Results 1 - 50 of 78 results
In vivo high-content imaging and regression analysis reveal non-cell autonomous functions of Shroom3 during neural tube closure. , Baldwin AT, Kim JH , Wallingford JB ., Dev Biol. November 1, 2022; 491 105-112.
Distinct spatiotemporal contribution of morphogenetic events and mechanical tissue coupling during Xenopus neural tube closure. , Christodoulou N, Skourides PA ., Development. July 1, 2022; 149 (13):
Alignment of the cell long axis by unidirectional tension acts cooperatively with Wnt signalling to establish planar cell polarity. , Hirano S, Mii Y , Charras G, Michiue T ., Development. June 15, 2022; 149 (12):
Analysis of Planar Cell Polarity Complexes by Proximity Biotinylation in Xenopus Embryos. , Chuykin I, Sokol SY ., Methods Mol Biol. January 1, 2022; 2438 97-106.
Somitic mesoderm morphogenesis is necessary for neural tube closure during Xenopus development. , Christodoulou N, Skourides PA ., Front Cell Dev Biol. January 1, 2022; 10 1091629.
Frizzled3 inhibits Vangl2- Prickle3 association to establish planar cell polarity in the vertebrate neural plate. , Chuykin I, Itoh K, Kim K, Sokol SY ., J Cell Sci. December 15, 2021; 134 (24):
The dorsal blastopore lip is a source of signals inducing planar cell polarity in the Xenopus neural plate. , Mancini P , Ossipova O, Sokol SY ., Biol Open. July 15, 2021; 10 (7):
Neural tube closure requires the endocytic receptor Lrp2 and its functional interaction with intracellular scaffolds. , Kowalczyk I, Lee C , Schuster E, Hoeren J, Trivigno V, Riedel L, Görne J, Wallingford JB , Hammes A, Feistel K ., Development. January 26, 2021; 148 (2):
Modeling endoderm development and disease in Xenopus. , Edwards NA , Zorn AM ., Curr Top Dev Biol. January 1, 2021; 145 61-90.
Pinhead signaling regulates mesoderm heterogeneity via FGF receptor-dependent pathway. , Ossipova O, Itoh K, Radu A, Ezan J, Sokol SY ., Development. January 1, 2020;
Vangl2 coordinates cell rearrangements during gut elongation. , Dush MK, Nascone-Yoder NM ., Dev Dyn. July 1, 2019; 248 (7): 569-582.
GPCR-independent activation of G proteins promotes apical cell constriction in vivo. , Marivin A, Morozova V, Walawalkar I, Leyme A, Kretov DA, Cifuentes D, Dominguez I , Garcia-Marcos M ., J Cell Biol. May 6, 2019; 218 (5): 1743-1763.
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
Spatial and temporal analysis of PCP protein dynamics during neural tube closure. , Butler MT, Wallingford JB ., Elife. August 6, 2018; 7
CLAMP/Spef1 regulates planar cell polarity signaling and asymmetric microtubule accumulation in the Xenopus ciliated epithelia. , Kim SK, Zhang S , Werner ME, Brotslaw EJ, Mitchell JW, Altabbaa MM, Mitchell BJ ., J Cell Biol. May 7, 2018; 217 (5): 1633-1641.
Mechanical Strain Determines Cilia Length, Motility, and Planar Position in the Left- Right Organizer. , Chien YH, Srinivasan S, Keller R , Kintner C ., Dev Cell. May 7, 2018; 45 (3): 316-330.e4.
A Conserved Role of the Unconventional Myosin 1d in Laterality Determination. , Tingler M, Kurz S, Maerker M, Ott T, Fuhl F, Schweickert A , LeBlanc-Straceski JM , Noselli S, Blum M ., Curr Biol. March 5, 2018; 28 (5): 810-816.e3.
hmmr mediates anterior neural tube closure and morphogenesis in the frog Xenopus. , Prager A, Hagenlocher C, Ott T, Schambony A , Feistel K ., Dev Biol. October 1, 2017; 430 (1): 188-201.
High-efficiency non-mosaic CRISPR-mediated knock-in and indel mutation in F0 Xenopus. , Aslan Y, Tadjuidje E , Zorn AM , Cha SW ., Development. August 1, 2017; 144 (15): 2852-2858.
