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Profile Publications (73)
XB-PERS-2640

Publications By Laurence D Etkin (1945-2006)

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Disruption of the dynamic sub-cellular localization of the Xenopus tumorhead protein causes embryonic lethality at the early gastrula transition., Traverso EE, Cho MS, Wu CF, Sater AK, Larabell CA, Kloc M, Etkin LD., Differentiation. December 1, 2007; 75 (10): 947-56.   


Tumorhead distribution to cytoplasmic membrane of neural plate cells is positively regulated by Xenopus p21-activated kinase 1 (X-PAK1)., Wu CF, Delsert C, Faure S, Traverso EE, Kloc M, Kuang J, Etkin LD, Morin N., Dev Biol. August 1, 2007; 308 (1): 169-86.   


Hermes RNA-binding protein targets RNAs-encoding proteins involved in meiotic maturation, early cleavage, and germline development., Song HW, Cauffman K, Chan AP, Zhou Y, King ML, Etkin LD, Kloc M., Differentiation. July 1, 2007; 75 (6): 519-28.   


The maternally localized RNA fatvg is required for cortical rotation and germ cell formation., Chan AP, Kloc M, Larabell CA, LeGros M, Etkin LD., Mech Dev. May 1, 2007; 124 (5): 350-63.


Phosphorylation of the proline-rich domain of Xp95 modulates Xp95 interaction with partner proteins., Dejournett RE, Kobayashi R, Pan S, Wu C, Etkin LD, Clark RB, Bögler O, Kuang J., Biochem J. January 15, 2007; 401 (2): 521-31.


Identification of TH-B, a new oligomeric variant of the Xenopus morphogenetic factor, tumorhead., Traverso EE, Cho MS, Wu CF, Etkin LD., Int J Dev Biol. January 1, 2006; 50 (4): 423-7.   


Potential structural role of non-coding and coding RNAs in the organization of the cytoskeleton at the vegetal cortex of Xenopus oocytes., Kloc M, Wilk K, Vargas D, Shirato Y, Bilinski S, Etkin LD., Development. August 1, 2005; 132 (15): 3445-57.


Inhibition of the anaphase-promoting complex by the Xnf7 ubiquitin ligase., Casaletto JB, Nutt LK, Wu Q, Moore JD, Etkin LD, Jackson PK, Hunt T, Kornbluth S., J Cell Biol. April 11, 2005; 169 (1): 61-71.   


The Xenopus laevis morphogenetic factor, tumorhead, causes defects in polarized growth and cytokinesis in the fission yeast, Schizosaccharomyces pombe., Wu CF, Yang P, Traverso EE, Etkin LD, Marcus S., Biochem Biophys Res Commun. December 10, 2004; 325 (2): 439-44.


Sm proteins, the constituents of the spliceosome, are components of nuage and mitochondrial cement in Xenopus oocytes., Bilinski SM, Jaglarz MK, Szymanska B, Etkin LD, Kloc M., Exp Cell Res. September 10, 2004; 299 (1): 171-8.


Hermes is a localized factor regulating cleavage of vegetal blastomeres in Xenopus laevis., Zearfoss NR, Chan AP, Wu CF, Kloc M, Etkin LD., Dev Biol. March 1, 2004; 267 (1): 60-71.


Formation, architecture and polarity of female germline cyst in Xenopus., Kloc M, Bilinski S, Dougherty MT, Brey EM, Etkin LD., Dev Biol. February 1, 2004; 266 (1): 43-61.   


Evidence for antagonism of BMP-4 signals by MAP kinase during Xenopus axis determination and neural specification., Sater AK, El-Hodiri HM, Goswami M, Alexander TB, Al-Sheikh O, Etkin LD, Akif Uzman J., Differentiation. September 1, 2003; 71 (7): 434-44.   


Identification and characterization of the Xlsirt cis-acting RNA localization element., Allen L, Kloc M, Etkin LD., Differentiation. August 1, 2003; 71 (6): 311-21.


Identification of new Xlsirt family members in the Xenopus laevis oocyte., Zearfoss NR, Chan AP, Kloc M, Allen LH, Etkin LD., Mech Dev. April 1, 2003; 120 (4): 503-9.   


Difference in the maternal and zygotic contributions of tumorhead on embryogenesis., Wu CF, Chan AP, Etkin LD., Dev Biol. March 15, 2003; 255 (2): 290-302.


A human Mix-like homeobox gene MIXL shows functional similarity to Xenopus Mix.1., Guo W, Chan AP, Liang H, Wieder ED, Molldrem JJ, Etkin LD, Nagarajan L., Blood. July 1, 2002; 100 (1): 89-95.


Notch signaling is involved in the regulation of Id3 gene transcription during Xenopus embryogenesis., Reynaud-Deonauth S, Zhang H, Afouda A, Taillefert S, Beatus P, Kloc M, Etkin LD, Fischer-Lougheed J, Spohr G., Differentiation. January 1, 2002; 69 (4-5): 198-208.   


Three-dimensional ultrastructural analysis of RNA distribution within germinal granules of Xenopus., Kloc M, Dougherty MT, Bilinski S, Chan AP, Brey E, King ML, Patrick CW, Etkin LD., Dev Biol. January 1, 2002; 241 (1): 79-93.   


