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An Early Function of Polycystin-2 for Left- Right Organizer Induction in Xenopus. , Vick P , Kreis J, Schneider I, Tingler M, Getwan M , Thumberger T , Beyer T, Schweickert A , Blum M ., iScience. April 27, 2018; 2 76-85.
Pitx1 regulates cement gland development in Xenopus laevis through activation of transcriptional targets and inhibition of BMP signaling. , Jin Y, Weinstein DC ., Dev Biol. May 1, 2018; 437 (1): 41-49.
Roles of Xenopus chemokine ligand CXCLh (XCXCLh) in early embryogenesis. , Goto T , Ito Y , Michiue T ., Dev Growth Differ. May 1, 2018; 60 (4): 226-238.
Embryonic regeneration by relocalization of the Spemann organizer during twinning in Xenopus. , Moriyama Y , De Robertis EM ., Proc Natl Acad Sci U S A. May 22, 2018; 115 (21): E4815-E4822.
A gene regulatory network underlying the formation of pre-placodal ectoderm in Xenopus laevis. , Maharana SK , Schlosser G ., BMC Biol. July 16, 2018; 16 (1): 79.
The age-regulated zinc finger factor ZNF367 is a new modulator of neuroblast proliferation during embryonic neurogenesis. , Naef V, Monticelli S, Corsinovi D, Mazzetto MT, Cellerino A, Ori M ., Sci Rep. August 7, 2018; 8 (1): 11836.
Histone deacetylase activity has an essential role in establishing and maintaining the vertebrate neural crest. , Rao A, LaBonne C ., Development. August 8, 2018; 145 (15):
Serine Threonine Kinase Receptor-Associated Protein Deficiency Impairs Mouse Embryonic Stem Cells Lineage Commitment Through CYP26A1-Mediated Retinoic Acid Homeostasis. , Jin L, Chang C , Pawlik KM, Datta A, Johnson LM, Vu T, Napoli JL, Datta PK., Stem Cells. September 1, 2018; 36 (9): 1368-1379.
MMP14 Regulates Cranial Neural Crest Epithelial-to-Mesenchymal Transition and Migration. , Garmon T, Wittling M, Nie S ., Dev Dyn. September 1, 2018; 247 (9): 1083-1092.
Par3 interacts with Prickle3 to generate apical PCP complexes in the vertebrate neural plate. , Chuykin I, Ossipova O, Sokol SY ., Elife. September 26, 2018; 7
The Xenopus animal cap transcriptome: building a mucociliary epithelium. , Angerilli A, Smialowski P, Rupp RA ., Nucleic Acids Res. September 28, 2018; 46 (17): 8772-8787.
The b-HLH transcription factor Hes3 participates in neural plate border formation by interfering with Wnt/ β-catenin signaling. , Hong CS , Saint-Jeannet JP ., Dev Biol. October 1, 2018; 442 (1): 162-172.
Cdc42 regulates the cellular localization of Cdc42ep1 in controlling neural crest cell migration. , Cohen S, Kovari DT, Wei W, Keate R, Curtis JE, Nie S ., J Mol Cell Biol. October 1, 2018; 10 (5): 376-387.
Multiscale analysis of architecture, cell size and the cell cortex reveals cortical F-actin density and composition are major contributors to mechanical properties during convergent extension. , Shawky JH, Balakrishnan UL, Stuckenholz C, Davidson LA , Davidson LA ., Development. October 5, 2018; 145 (19):
Xenopus SOX5 enhances myogenic transcription indirectly through transrepression. , Della Gaspera B , Chesneau A, Weill L, Charbonnier F, Chanoine C ., Dev Biol. October 15, 2018; 442 (2): 262-275.
Fam46a regulates BMP-dependent pre-placodal ectoderm differentiation in Xenopus. , Watanabe T, Yamamoto T , Tsukano K, Hirano S, Horikawa A, Michiue T ., Development. October 26, 2018; 145 (20):
The Lhx1- Ldb1 complex interacts with Furry to regulate microRNA expression during pronephric kidney development. , Espiritu EB, Crunk AE, Bais A, Hochbaum D, Cervino AS, Phua YL, Butterworth MB, Goto T , Ho J, Hukriede NA, Cirio MC ., Sci Rep. October 30, 2018; 8 (1): 16029.
Identification of retinal homeobox ( rax) gene-dependent genes by a microarray approach: The DNA endoglycosylase neil3 is a major downstream component of the rax genetic pathway. , Pan Y, Kelly LE, El-Hodiri HM ., Dev Dyn. November 1, 2018; 247 (11): 1199-1210.