Bimodal regulation of Dishevelled function by Vangl2 during morphogenesis. , Seo HS, Habas R , Chang C , Wang J ., Hum Mol Genet. June 1, 2017; 26 (11): 2053-2061.
Dishevelled Paralogs in Vertebrate Development: Redundant or Distinct? , Gentzel M, Schambony A ., Front Cell Dev Biol. May 26, 2017; 5 59.
A novel role of the organizer gene Goosecoid as an inhibitor of Wnt/PCP-mediated convergent extension in Xenopus and mouse. , Ulmer B, Tingler M, Kurz S, Maerker M, Andre P, Mönch D, Campione M, Deißler K, Lewandoski M, Thumberger T , Schweickert A , Fainsod A , Steinbeißer H, Blum M ., Sci Rep. February 21, 2017; 7 43010.
Wnt proteins can direct planar cell polarity in vertebrate ectoderm. , Chu CW, Sokol SY ., Elife. September 23, 2016; 5
Prickle3 synergizes with Wtip to regulate basal body organization and cilia growth. , Chu CW, Ossipova O, Ioannou A , Sokol SY ., Sci Rep. April 11, 2016; 6 24104.
c21orf59/ kurly Controls Both Cilia Motility and Polarization. , Jaffe KM, Grimes DT, Schottenfeld-Roames J, Werner ME, Ku TS, Kim SK, Pelliccia JL, Morante NF, Mitchell BJ , Burdine RD., Cell Rep. March 1, 2016; 14 (8): 1841-9.
Identification of p62/ SQSTM1 as a component of non-canonical Wnt VANGL2- JNK signalling in breast cancer. , Puvirajesinghe TM, Bertucci F, Jain A, Scerbo P , Belotti E, Audebert S, Sebbagh M, Lopez M, Brech A, Finetti P, Charafe-Jauffret E, Chaffanet M, Castellano R, Restouin A, Marchetto S, Collette Y, Gonçalvès A, Macara I, Birnbaum D, Kodjabachian L , Johansen T, Borg JP ., Nat Commun. January 12, 2016; 7 10318.
Mechanotransduction During Vertebrate Neurulation. , Sokol SY ., Curr Top Dev Biol. January 1, 2016; 117 359-76.
The involvement of PCP proteins in radial cell intercalations during Xenopus embryonic development. , Ossipova O, Chu CW, Fillatre J, Brott BK, Itoh K, Sokol SY ., Dev Biol. December 15, 2015; 408 (2): 316-27.
Mechanical strain determines the axis of planar polarity in ciliated epithelia. , Chien YH, Keller R , Kintner C , Shook DR ., Curr Biol. November 2, 2015; 25 (21): 2774-2784.
Neural crest specification by Prohibitin1 depends on transcriptional regulation of prl3 and vangl1. , Deichmann C, Link M, Seyfang M, Knotz V, Gradl D , Wedlich D ., Genesis. October 1, 2015; 53 (10): 627-39.
Control of vertebrate core planar cell polarity protein localization and dynamics by Prickle 2. , Butler MT, Wallingford JB ., Development. October 1, 2015; 142 (19): 3429-39.
Spatial and temporal aspects of Wnt signaling and planar cell polarity during vertebrate embryonic development. , Sokol SY ., Semin Cell Dev Biol. June 1, 2015; 42 78-85.
Planar polarization of Vangl2 in the vertebrate neural plate is controlled by Wnt and Myosin II signaling. , Ossipova O, Kim K, Sokol SY ., Biol Open. April 24, 2015; 4 (6): 722-30.
PAPC mediates self/non-self-distinction during Snail1-dependent tissue separation. , Luu O, Damm EW, Parent SE, Barua D, Smith TH, Wen JW, Lepage SE, Nagel M, Ibrahim-Gawel H, Huang Y, Bruce AE, Winklbauer R ., J Cell Biol. March 16, 2015; 208 (6): 839-56.
Vangl2 cooperates with Rab11 and Myosin V to regulate apical constriction during vertebrate gastrulation. , Ossipova O, Chuykin I, Chu CW, Sokol SY ., Development. January 1, 2015; 142 (1): 99-107.
