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Identification of the developmental marker, JB3-antigen, as fibrillin-2 and its de novo organization into embryonic microfibrous arrays. , Rongish BJ, Drake CJ, Argraves WS, Little CD., Dev Dyn. July 1, 1998; 212 (3): 461-71.
Confocal imaging of early heart development in Xenopus laevis. , Kolker SJ, Tajchman U, Weeks DL ., Dev Biol. February 1, 2000; 218 (1): 64-73.
Xenopus fibrillin is expressed in the organizer and is the earliest component of matrix at the developing notochord- somite boundary. , Skoglund P , Dzamba B, Coffman CR, Harris WA , Keller R ., Dev Dyn. July 1, 2006; 235 (7): 1974-83.
Xenopus fibrillin regulates directed convergence and extension. , Skoglund P , Keller R ., Dev Biol. January 15, 2007; 301 (2): 404-16.
Transient early embryonic expression of Nkx2-5 mutations linked to congenital heart defects in human causes heart defects in Xenopus laevis. , Bartlett HL, Sutherland L, Kolker SJ, Welp C, Tajchman U, Desmarais V, Weeks DL ., Dev Dyn. September 1, 2007; 236 (9): 2475-84.
Inhibition of heart formation by lithium is an indirect result of the disruption of tissue organization within the embryo. , Martin LK, Bratoeva M, Mezentseva NV, Bernanke JM, Remond MC, Ramsdell AF, Eisenberg CA, Eisenberg LM., Dev Growth Differ. February 1, 2012; 54 (2): 153-66.
SHP-2 acts via ROCK to regulate the cardiac actin cytoskeleton. , Langdon Y , Tandon P , Paden E , Duddy J, Taylor JM, Conlon FL ., Development. March 1, 2012; 139 (5): 948-57.
An adhesome comprising laminin, dystroglycan and myosin IIA is required during notochord development in Xenopus laevis. , Buisson N, Sirour C, Moreau N, Denker E, Le Bouffant R , Goullancourt A, Darribère T , Bello V., Development. December 1, 2014; 141 (23): 4569-79.
Time-resolved quantitative proteomic analysis of the developing Xenopus otic vesicle reveals putative congenital hearing loss candidates. , Baxi AB, Nemes P , Moody SA ., iScience. September 15, 2023; 26 (9): 107665.
Genetic models of fibrillinopathies. , Summers KM., Genetics. January 3, 2024; 226 (1):