Literature DB >> 19997772

Diverse roles of the actin cytoskeleton in striated muscle.

Anthony J Kee1, Peter W Gunning, Edna C Hardeman.   

Abstract

In addition to the highly specialized contractile apparatus, it is becoming increasingly clear that there is an extensive actin cytoskeleton which underpins a wide range of functions in striated muscle. Isoforms of cytoskeletal actin and actin-associated proteins (non-muscle myosins, cytoskeletal tropomyosins, and cytoskeletal alpha-actinins) have been detected in a number of regions of striated muscle: the sub-sarcolemmal costamere, the Z-disc and the T-tubule/sarcoplasmic reticulum membranes. As the only known function of these proteins is through association with actin filaments, their presence in striated muscles indicates that there are spatially and functionally distinct cytoskeletal actin filament systems in these tissues. These filaments are likely to have important roles in mechanical support, ion channel function, myofibrillogenenous and vesicle trafficking.

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Year:  2009        PMID: 19997772     DOI: 10.1007/s10974-009-9193-x

Source DB:  PubMed          Journal:  J Muscle Res Cell Motil        ISSN: 0142-4319            Impact factor:   2.698


  97 in total

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Review 4.  Insulin receptor signals regulating GLUT4 translocation and actin dynamics.

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Review 5.  Tropomyosin isoforms in nonmuscle cells.

Authors:  J J Lin; K S Warren; D D Wamboldt; T Wang; J L Lin
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6.  Activation of RalA is required for insulin-stimulated Glut4 trafficking to the plasma membrane via the exocyst and the motor protein Myo1c.

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7.  Hypertrophic stimulation increases beta-actin dynamics in adult feline cardiomyocytes.

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8.  A Balance Between Intermediate Filaments and Microtubules Maintains Nuclear Architecture in the Cardiomyocyte.

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10.  Next-generation sequencing of the porcine skeletal muscle transcriptome for computational prediction of microRNA gene targets.

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