtold MW, Jockusch H (1988)
EUROPEAN JOURNAL OF BIOCHEMISTRY 176(1): 153-158.
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Autor*in
Kluxen, F. W.;
Schöffl, F.;
Berchtold, M. W.;
Jockusch, HaraldUniBi
Einrichtung
Erscheinungsjahr
1988
Zeitschriftentitel
EUROPEAN JOURNAL OF BIOCHEMISTRY
Band
176
Ausgabe
1
Seite(n)
153-158
ISSN
0014-2956
eISSN
1432-1033
Page URI
https://pub.uni-bielefeld.de/record/1653877
Zitieren
Kluxen FW, Schöffl F, Berchtold MW, Jockusch H. OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE. EUROPEAN JOURNAL OF BIOCHEMISTRY. 1988;176(1):153-158.
Kluxen, F. W., Schöffl, F., Berchtold, M. W., & Jockusch, H. (1988). OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE. EUROPEAN JOURNAL OF BIOCHEMISTRY, 176(1), 153-158. https://doi.org/10.1111/j.1432-1033.1988.tb14262.x
Kluxen, F. W., Schöffl, F., Berchtold, M. W., and Jockusch, Harald. 1988. “OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE”. EUROPEAN JOURNAL OF BIOCHEMISTRY 176 (1): 153-158.
Kluxen, F. W., Schöffl, F., Berchtold, M. W., and Jockusch, H. (1988). OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE. EUROPEAN JOURNAL OF BIOCHEMISTRY 176, 153-158.
Kluxen, F.W., et al., 1988. OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE. EUROPEAN JOURNAL OF BIOCHEMISTRY, 176(1), p 153-158.
F.W. Kluxen, et al., “OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE”, EUROPEAN JOURNAL OF BIOCHEMISTRY, vol. 176, 1988, pp. 153-158.
Kluxen, F.W., Schöffl, F., Berchtold, M.W., Jockusch, H.: OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE. EUROPEAN JOURNAL OF BIOCHEMISTRY. 176, 153-158 (1988).
Kluxen, F. W., Schöffl, F., Berchtold, M. W., and Jockusch, Harald. “OPPOSITE REGULATION OF THE MESSENGER-RNAS FOR PARVALBUMIN AND P19/6.8 IN MYOTONIC MOUSE MUSCLE”. EUROPEAN JOURNAL OF BIOCHEMISTRY 176.1 (1988): 153-158.
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11 Einträge gefunden, die diesen Artikel zitieren von denen 10 angezeigt werden
13 Zitationen in Europe PMC
Daten bereitgestellt von Europe PubMed Central.
Identification of secondary effects of hyperexcitability by proteomic profiling of myotonic mouse muscle.
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Specific isomyosin proportions in hyperexcitable and physiologically denervated mouse muscle.
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Expression of the potassium channel KV3.4 in mouse skeletal muscle parallels fiber type maturation and depends on excitation pattern.
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Expression of nerve-regulated genes in muscles of mouse mutants affected by spinal muscular atrophies and muscular dystrophies.
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Sedehizade F, Klocke R, Jockusch H., Muscle Nerve 20(2), 1997
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Subtractive cDNA cloning as a tool to analyse secondary effects of a muscle disease. Characterization of affected genes in the myotonic ADR mouse.
Schleef M, Zühlke C, Schöffl F, Jockusch H., Neuromuscul Disord 4(3), 1994
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Schleef M, Zühlke C, Schöffl F, Jockusch H., Neuromuscul Disord 4(3), 1994
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The structure of the mouse parvalbumin gene.
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Distinct contractile protein profile in congenital myotonic dystrophy and X-linked myotubular myopathy.
Soussi-Yanicostas N, Chevallay M, Laurent-Winter C, Tomé FM, Fardeau M, Butler-Browne GS., Neuromuscul Disord 1(2), 1991
PMID: 1822780
Soussi-Yanicostas N, Chevallay M, Laurent-Winter C, Tomé FM, Fardeau M, Butler-Browne GS., Neuromuscul Disord 1(2), 1991
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The myotonic mouse--a realistic model for the study of human recessive generalized myotonia.
Rüdel R., Trends Neurosci 13(1), 1990
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Rüdel R., Trends Neurosci 13(1), 1990
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Genetic mapping and physical characterization of parvalbumin genes.
Schöffl F, Jockusch H., Int J Biochem 22(11), 1990
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Schöffl F, Jockusch H., Int J Biochem 22(11), 1990
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Structure and expression of genes encoding the three-domain Ca2+-binding proteins parvalbumin and oncomodulin.
Berchtold MW., Biochim Biophys Acta 1009(3), 1989
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Berchtold MW., Biochim Biophys Acta 1009(3), 1989
PMID: 2688747
Parvalbumin genes from human and rat are identical in intron/exon organization and contain highly homologous regulatory elements and coding sequences.
Berchtold MW., J Mol Biol 210(3), 1989
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Berchtold MW., J Mol Biol 210(3), 1989
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