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Summary Expression Phenotypes Gene Literature (23) GO Terms (1) Nucleotides (455) Proteins (98) Interactants (424) Wiki
XB--920407

Papers associated with stau1



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L-bodies are RNA-protein condensates driving RNA localization in Xenopus oocytes., Neil CR, Jeschonek SP, Cabral SE, O'Connell LC, Powrie EA, Otis JP, Wood TR, Mowry KL., Mol Biol Cell. December 1, 2021; 32 (22): ar37.                        


FAX-RIC enables robust profiling of dynamic RNP complex formation in multicellular organisms in vivo., Na Y, Kim H, Choi Y, Shin S, Jung JH, Kwon SC, Kim VN, Kim JS., Nucleic Acids Res. March 18, 2021; 49 (5): e28.            


Receptor-specific interactome as a hub for rapid cue-induced selective translation in axons., Koppers M, Cagnetta R, Shigeoka T, Wunderlich LC, Vallejo-Ramirez P, Qiaojin Lin J, Zhao S, Jakobs MA, Dwivedy A, Minett MS, Bellon A, Kaminski CF, Harris WA, Flanagan JG, Holt CE., Elife. November 20, 2019; 8                       


Staufen1, Kinesin1 and microtubule function in cyclin B1 mRNA transport to the animal polar cytoplasm of zebrafish oocytes., Takahashi K, Ishii K, Yamashita M., Biochem Biophys Res Commun. September 18, 2018; 503 (4): 2778-2783.        


Genome evolution in the allotetraploid frog Xenopus laevis., Session AM, Uno Y, Kwon T, Chapman JA, Toyoda A, Takahashi S, Fukui A, Hikosaka A, Suzuki A, Kondo M, van Heeringen SJ, Quigley I, Heinz S, Ogino H, Ochi H, Hellsten U, Lyons JB, Simakov O, Putnam N, Stites J, Kuroki Y, Tanaka T, Michiue T, Watanabe M, Bogdanovic O, Lister R, Georgiou G, Paranjpe SS, van Kruijsbergen I, Shu S, Carlson J, Kinoshita T, Ohta Y, Mawaribuchi S, Jenkins J, Grimwood J, Schmutz J, Mitros T, Mozaffari SV, Suzuki Y, Haramoto Y, Yamamoto TS, Takagi C, Heald R, Miller K, Haudenschild C, Kitzman J, Nakayama T, Izutsu Y, Robert J, Fortriede J, Burns K, Lotay V, Karimi K, Yasuoka Y, Dichmann DS, Flajnik MF, Houston DW, Shendure J, DuPasquier L, Vize PD, Zorn AM, Ito M, Marcotte EM, Wallingford JB, Ito Y, Asashima M, Ueno N, Matsuda Y, Veenstra GJ, Fujiyama A, Harland RM, Taira M, Rokhsar DS., Nature. October 20, 2016; 538 (7625): 336-343.                              


Hermes (Rbpms) is a Critical Component of RNP Complexes that Sequester Germline RNAs during Oogenesis., Aguero T, Zhou Y, Kloc M, Chang P, Houliston E, King ML., J Dev Biol. March 1, 2016; 4 (1):               


RNA Whole-Mount In situ Hybridisation Proximity Ligation Assay (rISH-PLA), an Assay for Detecting RNA-Protein Complexes in Intact Cells., Roussis IM, Guille M, Myers FA, Scarlett GP., PLoS One. January 1, 2016; 11 (1): e0147967.          


A novel role for Celf1 in vegetal RNA localization during Xenopus oogenesis., Bauermeister D, Claußen M, Pieler T., Dev Biol. September 15, 2015; 405 (2): 214-24.            


RNA localization in Xenopus oocytes uses a core group of trans-acting factors irrespective of destination., Snedden DD, Bertke MM, Vernon D, Huber PW., RNA. July 1, 2013; 19 (7): 889-95.


Directional transport is mediated by a Dynein-dependent step in an RNA localization pathway., Gagnon JA, Kreiling JA, Powrie EA, Wood TR, Mowry KL., PLoS Biol. January 1, 2013; 11 (4): e1001551.              


Xenopus staufen2 is required for anterior endodermal organ formation., Bilogan CK, Horb ME., Genesis. March 1, 2012; 50 (3): 251-9.                      


Evolution of vertebrate central nervous system is accompanied by novel expression changes of duplicate genes., Chen Y, Chen Y, Ding Y, Zhang Z, Wang W, Chen JY, Ueno N, Mao B., J Genet Genomics. December 20, 2011; 38 (12): 577-84.                                                                                                                                                          


Interaction of 42Sp50 with the vegetal RNA localization machinery in Xenopus laevis oocytes., Loeber J, Claussen M, Jahn O, Pieler T., FEBS J. November 1, 2010; 277 (22): 4722-31.


bicoid RNA localization requires specific binding of an endosomal sorting complex., Irion U, St Johnston D., Nature. February 1, 2007; 445 (7127): 554-8.


RNA aptamers binding the double-stranded RNA-binding domain., Hallegger M, Taschner A, Jantsch MF., RNA. November 1, 2006; 12 (11): 1993-2004.


Zebrafish Staufen1 and Staufen2 are required for the survival and migration of primordial germ cells., Ramasamy S, Wang H, Quach HN, Sampath K., Dev Biol. April 15, 2006; 292 (2): 393-406.


A repeated IMP-binding motif controls oskar mRNA translation and anchoring independently of Drosophila melanogaster IMP., Munro TP, Kwon S, Schnapp BJ, St Johnston D., J Cell Biol. February 13, 2006; 172 (4): 577-88.              


A novel RNA-binding protein in neuronal RNA granules: regulatory machinery for local translation., Shiina N, Shinkura K, Tokunaga M., J Neurosci. April 27, 2005; 25 (17): 4420-34.              


Two distinct Staufen isoforms in Xenopus are vegetally localized during oogenesis., Allison R, Czaplinski K, Git A, Adegbenro E, Stennard F, Houliston E, Standart N., RNA. November 1, 2004; 10 (11): 1751-63.


Xenopus Staufen is a component of a ribonucleoprotein complex containing Vg1 RNA and kinesin., Yoon YJ, Mowry KL., Development. July 1, 2004; 131 (13): 3035-45.      


Nuclear RNP complex assembly initiates cytoplasmic RNA localization., Kress TL, Yoon YJ, Mowry KL., J Cell Biol. April 26, 2004; 165 (2): 203-11.            


Oncogenic potential of TAR RNA binding protein TRBP and its regulatory interaction with RNA-dependent protein kinase PKR., Benkirane M, Neuveut C, Chun RF, Smith SM, Samuel CE, Gatignol A, Jeang KT., EMBO J. February 3, 1997; 16 (3): 611-24.


A conserved double-stranded RNA-binding domain., St Johnston D, Brown NH, Gall JG, Jantsch M., Proc Natl Acad Sci U S A. November 15, 1992; 89 (22): 10979-83.

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