Spatial and Temporal Changes in Myosin Heavy Chain Gene Expression in Skeletal Muscle Development (original) (raw)

Evidence for differential post-translational modifications of slow myosin heavy chain during murine skeletal muscle development

Michelle Peckham

Journal of muscle research and cell motility, 2000

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The expression of myosin genes in developing skeletal muscle in the mouse embryo

D. Sassoon

The Journal of Cell Biology, 1990

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Postnatal myosin heavy chain isoforms in prenatal porcine skeletal muscles: Insights into temporal regulation

nuno costa

The Anatomical Record, 2003

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Isolation and Characterization of an Avian Slow Myosin Heavy Chain Gene Expressed during Embryonic Skeletal Muscle Fiber Formation

Larry Nelson

Journal of Biological Chemistry, 1996

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Quantifying the Temporospatial Expression of Postnatal Porcine Skeletal Myosin Heavy Chain Genes

nuno costa

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Expression of myosin heavy chain isoforms in developing human muscle spindles

Fatima Pedrosa-domellöf

Journal of Histochemistry & Cytochemistry, 1994

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Developmental, physiologic and phylogenetic perspectives on the expression and regulation of myosin heavy chains in mammalian skeletal muscles

Joseph Hoh

Journal of Comparative Physiology B-biochemical Systemic and Environmental Physiology, 2023

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Distribution of myosin mRNA during development and regeneration of skeletal muscle fibers

Brenda Russell

Developmental Biology, 1991

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Transcriptional and cell cycle-mediated regulation of myosin heavy chain gene expression during muscle cell differentiation

Bernardo Nadal-Ginard

Journal of Biological Chemistry, 1983

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Different Pathways Regulate Expression of the Skeletal Myosin Heavy Chain Genes

Laura Sycuro

Journal of Biological Chemistry, 2001

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Dynamics of Myosin Heavy Chain Gene Regulation in Slow Skeletal Muscle: ROLE OF NATURAL ANTISENSE RNA

victor R Edgerton

Journal of Biological Chemistry, 2006

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A possible regulatory role for conserved promoter motifs in an adult-specific muscle myosin gene from mouse

Robert Whalen

Journal of Biological Chemistry

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Multiple positive and negative 5' regulatory elements control the cell-type-specific expression of the embryonic skeletal myosin heavy-chain gene

Emanuel Strehler

Molecular and Cellular Biology, 1987

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Sequencing of the 2a, 2x, and slow isoforms of the bovine myosin heavy chain and the different expression among muscles

Muroya Susumu

Mammalian Genome, 1998

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Quantification by real-time PCR of developmental and adult myosin mRNA in rat muscles

rachel chapot

Biochemical and Biophysical Research Communications, 2006

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Growth and Muscle Defects in Mice Lacking Adult Myosin Heavy Chain Genes

Carol Sartorius

The Journal of Cell Biology, 1997

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Phenotypic expression of 2b myosin heavy chain isoform: a comparative study among species and different muscles

C. Reggiani

Veterinary Research Communications, 2009

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The Emergence of Embryonic Myosin Heavy Chain during Branchiomeric Muscle Development

Beate Brand-Saberi

Life

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Innervation regulates myosin heavy chain isoform expression in developing skeletal muscle fibers

Josiane Fontaine-perus

Mechanisms of Development, 1996

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Satellite cells express distinct patterns of myogenic proteins in immature skeletal muscle

Paul Mozdziak

Developmental Dynamics, 2006

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Comparative sequence analysis of four myosin heavy chain isoforms expressed in porcine skeletal muscles: Sequencing and characterization of the porcine myosin heavy chain slow isoform

Muroya Susumu

Animal Science Journal, 2002

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Expression of myosin heavy chain isoforms in the postnatal mouse masseter muscle

Iwao Sato

Okajimas Folia Anatomica Japonica, 2009

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Regulation of myosin heavy-chain gene expression during skeletal-muscle hypertrophy

W. Zin

The Biochemical journal, 1989

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Transcription of the embryonic myosin light chain gene is restricted to type II muscle fibers in human adult masseter

nadia soussi-yanicostas

Developmental Biology, 1991

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Myoblasts from fetal and adult skeletal muscle regulate myosin expression differently

Rebecca Hartley

Developmental Biology, 1991

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Human skeletal myosin heavy chain genes are tightly linked in the order embryonic-IIa-IId/x-ILb-perinatal-extraocular

Stephane Konig

Journal of muscle research and cell motility, 2000

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Myosin Heavy Chains IIa and IId Are Functionally Distinct in the Mouse

Leslie Acakpo-Satchivi

The Journal of Cell Biology, 1998

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A developmentally regulated disappearance of slow myosin in fast-type muscles of the mouse

Robert Whalen

FEBS Letters, 1984

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Dynamic nature of fibre-type specific expression of myosin heavy chain transcripts in 14 different human skeletal muscles

Ida Erzen

Journal of muscle research and cell motility, 2001

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Heterogenic mRNAs with an identical protein-coding region of the human embryonic myosin alkali light chain in skeletal muscle cells

Robert Whalen

Journal of Molecular Biology, 1990

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Expression of myosin heavy chain and of myogenic regulatory factor genes in fast or slow rabbit muscle satellite cell cultures

Robert Whalen

Journal of Muscle Research and Cell Motility, 1995

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Co-expression of multiple myosin heavy chain genes, in addition to a tissue-specific one, in extraocular musculature

Robert Whalen

The Journal of Cell Biology, 1985

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MEF-2 and Oct-1 Bind to Two Homologous Promoter Sequence Elements and Participate in the Expression of a Skeletal Muscle-specific Gene

Robert Whalen

Journal of Biological Chemistry, 1998

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Most myosin heavy chain mRNA in L6E9 rat myotubes has a short poly(A) tail

Susan Benoff

Proceedings of the National Academy of Sciences, 1979

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Myosin heavy chain isoform expression in adult and juvenile mini-muscle mice bred for high-voluntary wheel running

Theodore Garland

Mechanisms of Development, 2014

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