CDC20B is required for deuterosome-mediated centriole production in multiciliated cells. , Revinski DR, Zaragosi LE , Boutin C, Ruiz-Garcia S, Deprez M, Thomé V, Rosnet O, Gay AS, Mercey O, Paquet A, Pons N, Ponzio G, Marcet B, Kodjabachian L , Barbry P., Nat Commun. November 7, 2018; 9 (1): 4668.
The extraordinary biology and development of marsupial frogs (Hemiphractidae) in comparison with fish, mammals, birds, amphibians and other animals. , Del Pino EM ., Mech Dev. December 1, 2018; 154 2-11.
Characterization of Pax3 and Sox10 transgenic Xenopus laevis embryos as tools to study neural crest development. , Alkobtawi M, Ray H , Barriga EH, Moreno M, Kerney R, Monsoro-Burq AH , Saint-Jeannet JP , Mayor R ., Dev Biol. December 1, 2018; 444 Suppl 1 S202-S208.
Early specification and development of rabbit neural crest cells. , Betters E, Charney RM , Garcia-Castro MI., Dev Biol. December 1, 2018; 444 Suppl 1 S181-S192.
Gli2 is required for the induction and migration of Xenopus laevis neural crest. , Cerrizuela S, Vega-López GA, Palacio MB, Tríbulo C, Aybar MJ , Aybar MJ ., Mech Dev. December 1, 2018; 154 219-239.
Molecular characterization of wdr68 gene in embryonic development of Xenopus laevis. , Bonano M, Martín E, Moreno Ruiz Holgado MM, Silenzi Usandivaras GM, Ruiz De Bigliardo G, Aybar MJ , Aybar MJ ., Gene Expr Patterns. December 1, 2018; 30 55-63.
Characterization of potential TRPP2 regulating proteins in early Xenopus embryos. , Futel M, Le Bouffant R , Buisson I , Umbhauer M , Riou JF ., J Cell Biochem. December 1, 2018; 119 (12): 10338-10350.
Expression of trpv channels during Xenopus laevis embryogenesis. , Dong C, Paudel S, Amoh NY, Saha MS ., Gene Expr Patterns. December 1, 2018; 30 64-70.
Physiological effects of KDM5C on neural crest migration and eye formation during vertebrate development. , Kim Y, Jeong Y, Kwon K, Ismail T, Lee HK , Kim C, Park JW , Kwon OS, Kang BS, Lee DS, Park TJ, Kwon T , Lee HS ., Epigenetics Chromatin. December 6, 2018; 11 (1): 72.
The RhoGEF protein Plekhg5 regulates apical constriction of bottle cells during gastrulation. , Popov IK, Ray HJ , Skoglund P , Keller R , Chang C ., Development. December 12, 2018; 145 (24):
A transition from SoxB1 to SoxE transcription factors is essential for progression from pluripotent blastula cells to neural crest cells. , Buitrago-Delgado E, Schock EN , Nordin K, LaBonne C ., Dev Biol. December 15, 2018; 444 (2): 50-61.
The Frog Xenopus as a Model to Study Joubert Syndrome: The Case of a Human Patient With Compound Heterozygous Variants in PIBF1. , Ott T, Kaufmann L, Granzow M, Hinderhofer K, Bartram CR, Theiß S, Seitz A, Paramasivam N, Schulz A, Moog U, Blum M , Evers CM., Front Physiol. January 1, 2019; 10 134.
Altering the levels of nuclear import factors in early Xenopus laevis embryos affects later development. , Jevtić P, Mukherjee RN, Chen P, Levy DL ., PLoS One. January 1, 2019; 14 (4): e0215740.
A YWHAZ Variant Associated With Cardiofaciocutaneous Syndrome Activates the RAF- ERK Pathway. , Popov IK, Hiatt SM, Whalen S, Keren B, Ruivenkamp C, van Haeringen A, Chen MJ, Cooper GM, Korf BR, Chang C ., Front Physiol. January 1, 2019; 10 388.
Cdc42 Effector Protein 3 Interacts With Cdc42 in Regulating Xenopus Somite Segmentation. , Kho M, Shi H , Nie S ., Front Physiol. January 1, 2019; 10 542.
Comparative analysis of p4ha1 and p4ha2 expression during Xenopus laevis development. , Martini D, Giannaccini M, Guadagni V, Marracci S , Giudetti G, Andreazzoli M ., Int J Dev Biol. January 1, 2019; 63 (6-7): 311-316.
