Symbol Name ID |
Vangl1
VANGL planar cell polarity 1 MGI:2159344 |
Age | E7.5 | E8 | E8.5 | E9.5 | E10.5 | E11 | E11.5 | E12.5 | E13.5 | E14.5 | E15.5 | E17.5 | E18.5 | E19.5 | E | P |
Immunohistochemistry (section) | 2 | 4 | 2 | 3 | 1 | 2 | 4 | 1 | 6 | 4 | ||||||
In situ RNA (section) | 1 | 1 | 2 | 1 | 2 | 1 | 1 | 1 | 1 | 1 | ||||||
Immunohistochemistry (whole mount) | 1 | 1 | 1 | 4 | ||||||||||||
In situ RNA (whole mount) | 1 | 1 | 1 | 1 | 1 | |||||||||||
In situ reporter (knock in) | 1 | 1 | 2 | 3 | 1 | 1 | 1 | 2 | ||||||||
Western blot | 1 | 1 | 1 | 1 | 1 | 1 | ||||||||||
RT-PCR | 1 | 1 | 1 | 2 | 2 | 2 | 2 | 1 | 1 | 2 | 4 |
Vangl1 VANGL planar cell polarity 1 (Synonyms: KITENIN, Lpp2, mStbm, stbm) | |
Results | Reference |
2 | J:220460 Andre P, Song H, Kim W, Kispert A, Yang Y, Wnt5a and Wnt11 regulate mammalian anterior-posterior axis elongation. Development. 2015 Apr 15;142(8):1516-27 |
6 | J:157938 Antic D, Stubbs JL, Suyama K, Kintner C, Scott MP, Axelrod JD, Planar cell polarity enables posterior localization of nodal cilia and left-right axis determination during mouse and Xenopus embryogenesis. PLoS One. 2010;5(2):e8999 |
1* | J:168261 Babayeva S, Zilber Y, Torban E, Planar cell polarity pathway regulates actin rearrangement, cell shape, motility, and nephrin distribution in podocytes. Am J Physiol Renal Physiol. 2011 Feb;300(2):F549-60 |
1* | J:247897 Cetera M, Leybova L, Woo FW, Deans M, Devenport D, Planar cell polarity-dependent and independent functions in the emergence of tissue-scale hair follicle patterns. Dev Biol. 2017 Aug 01;428(1):188-203 |
1 | J:218613 Chen J, Laclef C, Moncayo A, Snedecor ER, Yang N, Li L, Takemaru K, Paus R, Schneider-Maunoury S, Clark RA, The ciliopathy gene rpgrip1l is essential for hair follicle development. J Invest Dermatol. 2015 Mar;135(3):701-9 |
1 | J:201321 Copley CO, Duncan JS, Liu C, Cheng H, Deans MR, Postnatal refinement of auditory hair cell planar polarity deficits occurs in the absence of Vangl2. J Neurosci. 2013 Aug 28;33(35):14001-16 |
7 | J:269131 Cortijo C, Gouzi M, Tissir F, Grapin-Botton A, Planar cell polarity controls pancreatic beta cell differentiation and glucose homeostasis. Cell Rep. 2012 Dec 27;2(6):1593-606 |
1 | J:205269 Cui C, Chatterjee B, Lozito TP, Zhang Z, Francis RJ, Yagi H, Swanhart LM, Sanker S, Francis D, Yu Q, San Agustin JT, Puligilla C, Chatterjee T, Tansey T, Liu X, Kelley MW, Spiliotis ET, Kwiatkowski AV, Tuan R, Pazour GJ, Hukriede NA, Lo CW, Wdpcp, a PCP protein required for ciliogenesis, regulates directional cell migration and cell polarity by direct modulation of the actin cytoskeleton. PLoS Biol. 2013 Nov;11(11):e1001720 |
1 | J:205544 Dai D, Li L, Huebner A, Zeng H, Guevara E, Claypool DJ, Liu A, Chen J, Planar cell polarity effector gene Intu regulates cell fate-specific differentiation of keratinocytes through the primary cilia. Cell Death Differ. 2013 Jan;20(1):130-8 |
1 | J:173143 Dai D, Zhu H, Wlodarczyk B, Zhang L, Li L, Li AG, Finnell RH, Roop DR, Chen J, Fuz controls the morphogenesis and differentiation of hair follicles through the formation of primary cilia. J Invest Dermatol. 2011 Feb;131(2):302-10 |
1 | J:358649 Dias AP, Rehmani T, Applin BD, Salih M, Tuana B, SLMAP3 is crucial for organogenesis through mechanisms involving primary cilia formation. Open Biol. 2024 Oct;14(10):rsob240206 |
1 | J:357898 Feng X, Ye Y, Zhang J, Zhang Y, Zhao S, Mak JCW, Otomo N, Zhao Z, Niu Y, Yonezawa Y, Li G, Lin M, Li X, Cheung PWH, Xu K, Takeda K, Wang S, Xie J, Kotani T, Choi VNT, Song YQ, Yang Y, Luk KDK, Lee KS, Li Z, Li PS, Leung CYH, Lin X, Wang X, Qiu G, Watanabe K, Wu Z, Posey JE, Ikegawa S, Lupski JR, Cheung JPY, Zhang TJ, Gao B, Wu N, Core planar cell polarity genes VANGL1 and VANGL2 in predisposition to congenital vertebral malformations. Proc Natl Acad Sci U S A. 2024 Apr 30;121(18):e2310283121 |
