Simon J. Rhodes
Indiana University – Purdue University Indianapolis
96 Papers
1.4K Citations
Simon J. Rhodes is an academic researcher from Indiana University – Purdue University Indianapolis. The author has contributed to research in topics: LHX3 & Transcription factor. The author has an hindex of 35, co-authored 96 publications. Previous affiliations of Simon J. Rhodes include Purdue University & Boston University.
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Papers
Identification of MRF4: a new member of the muscle regulatory factor gene family.
TL;DR: The myofiber-specific expression pattern of MyoD1 and myogenin in these cells suggests that the primary role for this muscle regulatory factor gene family may be in regulating specific terminal differentiation events that are crucial for normal skeletal muscle development.
Expression of the muscle regulatory factor MRF4 during somite and skeletal myofiber development
TL;DR: Differences in the expression patterns for MRF4, myogenin, myf-5 and MyoD between myotomal and other skeletal muscle development suggest that the relative timing of expression for each muscle regulatory factor may control the distinct phenotypes associated with myOTomal myocytes and multinucleate myofibers.
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Identification of the Single Base Change Causing the Callipyge Muscle Hypertrophy Phenotype, the Only Known Example of Polar Overdominance in Mammals
Brad A. Freking,Susan K. Murphy,Andrew A. Wylie,Simon J. Rhodes,John W. Keele,Kreg A. Leymaster,Randy L. Jirtle,Timothy P. L. Smith +7 more
TL;DR: Initial functional analysis indicates sequence encompassing the mutation is part of a novel transcript expressed in sheep fetal muscle the authors have named CLPG1, which lies in a region of high homology among mouse, sheep, cattle, and humans, but not in any previously identified expressed transcript.
Differential trans activation associated with the muscle regulatory factors MyoD1, myogenin, and MRF4.
TL;DR: It is found that MyoD1, myogenin, and MRF4 exhibited different trans-activation capacities, and these observations suggest that the individual members of the muscle regulatory factor family have distinct biological roles in controlling skeletal muscle development.
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The Transcription Factor Encyclopedia
Dimas Yusuf,Stefanie L. Butland,Magdalena I. Swanson,Eugene Bolotin,Amy Ticoll,Warren A. Cheung,Xiao Yu Cindy Zhang,Christopher Td Dickman,Debra L. Fulton,Jonathan Lim,Jake Schnabl,Oscar H. P. Ramos,Mireille Vasseur-Cognet,Charles N. de Leeuw,Elizabeth M. Simpson,Gerhart U. Ryffel,Eric Lam,Ralf Kist,Miranda Sc Wilson,Raquel Marco-Ferreres,Jan J. Brosens,Leonardo Beccari,Paola Bovolenta,Bérénice A. Benayoun,Lara J. Monteiro,Helma Dc Schwenen,Lars Grøntved,Elizabeth D. Wederell,Susanne Mandrup,Reiner A. Veitia,Harini Chakravarthy,Pamela A. Hoodless,M. Michela Mancarelli,Bruce E. Torbett,Alison H. Banham,Sekhar P. Reddy,Rebecca L. Cullum,Michaela Liedtke,Mario P. Tschan,Michelle Vaz,Angie Rizzino,Mariastella Zannini,Seth Frietze,Peggy J. Farnham,Astrid Eijkelenboom,Philip J. Brown,David Laperrière,Dominique Leprince,Tiziana de Cristofaro,Kelly L. Prince,Marrit Putker,Luis del Peso,Gieri Camenisch,Roland H. Wenger,Michal Mikula,Marieke Rozendaal,Sylvie Mader,Jerzy Ostrowski,Simon J. Rhodes,Capucine Van Rechem,Gaylor Boulay,Sam W. Z. Olechnowicz,Mary B. Breslin,Michael S. Lan,Kyster K. Nanan,Michael Wegner,Juan Hou,Rachel D. Mullen,Stephanie C. Colvin,Peter J. Noy,Carol F. Webb,Matthew E. Witek,Scott Ferrell,Juliet M. Daniel,Jason Y. Park,Scott A. Waldman,Daniel J. Peet,Michael J. Taggart,Padma-Sheela Jayaraman,Julien J. Karrich,Bianca Blom,Farhad Vesuna,Henriette O'Geen,Yunfu Sun,Richard M. Gronostajski,Mark W. Woodcroft,Margaret R. Hough,Edwin Chen,Nicholas Europe-Finner,Magdalena Karolczak-Bayatti,Jarrod Bailey,Oliver Hankinson,Venu Raman,David P. LeBrun,Shyam Biswal,Christopher J. Harvey,Jason P. DeBruyne,John B. Hogenesch,Robert F. Hevner,Christophe Héligon,Xin M. Luo,Marissa Cathleen Blank,Kathleen J. Millen,David S. Sharlin,Douglas Forrest,Karin Dahlman-Wright,Chunyan Zhao,Yuriko Mishima,Satrajit Sinha,Rumela Chakrabarti,Elodie Portales-Casamar,Frances M. Sladek,Philip Bradley,Wyeth W. Wasserman +113 more
TL;DR: The Transcription Factor Encyclopedia (TFe), a new web-based compendium of mini review articles on transcription factors (TFs) that is founded on the principles of open access and collaboration, is presented.
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