Connection
Michael Klymkowsky to Xenopus Proteins
This is a "connection" page, showing publications Michael Klymkowsky has written about Xenopus Proteins.
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Connection Strength |
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4.296 |
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Zhao Y, Shi J, Winey M, Klymkowsky MW. Identifying domains of EFHC1 involved in ciliary localization, ciliogenesis, and the regulation of Wnt signaling. Dev Biol. 2016 Mar 15; 411(2):257-265.
Score: 0.510
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Shi J, Zhao Y, Vonderfecht T, Winey M, Klymkowsky MW. Centrin-2 (Cetn2) mediated regulation of FGF/FGFR gene expression in Xenopus. Sci Rep. 2015 May 27; 5:10283.
Score: 0.488
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Shi J, Zhao Y, Galati D, Winey M, Klymkowsky MW. Chibby functions in Xenopus ciliary assembly, embryonic development, and the regulation of gene expression. Dev Biol. 2014 Nov 15; 395(2):287-98.
Score: 0.465
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Shi J, Severson C, Yang J, Wedlich D, Klymkowsky MW. Snail2 controls mesodermal BMP/Wnt induction of neural crest. Development. 2011 Aug; 138(15):3135-45.
Score: 0.372
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Zhang C, Klymkowsky MW. Unexpected functional redundancy between Twist and Slug (Snail2) and their feedback regulation of NF-kappaB via Nodal and Cerberus. Dev Biol. 2009 Jul 15; 331(2):340-9.
Score: 0.320
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Zhang C, Klymkowsky MW. The Sox axis, Nodal signaling, and germ layer specification. Differentiation. 2007 Jul; 75(6):536-45.
Score: 0.282
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Zhang C, Carl TF, Trudeau ED, Simmet T, Klymkowsky MW. An NF-kappaB and slug regulatory loop active in early vertebrate mesoderm. PLoS One. 2006 Dec 27; 1:e106.
Score: 0.272
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Zhang C, Basta T, Klymkowsky MW. SOX7 and SOX18 are essential for cardiogenesis in Xenopus. Dev Dyn. 2005 Dec; 234(4):878-91.
Score: 0.253
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Zhang C, Basta T, Fawcett SR, Klymkowsky MW. SOX7 is an immediate-early target of VegT and regulates Nodal-related gene expression in Xenopus. Dev Biol. 2005 Feb 15; 278(2):526-41.
Score: 0.239
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Fawcett SR, Klymkowsky MW. Embryonic expression of Xenopus laevis SOX7. Gene Expr Patterns. 2004 Jan; 4(1):29-33.
Score: 0.221
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Zhang C, Basta T, Jensen ED, Klymkowsky MW. The beta-catenin/VegT-regulated early zygotic gene Xnr5 is a direct target of SOX3 regulation. Development. 2003 Dec; 130(23):5609-24.
Score: 0.217
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St Amand AL, Klymkowsky MW. Cadherins and catenins, Wnts and SOXs: embryonic patterning in Xenopus. Int Rev Cytol. 2001; 203:291-355.
Score: 0.180
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Klymkowsky MW. Mitochondrial activity, embryogenesis, and the dialogue between the big and little brains of the cell. Mitochondrion. 2011 Sep; 11(5):814-9.
Score: 0.089
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Hikasa H, Ezan J, Itoh K, Li X, Klymkowsky MW, Sokol SY. Regulation of TCF3 by Wnt-dependent phosphorylation during vertebrate axis specification. Dev Cell. 2010 Oct 19; 19(4):521-32.
Score: 0.089
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Schlosser G, Awtry T, Brugmann SA, Jensen ED, Neilson K, Ruan G, Stammler A, Voelker D, Yan B, Zhang C, Klymkowsky MW, Moody SA. Eya1 and Six1 promote neurogenesis in the cranial placodes in a SoxB1-dependent fashion. Dev Biol. 2008 Aug 01; 320(1):199-214.
Score: 0.075
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Zhang C, Basta T, Hernandez-Lagunas L, Simpson P, Stemple DL, Artinger KB, Klymkowsky MW. Repression of nodal expression by maternal B1-type SOXs regulates germ layer formation in Xenopus and zebrafish. Dev Biol. 2004 Sep 01; 273(1):23-37.
Score: 0.058
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Klymkowsky MW, Williams BO, Barish GD, Varmus HE, Vourgourakis YE. Membrane-anchored plakoglobins have multiple mechanisms of action in Wnt signaling. Mol Biol Cell. 1999 Oct; 10(10):3151-69.
Score: 0.041
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Zorn AM, Barish GD, Williams BO, Lavender P, Klymkowsky MW, Varmus HE. Regulation of Wnt signaling by Sox proteins: XSox17 alpha/beta and XSox3 physically interact with beta-catenin. Mol Cell. 1999 Oct; 4(4):487-98.
Score: 0.041
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Merriam JM, Rubenstein AB, Klymkowsky MW. Cytoplasmically anchored plakoglobin induces a WNT-like phenotype in Xenopus. Dev Biol. 1997 May 01; 185(1):67-81.
Score: 0.035
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Klymkowsky MW, Parr B. The body language of cells: the intimate connection between cell adhesion and behavior. Cell. 1995 Oct 06; 83(1):5-8.
Score: 0.031
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Rossi CC, Hernandez-Lagunas L, Zhang C, Choi IF, Kwok L, Klymkowsky M, Artinger KB. Rohon-Beard sensory neurons are induced by BMP4 expressing non-neural ectoderm in Xenopus laevis. Dev Biol. 2008 Feb 15; 314(2):351-61.
Score: 0.018
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Connection Strength
The connection strength for concepts is the sum of the scores for each matching publication.
Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.
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