Xenopus laevis FGF16 activates the expression of genes coding for the transcription factors Sp5 and Sp5l. , Elsy M, Rowbotham A, Lord H, Isaacs HV , Pownall ME ., Int J Dev Biol. January 1, 2019; 63 (11-12): 631-639.
Non-acylated Wnts Can Promote Signaling. , Speer KF, Sommer A, Tajer B, Mullins MC, Klein PS , Lemmon MA., Cell Rep. January 22, 2019; 26 (4): 875-883.e5.
Nucleotide receptor P2RY4 is required for head formation via induction and maintenance of head organizer in Xenopus laevis. , Harata A, Hirakawa M, Sakuma T, Yamamoto T , Hashimoto C., Dev Growth Differ. February 1, 2019; 61 (2): 186-197.
Lysine demethylase 3a in craniofacial and neural development during Xenopus embryogenesis. , Lee HK , Ismail T, Kim C, Kim Y, Park JW , Kwon OS, Kang BS, Lee DS, Kwon T , Park TJ, Lee HS ., Int J Mol Med. February 1, 2019; 43 (2): 1105-1113.
Xenopus slc7a5 is essential for notochord function and eye development. , Katada T, Sakurai H., Mech Dev. February 1, 2019; 155 48-59.
Leukemia inhibitory factor signaling in Xenopus embryo: Insights from gain of function analysis and dominant negative mutant of the receptor. , Jalvy S, Veschambre P, Fédou S, Rezvani HR, Thézé N , Thiébaud P ., Dev Biol. March 15, 2019; 447 (2): 200-213.
Developmental expression of three prmt genes in Xenopus. , Wang CD , Wang CD , Wang CD , Guo XF, Wong TCB, Wang H, Qi XF, Cai DQ, Deng Y, Zhao H ., Zool Res. March 18, 2019;
Prdm12 Directs Nociceptive Sensory Neuron Development by Regulating the Expression of the NGF Receptor TrkA. , Desiderio S, Vermeiren S, Van Campenhout C, Kricha S, Malki E, Richts S, Fletcher EV, Vanwelden T, Schmidt BZ, Henningfeld KA , Pieler T , Woods CG, Nagy V, Verfaillie C, Bellefroid EJ ., Cell Rep. March 26, 2019; 26 (13): 3522-3536.e5.
Characterization of Xenopus laevis guanine deaminase reveals new insights for its expression and function in the embryonic kidney. , Slater PG , Cammarata GM , Monahan C, Bowers JT , Yan O, Lee S, Lowery LA ., Dev Dyn. April 1, 2019; 248 (4): 296-305.
Developmental regulation of Wnt signaling by Nagk and the UDP-GlcNAc salvage pathway. , Neitzel LR, Spencer ZT, Nayak A, Cselenyi CS, Benchabane H, Youngblood CQ, Zouaoui A, Ng V, Stephens L, Hann T, Patton JG, Robbins D, Ahmed Y, Lee E ., Mech Dev. April 1, 2019; 156 20-31.
Agr2-interacting Prod1-like protein Tfp4 from Xenopus laevis is necessary for early forebrain and eye development as well as for the tadpole appendage regeneration. , Tereshina MB, Ivanova AS, Eroshkin FM, Korotkova DD, Nesterenko AM, Bayramov AV, Solovieva EA, Parshina EA, Orlov EE, Martynova NY, Zaraisky AG ., Genesis. May 1, 2019; 57 (5): e23293.
A dual function of FGF signaling in Xenopus left- right axis formation. , Schneider I, Kreis J, Schweickert A , Blum M , Vick P ., Development. May 10, 2019; 146 (9):
A deficiency in SUMOylation activity disrupts multiple pathways leading to neural tube and heart defects in Xenopus embryos. , Bertke MM, Dubiak KM , Cronin L, Zeng E, Huber PW ., BMC Genomics. May 17, 2019; 20 (1): 386.
Barhl2 maintains T cell factors as repressors and thereby switches off the Wnt/ β-Catenin response driving Spemann organizer formation. , Sena E, Rocques N, Borday C, Muhamad Amin HS, Parain K , Sitbon D , Chesneau A, Durand BC ., Development. May 22, 2019; 146 (10):
Evolution of the Rho guanine nucleotide exchange factors Kalirin and Trio and their gene expression in Xenopus development. , Kratzer MC, England L, Apel D, Hassel M, Borchers A ., Gene Expr Patterns. June 1, 2019; 32 18-27.
Loss of function of Kmt2d, a gene mutated in Kabuki syndrome, affects heart development in Xenopus laevis. , Schwenty-Lara J, Nürnberger A, Borchers A ., Dev Dyn. June 1, 2019; 248 (6): 465-476.