2 | J:306166 Flasse L, Yennek S, Cortijo C, Barandiaran IS, Kraus MR, Grapin-Botton A, Apical Restriction of the Planar Cell Polarity Component VANGL in Pancreatic Ducts Is Required to Maintain Epithelial Integrity. Cell Rep. 2020 May 26;31(8):107677 |
1 | J:206576 Fukuda T, Kominami K, Wang S, Togashi H, Hirata K, Mizoguchi A, Rikitake Y, Takai Y, Aberrant cochlear hair cell attachments caused by Nectin-3 deficiency result in hair bundle abnormalities. Development. 2014 Jan;141(2):399-409 |
1 | J:139139 Garcia-Garcia MJ, Shibata M, Anderson KV, Chato, a KRAB zinc-finger protein, regulates convergent extension in the mouse embryo. Development. 2008 Sep;135(18):3053-62 |
1 | J:215971 Gegg M, Bottcher A, Burtscher I, Hasenoeder S, Van Campenhout C, Aichler M, Walch A, Grant SG, Lickert H, Flattop regulates basal body docking and positioning in mono- and multiciliated cells. Elife. 2014;3 |
1 | J:315409 Huyghe A, Van den Ackerveken P, Sacheli R, Prevot PP, Thelen N, Renauld J, Thiry M, Delacroix L, Nguyen L, Malgrange B, MicroRNA-124 Regulates Cell Specification in the Cochlea through Modulation of Sfrp4/5. Cell Rep. 2015 Oct 6;13(1):31-42 |
1 | J:329316 Kunimoto K, Weiner AT, Axelrod JD, Vladar EK, Distinct overlapping functions for Prickle1 and Prickle2 in the polarization of the airway epithelium. Front Cell Dev Biol. 2022;10:976182 |
9 | J:148751 Liu J, Qi J, Zhu J, Zhang L, Liang Y, Ning Q, Luo X, Effects of Retinoic Acid on the Expressions of Vangl1 and Vangl2 in Mouse Fetuses. J Neurogenet. 2008 Nov 15;22(3):167-179 |
1* | J:329389 Luo WW, Chen BJ, Wang YM, Yang JM, Liu X, Yuan YS, Lin X, Chi FL, Chen P, Ren DD, Planar cell polarity governs the alignment of the nasopharyngeal epithelium in mammals. FEBS J. 2021 Feb;288(3):1027-1040 |
1 | J:283040 McKenzie MG, Cobbs LV, Dummer PD, Petros TJ, Halford MM, Stacker SA, Zou Y, Fishell GJ, Au E, Non-canonical Wnt Signaling through Ryk Regulates the Generation of Somatostatin- and Parvalbumin-Expressing Cortical Interneurons. Neuron. 2019 Sep 4;103(5):853-864.e4 |
1 | J:240026 Minegishi K, Hashimoto M, Ajima R, Takaoka K, Shinohara K, Ikawa Y, Nishimura H, McMahon AP, Willert K, Okada Y, Sasaki H, Shi D, Fujimori T, Ohtsuka T, Igarashi Y, Yamaguchi TP, Shimono A, Shiratori H, Hamada H, A Wnt5 Activity Asymmetry and Intercellular Signaling via PCP Proteins Polarize Node Cells for Left-Right Symmetry Breaking. Dev Cell. 2017 Mar 13;40(5):439-452.e4 |
1 | J:297063 Najarro EH, Huang J, Jacobo A, Quiruz LA, Grillet N, Cheng AG, Dual regulation of planar polarization by secreted Wnts and Vangl2 in the developing mouse cochlea. Development. 2020 Oct 5;147(19):dev191981 |
1 | J:344148 Nakayama S, Yano T, Namba T, Konishi S, Takagishi M, Herawati E, Nishida T, Imoto Y, Ishihara S, Takahashi M, Furuta K, Oiwa K, Tamura A, Tsukita S, Planar cell polarity induces local microtubule bundling for coordinated ciliary beating. J Cell Biol. 2021 Jul 5;220(7) |
4* | J:213956 Pryor SE, Massa V, Savery D, Andre P, Yang Y, Greene ND, Copp AJ, Vangl-dependent planar cell polarity signalling is not required for neural crest migration in mammals. Development. 2014 Aug;141(16):3153-8 |
2 | J:286590 Rao-Bhatia A, Zhu M, Yin WC, Coquenlorge S, Zhang X, Woo J, Sun Y, Dean CH, Liu A, Hui CC, Shivdasani RA, McNeill H, Hopyan S, Kim TH, Hedgehog-Activated Fat4 and PCP Pathways Mediate Mesenchymal Cell Clustering and Villus Formation in Gut Development. Dev Cell. 2020 Mar 9;52(5):647-658.e6 |
