Fiber Types in Mammalian Skeletal Muscles
Типы волокон в скелетных мышцах млекопитающих
2011-10-01
SCID: 54.1/s6a5bpby
Discuss with AI
activity-dependent signalingexcitation-contraction couplingfiber type switchingmuscle fiber typesmyosin heavy chain isoforms
Figures from the paper
Abstract (AI)
Mammalian skeletal muscle comprises different fiber types, whose identity is first established during embryonic development by intrinsic myogenic control mechanisms and is later modulated by neural and hormonal factors. The relative proportion of the different fiber types varies strikingly between species, and in humans shows significant variability between individuals. Myosin heavy chain isoforms, whose complete inventory and expression pattern are now available, provide a useful marker for fiber types, both for the four major forms present in trunk and limb muscles and the minor forms present in head and neck muscles. However, muscle fiber diversity involves all functional muscle cell compartments, including membrane excitation, excitation-contraction coupling, contractile machinery, cytoskeleton scaffold, and energy supply systems. Variations within each compartment are limited by the need of matching fiber type properties between different compartments. Nerve activity is a major control mechanism of the fiber type profile, and multiple signaling pathways are implicated in activity-dependent changes of muscle fibers. The characterization of these pathways is raising increasing interest in clinical medicine, given the potentially beneficial effects of muscle fiber type switching in the prevention and treatment of metabolic diseases.
Key Findings
1
Fiber diversity extends across all functional compartments (membrane excitation, excitation-contraction coupling, contractile machinery, cytoskeleton, energy supply) and compartments must be matched functionally.
2
Muscle fiber identity is established embryonically by intrinsic myogenic mechanisms and later modulated by neural and hormonal factors.
3
Myosin heavy chain isoforms provide a complete inventory and useful markers for identifying major trunk/limb and minor head/neck fiber types.
4
Nerve activity is a major regulator of fiber type profile via multiple signaling pathways, with therapeutic interest for metabolic disease prevention and treatment through fiber-type switching.
5
Relative proportions of muscle fiber types vary markedly between species and show significant inter-individual variability in humans.
Research Object
Mammalian skeletal muscle fiber types
Research Subject
Determinants, composition, and functional diversity of muscle fiber types including myosin heavy chain isoform expression, compartmental specializations (membrane excitation, excitation–contraction coupling, contractile machinery, cytoskeleton, energy systems), and regulation by developmental, neural, hormonal and activity-dependent signaling pathways
Publication Details
Publication Date
2011-10-01
Journal
Publisher
ISSN
Access Type
Author Information
Download PDF
Subscribe to digest