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Summary Expression Phenotypes Gene Literature (16) GO Terms (0) Nucleotides (124) Proteins (41) Interactants (153) Wiki
XB-GENEPAGE-949743

Papers associated with tcim



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Developmental regulation of cellular metabolism is required for intestinal elongation and rotation., Grzymkowski JK, Chiu YC, Jima DD, Wyatt BH, Jayachandran S, Stutts WL, Nascone-Yoder NM., Development. February 15, 2024; 151 (4):                                       


Genomic Takeover by Transposable Elements in the Strawberry Poison Frog., Rogers RL, Zhou L, Chu C, Márquez R, Corl A, Linderoth T, Freeborn L, MacManes MD, Xiong Z, Zheng J, Guo C, Xun X, Kronforst MR, Summers K, Wu Y, Yang H, Richards-Zawacki CL, Zhang G, Nielsen R., Mol Biol Evol. December 1, 2018; 35 (12): 2913-2927.              


Transcriptomics of dorso-ventral axis determination in Xenopus tropicalis., Monteiro RS, Gentsch GE, Smith JC., Dev Biol. July 15, 2018; 439 (2): 69-79.                                    


Insights on genome size evolution from a miniature inverted repeat transposon driving a satellite DNA., Scalvenzi T, Pollet N., Mol Phylogenet Evol. December 1, 2014; 81 1-9.


Expression of DNA transposable elements during nervous system development: A discussion about its possible functions., Faunes F, Lee-Liu D, Larrain J., Mob Genet Elements. November 1, 2011; 1 (4): 296-300.    


α-TC1.9 cells--a model system for analyzing the endoproteolytic processing of POMC., Chen Q, Layton K, Veo K, Angleson JK, Dores RM., Gen Comp Endocrinol. May 15, 2011; 172 (1): 96-106.


Expression of Transposable Elements in Neural Tissues during Xenopus Development., Faunes F, Sanchez N, Moreno M, Olivares GH, Lee-Liu D, Almonacid L, Slater AW, Norambuena T, Taft RJ, Mattick JS, Melo F, Larrain J., PLoS One. January 1, 2011; 6 (7): e22569.                    


Transgenesis in Xenopus using the Sleeping Beauty transposon system., Yergeau DA, Johnson Hamlet MR, Kuliyev E, Zhu H, Doherty JR, Archer TD, Subhawong AP, Valentine MB, Kelley CM, Mead PE., Dev Dyn. July 1, 2009; 238 (7): 1727-43.                      


MMTS, a new subfamily of Tc1-like transposons., Ahn SJ, Kim MS, Jang JH, Lim SU, Lee HH., Mol Cells. October 31, 2008; 26 (4): 387-95.


The mariner transposons belonging to the irritans subfamily were maintained in chordate genomes by vertical transmission., Sinzelle L, Chesneau A, Bigot Y, Mazabraud A, Pollet N., J Mol Evol. January 1, 2006; 62 (1): 53-65.


Characterization of multiple lineages of Tc1-like elements within the genome of the amphibian Xenopus tropicalis., Sinzelle L, Pollet N, Bigot Y, Mazabraud A., Gene. April 11, 2005; 349 187-96.


Genetic and biochemical evidence for a novel avermectin-sensitive chloride channel in Caenorhabditis elegans. Isolation and characterization., Vassilatis DK, Arena JP, Plasterk RH, Wilkinson HA, Schaeffer JM, Cully DF, Van der Ploeg LH., J Biol Chem. December 26, 1997; 272 (52): 33167-74.


A novel matrix metalloproteinase gene (XMMP) encoding vitronectin-like motifs is transiently expressed in Xenopus laevis early embryo development., Yang M, Murray MT, Kurkinen M., J Biol Chem. May 23, 1997; 272 (21): 13527-33.          


Genomic organization of the fungus Phycomyces., Avalos J, Corrochano LM, Brenner S., Gene. September 26, 1996; 174 (1): 43-50.


Discovery of amphibian Tc1-like transposon families., Lam WL, Seo P, Robison K, Virk S, Gilbert W., J Mol Biol. March 29, 1996; 257 (2): 359-66.


Tiggers and DNA transposon fossils in the human genome., Smit AF, Riggs AD., Proc Natl Acad Sci U S A. February 20, 1996; 93 (4): 1443-8.

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