Herculin

Herculin is a lipid of Fatty Acyls (FA) class.

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There are no associated biomedical information in the current reference collection.

Current reference collection contains 723 references associated with Herculin in LipidPedia. Due to lack of full text of references or no associated biomedical terms are recognized in our current text-mining method, we cannot extract any biomedical terms related to diseases, pathways, locations, functions, genes, lipids, and animal models from the associated reference collection.

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Authors Title Published Journal PubMed Link
Sambasivan R et al. Distinct regulatory cascades govern extraocular and pharyngeal arch muscle progenitor cell fates. 2009 Dev. Cell pmid:19531352
Braun T and Arnold HH The four human muscle regulatory helix-loop-helix proteins Myf3-Myf6 exhibit similar hetero-dimerization and DNA binding properties. 1991 Nucleic Acids Res. pmid:1945842
Schnapp E et al. Induced early expression of mrf4 but not myog rescues myogenesis in the myod/myf5 double-morphant zebrafish embryo. 2009 J. Cell. Sci. pmid:19193870
Hinits Y et al. Differential requirements for myogenic regulatory factors distinguish medial and lateral somitic, cranial and fin muscle fibre populations. 2009 Development pmid:19141670
McKay BR et al. Co-expression of IGF-1 family members with myogenic regulatory factors following acute damaging muscle-lengthening contractions in humans. 2008 J. Physiol. (Lond.) pmid:18818249
Kim JA et al. Expression of myogenic regulatory factors in the muscle-derived electric organ of Sternopygus macrurus. 2008 J. Exp. Biol. pmid:18552307
Yafe A et al. Differential binding of quadruplex structures of muscle-specific genes regulatory sequences by MyoD, MRF4 and myogenin. 2008 Nucleic Acids Res. pmid:18511462
Chakraborty T et al. Differential trans-activation of a muscle-specific enhancer by myogenic helix-loop-helix proteins is separable from DNA binding. 1991 J. Biol. Chem. pmid:1847137
Lin H et al. Muscle-specific expression of the troponin I gene requires interactions between helix-loop-helix muscle regulatory factors and ubiquitous transcription factors. 1991 Mol. Cell. Biol. pmid:1846022
Haldar M et al. Two cell lineages, myf5 and myf5-independent, participate in mouse skeletal myogenesis. 2008 Dev. Cell pmid:18331721
Wang YH et al. Inactivation of zebrafish mrf4 leads to myofibril misalignment and motor axon growth disorganization. 2008 Dev. Dyn. pmid:18297736
Carvajal JJ et al. Global transcriptional regulation of the locus encoding the skeletal muscle determination genes Mrf4 and Myf5. 2008 Genes Dev. pmid:18198342
Gayraud-Morel B et al. A role for the myogenic determination gene Myf5 in adult regenerative myogenesis. 2007 Dev. Biol. pmid:17961534
pmid:17959144
Chang TH et al. The A17 enhancer directs expression of Myf5 to muscle satellite cells but Mrf4 to myonuclei. 2007 Dev. Dyn. pmid:17948300
pmid:17894566
Clark J et al. Expression of members of the myf gene family in human rhabdomyosarcomas. 1991 Br. J. Cancer pmid:1764365
Hinits Y et al. Mrf4 (myf6) is dynamically expressed in differentiated zebrafish skeletal muscle. 2007 Gene Expr. Patterns pmid:17638597
Pelosi M et al. ROCK2 and its alternatively spliced isoform ROCK2m positively control the maturation of the myogenic program. 2007 Mol. Cell. Biol. pmid:17606625
pmid:17590360
Ustanina S et al. The myogenic factor Myf5 supports efficient skeletal muscle regeneration by enabling transient myoblast amplification. 2007 Stem Cells pmid:17495111
pmid:17374966
Tonin PN et al. Muscle-specific gene expression in rhabdomyosarcomas and stages of human fetal skeletal muscle development. 1991 Cancer Res. pmid:1717137
pmid:1715299
Grifone R et al. Eya1 and Eya2 proteins are required for hypaxial somitic myogenesis in the mouse embryo. 2007 Dev. Biol. pmid:17098221
Yutzey KE et al. Differential trans activation associated with the muscle regulatory factors MyoD1, myogenin, and MRF4. 1990 Mol. Cell. Biol. pmid:1695319
pmid:16820272
Carvalho RF et al. Heart failure alters MyoD and MRF4 expressions in rat skeletal muscle. 2006 Int J Exp Pathol pmid:16709230
pmid:16682754
Kosek DJ et al. Efficacy of 3 days/wk resistance training on myofiber hypertrophy and myogenic mechanisms in young vs. older adults. 2006 J. Appl. Physiol. pmid:16614355
Raue U et al. Myogenic gene expression at rest and after a bout of resistance exercise in young (18-30 yr) and old (80-89 yr) women. 2006 J. Appl. Physiol. pmid:16601301
Chakraborty T and Olson EN Domains outside of the DNA-binding domain impart target gene specificity to myogenin and MRF4. 1991 Mol. Cell. Biol. pmid:1658626
pmid:16443371
Knapp JR et al. Loss of myogenin in postnatal life leads to normal skeletal muscle but reduced body size. 2006 Development pmid:16407395
pmid:1639267
Seo KW et al. Targeted disruption of the DM domain containing transcription factor Dmrt2 reveals an essential role in somite patterning. 2006 Dev. Biol. pmid:16387292
Della Gaspera B et al. Spatio-temporal expression of MRF4 transcripts and protein during Xenopus laevis embryogenesis. 2006 Dev. Dyn. pmid:16258964
pmid:16055116
pmid:16007210
pmid:16007124
pmid:16006807
Sakuma K et al. Cyclosporin A treatment upregulates Id1 and Smad3 expression and delays skeletal muscle regeneration. 2005 Acta Neuropathol. pmid:15986223
pmid:15896471
Block NE and Miller JB Expression of MRF4, a myogenic helix-loop-helix protein, produces multiple changes in the myogenic program of BC3H-1 cells. 1992 Mol. Cell. Biol. pmid:1588952
Grifone R et al. Six1 and Six4 homeoproteins are required for Pax3 and Mrf expression during myogenesis in the mouse embryo. 2005 Development pmid:15788460
pmid:15595701
pmid:15587984
Keller C et al. Alveolar rhabdomyosarcomas in conditional Pax3:Fkhr mice: cooperativity of Ink4a/ARF and Trp53 loss of function. 2004 Genes Dev. pmid:15489287
pmid:15386014
pmid:15282164

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