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Mechanisms of Development|August 7, 2008
Formation of the zebrafish midbrain-hindbrain boundary constriction requires laminin-dependent basal constrictionJennifer H Gutzman, Ellie G Graeden, Laura Anne Lowery, et al.Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology|November 21, 2023
Re-examining the evidence that ivermectin induces a melanoma-like state in Xenopus embryosAinsley Hutchison, Chiedza Sibanda, Mackenzie Hulme, et al.Frontiers in Genetics|April 11, 2022
16p12.1 Deletion Orthologs are Expressed in Motile Neural Crest Cells and are Important for Regulating Craniofacial Development in Xenopus laevisMicaela Lasser, Jessica Bolduc, Luke Murphy, et al.Molecular and Cellular Biology|February 6, 2013
Multiparametric analysis of CLASP-interacting protein functions during interphase microtubule dynamicsJennifer B Long, Maria Bagonis, Laura Anne Lowery, et al.Integrative Biology : Quantitative Biosciences From Nano to Macro|March 2, 2016
Conserved roles for cytoskeletal components in determining lateralityGary S McDowell, Joan M Lemire, Jean-Francois Paré, et al.Frontiers in Physiology|March 5, 2021
Corrigendum: Wolf-Hirschhorn Syndrome-Associated Genes Are Enriched in Motile Neural Crest Cells and Affect Craniofacial Development in Xenopus laevisAlexandra Mills, Elizabeth Bearce, Rachael Cella, et al.Journal of Cell Science|March 21, 2019
XMAP215 promotes microtubule-F-actin interactions to regulate growth cone microtubules during axon guidance in XenopuslaevisPaula G Slater, Garrett M Cammarata, Annika G Samuelson, et al.Frontiers in Physiology|April 30, 2019
Wolf-Hirschhorn Syndrome-Associated Genes Are Enriched in Motile Neural Crest Cells and Affect Craniofacial Development in Xenopus laevisAlexandra Mills, Elizabeth Bearce, Rachael Cella, et al.Cytoskeleton (Hoboken, N.J.)|June 17, 2020
Investigating the impact of the phosphorylation status of tyrosine residues within the TACC domain of TACC3 on microtubule behavior during axon growth and guidanceBurcu Erdogan, Riley M St Clair, Garrett M Cammarata, et al.Molecular Biology of the Cell|August 26, 2016
Xenopus TACC2 is a microtubule plus end-tracking protein that can promote microtubule polymerization during embryonic developmentErin L Rutherford, Leslie Carandang, Patrick T Ebbert, et al.Pageof 4