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1
Alternative Splicing of Four Trafficking Genes Regulates Myofiber Structure and Skeletal Muscle Physiology.
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3
CUG-BP1 regulates RyR1 ASI alternative splicing in skeletal muscle atrophy.
Sci Rep. 2015 Nov 4;5:16083. doi: 10.1038/srep16083.
4
External Ca(2+)-dependent excitation--contraction coupling in a population of ageing mouse skeletal muscle fibres.
J Physiol. 2004 Oct 1;560(Pt 1):137-55. doi: 10.1113/jphysiol.2004.067322. Epub 2004 Aug 5.
5
Rem uncouples excitation-contraction coupling in adult skeletal muscle fibers.
J Gen Physiol. 2015 Jul;146(1):97-108. doi: 10.1085/jgp.201411314. Epub 2015 Jun 15.
8
Alternative splicing of RyR1 alters the efficacy of skeletal EC coupling.
Cell Calcium. 2009 Mar;45(3):264-74. doi: 10.1016/j.ceca.2008.11.005. Epub 2009 Jan 7.
9
Attenuated Ca(2+) release in a mouse model of limb girdle muscular dystrophy 2A.
Skelet Muscle. 2016 Feb 24;6:11. doi: 10.1186/s13395-016-0081-y. eCollection 2016.
10
RYR1 and RYR3 have different roles in the assembly of calcium release units of skeletal muscle.
Biophys J. 2000 Nov;79(5):2494-508. doi: 10.1016/S0006-3495(00)76491-5.

引用本文的文献

2
Effects of aging on calcium channels in skeletal muscle.
Front Mol Biosci. 2025 Mar 19;12:1558456. doi: 10.3389/fmolb.2025.1558456. eCollection 2025.
4
RBFOX2 regulated EYA3 isoforms partner with SIX4 or ZBTB1 to control transcription during myogenesis.
iScience. 2023 Oct 20;26(11):108258. doi: 10.1016/j.isci.2023.108258. eCollection 2023 Nov 17.
5
The role of alternative splicing in skeletal muscle function.
Life Sci Alliance. 2023 Mar 28;6(6). doi: 10.26508/lsa.202201868. Print 2023 Jun.
6
Stretching muscle cells induces transcriptional and splicing transitions and changes in SR proteins.
Commun Biol. 2022 Sep 19;5(1):987. doi: 10.1038/s42003-022-03915-7.
7
The synaptosome-associated protein 23 (SNAP23) is necessary for proper myogenesis.
FASEB J. 2022 Aug;36(8):e22441. doi: 10.1096/fj.202101627RR.
9
Alternative splicing regulation of membrane trafficking genes during myogenesis.
RNA. 2022 Apr;28(4):523-540. doi: 10.1261/rna.078993.121. Epub 2022 Jan 26.

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2
CLTC as a clinically novel gene associated with multiple malformations and developmental delay.
Am J Med Genet A. 2016 Apr;170A(4):958-66. doi: 10.1002/ajmg.a.37506. Epub 2016 Jan 29.
3
The RNA-binding protein Rbfox1 regulates splicing required for skeletal muscle structure and function.
Hum Mol Genet. 2015 Apr 15;24(8):2360-74. doi: 10.1093/hmg/ddv003. Epub 2015 Jan 9.
4
Rbfox2-coordinated alternative splicing of Mef2d and Rock2 controls myoblast fusion during myogenesis.
Mol Cell. 2014 Aug 21;55(4):592-603. doi: 10.1016/j.molcel.2014.06.035. Epub 2014 Jul 31.
5
Actin scaffolding by clathrin heavy chain is required for skeletal muscle sarcomere organization.
J Cell Biol. 2014 May 12;205(3):377-93. doi: 10.1083/jcb.201309096. Epub 2014 May 5.
7
CIP4 is required for the hypertrophic growth of neonatal cardiac myocytes.
J Biomed Sci. 2013 Aug 3;20(1):56. doi: 10.1186/1423-0127-20-56.
8
Junctophilin-2 is necessary for T-tubule maturation during mouse heart development.
Cardiovasc Res. 2013 Oct 1;100(1):44-53. doi: 10.1093/cvr/cvt133. Epub 2013 May 27.
9
The F-BAR protein Cip4/Toca-1 antagonizes the formin Diaphanous in membrane stabilization and compartmentalization.
J Cell Sci. 2013 Apr 15;126(Pt 8):1796-805. doi: 10.1242/jcs.118422. Epub 2013 Feb 19.
10
mRNA expression, splicing and editing in the embryonic and adult mouse cerebral cortex.
Nat Neurosci. 2013 Apr;16(4):499-506. doi: 10.1038/nn.3332. Epub 2013 Feb 17.

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