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HMCES modulates the transcriptional regulation of nodal/activin and BMP signaling in mESCs. , Liang T, Bai J, Zhou W, Lin H, Ma S, Zhu X, Tao Q , Xi Q., Cell Rep. July 12, 2022; 40 (2): 111038.
CRISPR-SID: Identifying EZH2 as a druggable target for desmoid tumors via in vivo dependency mapping. , Naert T, Tulkens D, Van Nieuwenhuysen T, Przybyl J, Demuynck S, van de Rijn M, Al-Jazrawe M, Alman BA, Coucke PJ, De Leeneer K, Vanhove C, Savvides SN, Creytens D, Vleminckx K , Vleminckx K ., Proc Natl Acad Sci U S A. November 23, 2021; 118 (47):
TGF-β1 signaling is essential for tissue regeneration in the Xenopus tadpole tail. , Nakamura M, Yoshida H, Moriyama Y , Kawakita I, Wlizla M , Takebayashi-Suzuki K, Horb ME , Suzuki A ., Biochem Biophys Res Commun. August 6, 2021; 565 91-96.
Secreted inhibitors drive the loss of regeneration competence in Xenopus limbs. , Aztekin C , Hiscock TW, Gurdon J , Jullien J , Marioni J, Simons BD., Development. June 1, 2021; 148 (11):
Aquatic models of human ciliary diseases. , Corkins ME, Krneta-Stankic V, Kloc M , Miller RK ., Genesis. February 1, 2021; 59 (1-2): e23410.
Chromatin-remodelling factor Brg1 regulates myocardial proliferation and regeneration in zebrafish. , Xiao C, Gao L, Hou Y, Xu C, Chang N, Wang F, Hu K, He A, Luo Y, Wang J , Peng J, Tang F, Zhu X, Xiong JW., Nat Commun. December 8, 2016; 7 13787.
The role and mechanisms of action of SIRT6 in the suppression of postoperative epidural scar formation. , Fan X, Chen J , Shi D , Jia J, He J, Li L, Lei T, Chen X., Int J Mol Med. May 1, 2016; 37 (5): 1337-44.
TGF-beta signaling is required for multiple processes during Xenopus tail regeneration. , Ho DM, Whitman M ., Dev Biol. March 1, 2008; 315 (1): 203-16.
eFGF and its mode of action in the community effect during Xenopus myogenesis. , Standley HJ , Zorn AM , Gurdon JB ., Development. April 1, 2001; 128 (8): 1347-57.
Expression of N-cadherin, N-CAM, fibronectin and tenascin is stimulated by TGF-beta1, beta2, beta3 and beta5 during the formation of precartilage condensations. , Chimal-Monroy J, Díaz de León L., Int J Dev Biol. January 1, 1999; 43 (1): 59-67.
Mutant Vg1 ligands disrupt endoderm and mesoderm formation in Xenopus embryos. , Joseph EM , Melton DA ., Development. July 1, 1998; 125 (14): 2677-85.
Murine cerberus homologue mCer-1: a candidate anterior patterning molecule. , Biben C, Stanley E, Fabri L, Kotecha S , Rhinn M, Drinkwater C, Lah M, Wang CC , Nash A, Hilton D , Ang SL, Mohun T, Harvey RP ., Dev Biol. February 15, 1998; 194 (2): 135-51.
Stimulation of circus movement by activin, bFGF and TGF-beta 2 in isolated animal cap cells of Xenopus laevis. , Minoura I, Nakamura H, Tashiro K, Shiokawa K., Mech Dev. January 1, 1995; 49 (1-2): 65-9.
Sequential expression of acetylcholine receptor isoforms in mesodermalized Xenopus animal caps. , Reuer Q, Kullberg RW, Owens JL., Dev Biol. November 1, 1994; 166 (1): 323-30.
Crystal structure of transforming growth factor-beta 2: an unusual fold for the superfamily. , Daopin S, Piez KA, Ogawa Y, Davies DR., Science. July 17, 1992; 257 (5068): 369-73.
The role of growth factors in embryonic induction in Xenopus laevis. , Dawid IB , Taira M , Good PJ , Rebagliati MR., Mol Reprod Dev. June 1, 1992; 32 (2): 136-44.
The sequence of TGF-beta 2 from Xenopus laevis. , Rebbert ML, Bhatia-Dey N, Dawid IB ., Nucleic Acids Res. April 25, 1990; 18 (8): 2185.
Isolation and characterization of TGF-beta 2 and TGF-beta 5 from medium conditioned by Xenopus XTC cells. , Roberts AB , Rosa F, Roche NS, Coligan JE, Garfield M, Rebbert ML, Kondaiah P, Danielpour D, Kehrl JH, Wahl SM., Growth Factors. January 1, 1990; 2 (2-3): 135-47.
Purification, partial characterization and biological effects of the XTC mesoderm-inducing factor. , Smith JC , Yaqoob M, Symes K ., Development. July 1, 1988; 103 (3): 591-600.
Mesoderm induction in amphibians: the role of TGF-beta 2-like factors. , Rosa F, Roberts AB , Danielpour D, Dart LL, Sporn MB, Dawid IB ., Science. February 12, 1988; 239 (4841 Pt 1): 783-5.