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Summary Literature (15)
Literature for DOID 850: lung disease


Xenbase Articles :
( Denotes literature images)
Embryonic frog epidermis: a model for the study of cell-cell interactions in the development of mucociliary disease., Dubaissi E,Papalopulu N, Dis Model Mech. March 1, 2011; 4(2):1754-8411.
Thiol-reactive compounds from garlic inhibit the epithelial sodium channel (ENaC)., Krumm P,Giraldez T,Alvarez de la Rosa D,Clauss WG,Fronius M,Althaus M, Bioorg Med Chem. July 1, 2012; 20(13):1464-3391.
miR-34/449 miRNAs are required for motile ciliogenesis by repressing cp110., Song R,Walentek P,Sponer N,Klimke A,Lee JS,Lee JS,Dixon G,Harland R,Wan Y,Lishko P,Lize M,Kessel M,He L, Nature. June 5, 2014; 510(7503):0143-5221.
ATP4a is required for development and function of the Xenopus mucociliary epidermis - a potential model to study proton pump inhibitor-associated pneumonia., Walentek P,Beyer T,Hagenlocher C,Müller C,Feistel K,Schweickert A,Harland RM,Blum M, Dev Biol. December 15, 2015; 408(2):1095-564X.
Using Xenopus to understand human disease and developmental disorders., Sater AK,Moody SA, Genesis. January 1, 2017; 55(1-2):1526-968X.
Bacterial Sphingomyelinase is a State-Dependent Inhibitor of the Cystic Fibrosis Transmembrane conductance Regulator (CFTR)., Stauffer BB,Cui G,Cottrill KA,Infield DT,McCarty NA, Sci Rep. June 7, 2017; 7(1):2045-2322.
Extended Cleavage Specificity of Human Neutrophil Elastase, Human Proteinase 3, and Their Distant Ortholog Clawed Frog PR3-Three Elastases With Similar Primary but Different Extended Specificities and Stability., Fu Z,Thorpe M,Akula S,Chahal G,Hellman LT, Front Immunol. September 12, 2018; 9:1664-3224.
ΔN-Tp63 Mediates Wnt/β-Catenin-Induced Inhibition of Differentiation in Basal Stem Cells of Mucociliary Epithelia., Haas M,Gómez Vázquez JL,Sun DI,Tran HT,Brislinger M,Tasca A,Shomroni O,Vleminckx K,Vleminckx K,Walentek P, Cell Rep. September 24, 2019; 28(13):2211-1247.
RBL1 (p107) functions as tumor suppressor in glioblastoma and small-cell pancreatic neuroendocrine carcinoma in Xenopus tropicalis., Naert T,Dimitrakopoulou D,Tulkens D,Demuynck S,Carron M,Noelanders R,Eeckhout L,Van Isterdael G,Deforce D,Vanhove C,Van Dorpe J,Creytens D,Vleminckx K,Vleminckx K, Oncogene. March 1, 2020; 39(13):0950-9232.
Concatemers to re-investigate the role of α5 in α4β2 nicotinic receptors., Prevost MS,Bouchenaki H,Barilone N,Gielen M,Corringer PJ, Cell Mol Life Sci. February 1, 2021; 78(3):1420-9071.
Xenopus epidermal and endodermal epithelia as models for mucociliary epithelial evolution, disease, and metaplasia., Walentek P, Genesis. February 1, 2021; 59(1-2):1526-968X.
Developing Tadpole Xenopus laevis as a Comparative Animal Model to Study Mycobacterium abscessus Pathogenicity., Lopez A,Shoen C,Cynamon M,Dimitrakopoulou D,Paiola M,Pavelka MS,Robert J, Int J Mol Sci. January 15, 2021; 22(2):1422-0067.
Structure Basis for Shaping the Nse4 Protein by the Nse1 and Nse3 Dimer within the Smc5/6 Complex., Jo A,Li S,Shin JW,Zhao X,Cho Y, J Mol Biol. April 30, 2021; 433(9):1089-8638.
Signaling Control of Mucociliary Epithelia: Stem Cells, Cell Fates, and the Plasticity of Cell Identity in Development and Disease., Walentek P, Cells Tissues Organs. January 1, 2022; 211(6):1422-6405.
The Splicing Factor PTBP1 Represses TP63 γ Isoform Production in Squamous Cell Carcinoma., Taylor W,Deschamps S,Reboutier D,Paillard L,Méreau A,Audic Y, Cancer Res Commun. December 1, 2022; 2(12):2767-9764.