1 | J:355261 Rehmani T, Dias AP, Applin BD, Salih M, Tuana BS, SLMAP3 is essential for neurulation through mechanisms involving cytoskeletal elements, ABP, and PCP. Life Sci Alliance. 2024 Dec;7(12) |
1 | J:293073 Rocque BL, Babayeva S, Li J, Leung V, Nezvitsky L, Cybulsky AV, Gros P, Torban E, Deficiency of the planar cell polarity protein Vangl2 in podocytes affects glomerular morphogenesis and increases susceptibility to injury. J Am Soc Nephrol. 2015 Mar;26(3):576-86 |
1 | J:298302 Ru J, Guo D, Fan J, Zhang J, Ju R, Ouyang H, Wei L, Liu Y, Liu C, Malformation of Tear Ducts Underlies the Epiphora and Precocious Eyelid Opening in Prickle 1 Mutant Mice: Genetic Implications for Tear Duct Genesis. Invest Ophthalmol Vis Sci. 2020 Nov 2;61(13):6 |
1 | J:169765 Shafer B, Onishi K, Lo C, Colakoglu G, Zou Y, Vangl2 promotes Wnt/planar cell polarity-like signaling by antagonizing Dvl1-mediated feedback inhibition in growth cone guidance. Dev Cell. 2011 Feb 15;20(2):177-91 |
2 | J:279029 Smith P, Godde N, Rubio S, Tekeste M, Vladar EK, Axelrod JD, Henderson DJ, Milgrom-Hoffman M, Humbert PO, Hinck L, VANGL2 regulates luminal epithelial organization and cell turnover in the mammary gland. Sci Rep. 2019 May 8;9(1):7079 |
10 | J:162640 Song H, Hu J, Chen W, Elliott G, Andre P, Gao B, Yang Y, Planar cell polarity breaks bilateral symmetry by controlling ciliary positioning. Nature. 2010 Jul 15;466(7304):378-82 |
1 | J:119655 Song MR, Shirasaki R, Cai CL, Ruiz EC, Evans SM, Lee SK, Pfaff SL, T-Box transcription factor Tbx20 regulates a genetic program for cranial motor neuron cell body migration. Development. 2006 Dec;133(24):4945-55 |
5* | J:106092 Tissir F, Goffinet AM, Expression of planar cell polarity genes during development of the mouse CNS. Eur J Neurosci. 2006 Feb;23(3):597-607 |
10* | J:132697 Torban E, Patenaude AM, Leclerc S, Rakowiecki S, Gauthier S, Andelfinger G, Epstein DJ, Gros P, Genetic interaction between members of the Vangl family causes neural tube defects in mice. Proc Natl Acad Sci U S A. 2008 Mar 4;105(9):3449-54 |
1 | J:325983 Xie Z, Bankaitis VA, Phosphatidylinositol transfer protein/planar cell polarity axis regulates neocortical morphogenesis by supporting interkinetic nuclear migration. Cell Rep. 2022 May 31;39(9):110869 |
2 | J:335806 Yan L, Yin H, Mi Y, Wu Y, Zheng Y, Deficiency of Wdr60 and Wdr34 cause distinct neural tube malformation phenotypes in early embryos. Front Cell Dev Biol. 2023;11:1084245 |
1 | J:314584 Yang W, Garrett L, Feng D, Elliott G, Liu X, Wang N, Wong YM, Choi NT, Yang Y, Gao B, Wnt-induced Vangl2 phosphorylation is dose-dependently required for planar cell polarity in mammalian development. Cell Res. 2017 Dec;27(12):1466-1484 |
2 | J:185311 Yin H, Copley CO, Goodrich LV, Deans MR, Comparison of phenotypes between different vangl2 mutants demonstrates dominant effects of the Looptail mutation during hair cell development. PLoS One. 2012;7(2):e31988 |
1 | J:266389 Yin W, Kim HT, Wang S, Gunawan F, Wang L, Kishimoto K, Zhong H, Roman D, Preussner J, Guenther S, Graef V, Buettner C, Grohmann B, Looso M, Morimoto M, Mardon G, Offermanns S, Stainier DYR, The potassium channel KCNJ13 is essential for smooth muscle cytoskeletal organization during mouse tracheal tubulogenesis. Nat Commun. 2018 Jul 19;9(1):2815 |
Mouse Genome Database (MGD), Gene Expression Database (GXD), Mouse Models of Human Cancer database (MMHCdb) (formerly Mouse Tumor Biology (MTB)), Gene Ontology (GO) |
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last database update 12/10/2024 MGI 6.24 |
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