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BMC Developmental Biology|May 18, 2011
Correct anteroposterior patterning of the zebrafish neurectoderm in the absence of the early dorsal organizerMáté Varga, Shingo Maegawa, Eric S Weinberg
Journal of Cellular Physiology|November 6, 2009
Molecular dissection of Otx1 functional domains in the zebrafish embryoGianfranco Bellipanni, Tohru Murakami, Eric S Weinberg
Development (Cambridge, England)|July 29, 2006
FGF signaling is required for {beta}-catenin-mediated induction of the zebrafish organizerShingo Maegawa, Máté Varga, Eric S Weinberg
Development Genes and Evolution|October 18, 2016
Bone morphogenetic protein-4 expression characterizes inductive boundaries in organs of developing zebrafishA J Chin, Jau-Nian Chen, Eric S Weinberg
Developmental Biology|March 6, 2017
Chordin and dickkopf-1b are essential for the formation of head structures through activation of the FGF signaling pathway in zebrafishShingo Tanaka, Hiroshi Hosokawa, Eric S Weinberg, et al.
Mechanisms of Development|August 10, 2007
Chordin expression, mediated by Nodal and FGF signaling, is restricted by redundant function of two beta-catenins in the zebrafish embryoMáté Varga, Shingo Maegawa, Gianfranco Bellipanni, et al.
Developmental Biology|December 2, 2004
The zebrafish dog-eared mutation disrupts eya1, a gene required for cell survival and differentiation in the inner ear and lateral lineDavid J Kozlowski, Tanya T Whitfield, Neil A Hukriede, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 10, 2010
Induction and patterning of trunk and tail neural ectoderm by the homeobox gene eve1 in zebrafish embryosCarlos Cruz, Shingo Maegawa, Eric S Weinberg, et al.
Nature|December 16, 2005
The zebrafish dorsal axis is apparent at the four-cell stageAniket V Gore, Shingo Maegawa, Albert Cheong, et al.
The Journal of Biological Chemistry|August 27, 2009
The terminal region of beta-catenin promotes stability by shielding the Armadillo repeats from the axin-scaffold destruction complexRigen Mo, Teng-Leong Chew, Meghan T Maher, et al.
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