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The positive transcriptional elongation factor (P-TEFb) is required for neural crest specification. , Hatch VL , Marin-Barba M, Moxon S, Ford CT, Ward NJ, Tomlinson ML, Desanlis I, Hendry AE, Hontelez S , van Kruijsbergen I, Veenstra GJ , Münsterberg AE, Wheeler GN ., Dev Biol. August 15, 2016; 416 (2): 361-72.
Leptin Induces Mitosis and Activates the Canonical Wnt/ β-Catenin Signaling Pathway in Neurogenic Regions of Xenopus Tadpole Brain. , Bender MC, Sifuentes CJ, Denver RJ ., Front Endocrinol (Lausanne). January 1, 2017; 8 99.
The regulation of heat shock proteins in response to dehydration in Xenopus laevis. , Luu BE, Wijenayake S, Malik AI, Storey KB ., Cell Stress Chaperones. January 1, 2018; 23 (1): 45-53.
Asymmetric distribution of biomolecules of maternal origin in the Xenopus laevis egg and their impact on the developmental plan. , Sindelka R , Abaffy P, Qu Y, Tomankova S, Sidova M, Naraine R, Kolar M, Peuchen E , Sun L, Dovichi N , Kubista M., Sci Rep. May 29, 2018; 8 (1): 8315.
Gap junction protein Connexin-43 is a direct transcriptional regulator of N-cadherin in vivo. , Kotini M, Barriga EH, Leslie J , Gentzel M, Rauschenberger V, Schambony A , Mayor R ., Nat Commun. September 21, 2018; 9 (1): 3846.
Early redox activities modulate Xenopus tail regeneration. , Ferreira F, Raghunathan V, Luxardi G , Zhu K , Zhao M., Nat Commun. October 16, 2018; 9 (1): 4296.
Single Amino Acid Change Underlies Distinct Roles of H2A.Z Subtypes in Human Syndrome. , Greenberg RS, Long HK, Swigut T, Wysocka J., Cell. September 5, 2019; 178 (6): 1421-1436.e24.
Grp94 Regulates the Recruitment of Aneural AChR Clusters for the Assembly of Postsynaptic Specializations by Modulating ADF/Cofilin Activity and Turnover. , Chan ZC, Deng L, Lee CW , Lee CW ., eNeuro. September 8, 2020; 7 (5):
The Cytoskeleton and Its Roles in Self-Organization Phenomena: Insights from Xenopus Egg Extracts. , Geisterfer ZM, Guilloux G, Gatlin JC , Gatlin JC , Gibeaux R., Cells. August 26, 2021; 10 (9):
Differential maturation and chaperone dependence of the paralogous protein kinases DYRK1A and DYRK1B. , Papenfuss M, Lützow S, Wilms G, Babendreyer A, Flaßhoff M, Kunick C, Becker W., Sci Rep. February 14, 2022; 12 (1): 2393.