The PDZ domain protein Mcc is a novel effector of non-canonical Wnt signaling during convergence and extension in zebrafish. , Young T, Poobalan Y, Tan EK, Tao S, Ong S, Wehner P, Schwenty-Lara J, Lim CY, Sadasivam A, Lovatt M, Wang ST, Ali Y, Borchers A , Sampath K , Dunn NR., Development. September 1, 2014; 141 (18): 3505-16.
Vangl-dependent planar cell polarity signalling is not required for neural crest migration in mammals. , Pryor SE, Massa V, Savery D, Andre P, Yang Y , Greene ND, Copp AJ., Development. August 1, 2014; 141 (16): 3153-8.
The chicken left right organizer has nonmotile cilia which are lost in a stage-dependent manner in the talpid(3) ciliopathy. , Stephen LA, Johnson EJ, Davis GM, McTeir L, Pinkham J, Jaberi N, Davey MG., Genesis. June 1, 2014; 52 (6): 600-13.
Role of Rab11 in planar cell polarity and apical constriction during vertebrate neural tube closure. , Ossipova O, Kim K, Lake BB, Itoh K, Ioannou A , Sokol SY ., Nat Commun. May 13, 2014; 5 3734.
Planar cell polarity proteins differentially regulate extracellular matrix organization and assembly during zebrafish gastrulation. , Dohn MR, Mundell NA, Sawyer LM, Dunlap JA, Jessen JR., Dev Biol. November 1, 2013; 383 (1): 39-51.
The human PDZome: a gateway to PSD95-Disc large-zonula occludens (PDZ)-mediated functions. , Belotti E, Polanowska J, Daulat AM, Audebert S, Thomé V, Lissitzky JC, Lembo F, Blibek K, Omi S, Lenfant N, Gangar A, Montcouquiol M, Santoni MJ, Sebbagh M, Aurrand-Lions M, Angers S, Kodjabachian L , Reboul J, Borg JP ., Mol Cell Proteomics. September 1, 2013; 12 (9): 2587-603.
Syndecan 4 interacts genetically with Vangl2 to regulate neural tube closure and planar cell polarity. , Escobedo N, Contreras O, Muñoz R, Farías M, Carrasco H, Hill C , Tran U , Pryor SE, Wessely O , Copp AJ, Larraín J ., Development. July 1, 2013; 140 (14): 3008-17.
Rab GTPases are required for early orientation of the left- right axis in Xenopus. , Vandenberg LN , Morrie RD, Seebohm G , Lemire JM , Levin M ., Mech Dev. January 1, 2013; 130 (4-5): 254-71.
Variation in the schedules of somite and neural development in frogs. , Sáenz-Ponce N, Mitgutsch C, del Pino EM ., Proc Natl Acad Sci U S A. December 11, 2012; 109 (50): 20503-7.
Inhibition of planar cell polarity extends neural growth during regeneration, homeostasis, and development. , Beane WS, Tseng AS , Morokuma J, Lemire JM , Levin M ., Stem Cells Dev. August 10, 2012; 21 (12): 2085-94.
Understanding ciliated epithelia: the power of Xenopus. , Werner ME, Mitchell BJ ., Genesis. March 1, 2012; 50 (3): 176-85.
Polarity proteins are required for left- right axis orientation and twin-twin instruction. , Vandenberg LN , Levin M ., Genesis. March 1, 2012; 50 (3): 219-34.
The roles of maternal Vangl2 and aPKC in Xenopus oocyte and embryo patterning. , Cha SW , Tadjuidje E , Wylie C , Heasman J ., Development. September 1, 2011; 138 (18): 3989-4000.
Pronephric tubulogenesis requires Daam1-mediated planar cell polarity signaling. , Miller RK , Canny SG, Jang CW, Cho K, Ji H, Wagner DS, Jones EA , Habas R , McCrea PD ., J Am Soc Nephrol. September 1, 2011; 22 (9): 1654-64.
Non-canonical wnt signals antagonize and canonical wnt signals promote cell proliferation in early kidney development. , McCoy KE, Zhou X , Vize PD ., Dev Dyn. June 1, 2011; 240 (6): 1558-66.