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Summary Literature (8)
Literature for DOID 403: mouth disease


Xenbase Articles :
( Denotes literature images)
The extreme anterior domain is an essential craniofacial organizer acting through Kinin-Kallikrein signaling., Jacox L,Sindelka R,Chen J,Rothman A,Dickinson A,Sive H, Cell Rep. July 24, 2014; 8(2):2211-1247.
ADAM13 cleavage of cadherin-11 promotes CNC migration independently of the homophilic binding site., Abbruzzese G,Becker SF,Kashef J,Alfandari D,Alfandari D, Dev Biol. July 15, 2016; 415(2):1095-564X.
Identification of Isthmin 1 as a Novel Clefting and Craniofacial Patterning Gene in Humans., Lansdon LA,Darbro BW,Petrin AL,Hulstrand AM,Standley JM,Brouillette RB,Long A,Mansilla MA,Cornell RA,Murray JC,Houston DW,Manak JR, Genetics. January 1, 2018; 208(1):1943-2631.
Latrophilin2 is involved in neural crest cell migration and placode patterning in Xenopus laevis., Yokote N,Suzuki-Kosaka MY,Michiue T,Hara T,Tanegashima K, Int J Dev Biol. January 1, 2019; 63(1-2):1696-3547.
The Role of RNA-Binding Proteins in Vertebrate Neural Crest and Craniofacial Development., Forman TE,Dennison BJC,Fantauzzo KA, J Dev Biol. August 27, 2021; 9(3):2221-3759.
Predictive assays for craniofacial malformations: evaluation in Xenopus laevis embryos exposed to triadimefon., Battistoni M,Metruccio F,Di Renzo F,Bacchetta R,Menegola E, Arch Toxicol. October 1, 2022; 96(10):0340-5761.
Genome-wide analysis of copy-number variation in humans with cleft lip and/or cleft palate identifies COBLL1, RIC1, and ARHGEF38 as clefting genes., Lansdon LA,Dickinson A,Arlis S,Liu H,Hlas A,Hahn A,Bonde G,Long A,Standley J,Tyryshkina A,Wehby G,Lee NR,Daack-Hirsch S,Mohlke K,Girirajan S,Darbro BW,Cornell RA,Houston DW,Murray JC,Manak JR, Am J Hum Genet. January 5, 2023; 110(1):1537-6605.
FGFR1 variants contributed to families with tooth agenesis., Yao S,Zhou X,Zhou X,Gu M,Zhang C,Bartsch O,Vona B,Fan L,Ma L,Pan Y, Hum Genomics. October 13, 2023; 17(1):1479-7364.