Tumorhead, a Xenopus gene product that inhibits neural differentiation through regulation of proliferation., Wu CF, Nakamura H, Chan AP, Zhou YH, Cao T, Kuang J, Gong SG, He G, Etkin LD., Development. September 1, 2001; 128 (17): 3381-93.   


Mitochondrial ribosomal RNA in the germinal granules in Xenopus embryos revisited., Kloc M, Bilinski S, Chan AP, Etkin LD., Differentiation. March 1, 2001; 67 (3): 80-3.   


Patterning and lineage specification in the amphibian embryo., Chan AP, Etkin LD., Curr Top Dev Biol. January 1, 2001; 51 1-67.


RNA localization and germ cell determination in Xenopus., Kloc M, Bilinski S, Chan AP, Allen LH, Zearfoss NR, Etkin LD., Int Rev Cytol. January 1, 2001; 203 63-91.


The vegetally localized mRNA fatvg is associated with the germ plasm in the early embryo and is later expressed in the fat body., Chan AP, Kloc M, Bilinski S, Etkin LD., Mech Dev. January 1, 2001; 100 (1): 137-40.   


XCS-1, a maternally expressed gene product involved in regulating mitosis in Xenopus., Nakamura H, Wu C, Kuang J, Larabell C, Etkin LD., J Cell Sci. July 1, 2000; 113 ( Pt 13) 2497-505.   


The targeting of Xcat2 mRNA to the germinal granules depends on a cis-acting germinal granule localization element within the 3'UTR., Kloc M, Bilinski S, Pui-Yee Chan A, Etkin LD., Dev Biol. January 15, 2000; 217 (2): 221-9.   


fatvg encodes a new localized RNA that uses a 25-nucleotide element (FVLE1) to localize to the vegetal cortex of Xenopus oocytes., Chan AP, Kloc M, Etkin LD., Development. November 1, 1999; 126 (22): 4943-53.   


Joint action of two RNA degradation pathways controls the timing of maternal transcript elimination at the midblastula transition in Drosophila melanogaster., Bashirullah A, Halsell SR, Cooperstock RL, Kloc M, Karaiskakis A, Fisher WW, Fu W, Hamilton JK, Etkin LD, Lipshitz HD., EMBO J. May 4, 1999; 18 (9): 2610-20.


RNA localization., Etkin LD, Lipshitz HD., FASEB J. March 1, 1999; 13 (3): 419-20.


Identification and cloning of xp95, a putative signal transduction protein in Xenopus oocytes., Che S, El-Hodiri HM, Wu CF, Nelman-Gonzalez M, Weil MM, Etkin LD, Clark RB, Kuang J., J Biol Chem. February 26, 1999; 274 (9): 5522-31.


Contribution of METRO pathway localized molecules to the organization of the germ cell lineage., Kloc M, Larabell C, Chan AP, Etkin LD., Mech Dev. July 1, 1998; 75 (1-2): 81-93.


Apparent continuity between the messenger transport organizer and late RNA localization pathways during oogenesis in Xenopus., Kloc M, Etkin LD., Mech Dev. April 1, 1998; 73 (1): 95-106.


Characterization and function of Xnf7 during early development of Xenopus., Etkin LD, el-Hodiri HM, Nakamura H, Wu CF, Shou W, Gong SG., J Cell Physiol. November 1, 1997; 173 (2): 144-6.


xnf7 functions in dorsal-ventral patterning of the Xenopus embryo., El-Hodiri HM, Shou W, Etkin LD., Dev Biol. October 1, 1997; 190 (1): 1-17.   


Mitogen-activated protein kinase and cyclin B/Cdc2 phosphorylate Xenopus nuclear factor 7 (xnf7) in extracts from mature oocytes. Implications for regulation of xnf7 subcellular localization., El-Hodiri HM, Che S, Nelman-Gonzalez M, Kuang J, Etkin LD., J Biol Chem. August 15, 1997; 272 (33): 20463-70.


A new face for the endoplasmic reticulum: RNA localization., Etkin LD., Science. May 16, 1997; 276 (5315): 1092-3.


Elaboration of the messenger transport organizer pathway for localization of RNA to the vegetal cortex of Xenopus oocytes., Kloc M, Larabell C, Etkin LD., Dev Biol. November 25, 1996; 180 (1): 119-30.   


Finely tuned regulation of cytoplasmic retention of Xenopus nuclear factor 7 by phosphorylation of individual threonine residues., Shou W, Li X, Wu C, Cao T, Kuang J, Che S, Etkin LD., Mol Cell Biol. March 1, 1996; 16 (3): 990-7.


Novel topology of a zinc-binding domain from a protein involved in regulating early Xenopus development., Borden KL, Lally JM, Martin SR, O'Reilly NJ, Etkin LD, Freemont PS., EMBO J. December 1, 1995; 14 (23): 5947-56.


Two forms of Xenopus nuclear factor 7 have overlapping spatial but different temporal patterns of expression during development., Gong SG, Reddy BA, Etkin LD., Mech Dev. August 1, 1995; 52 (2-3): 305-18.   


Id gene activity during Xenopus embryogenesis., Zhang H, Reynaud S, Kloc M, Etkin LD, Spohr G., Mech Dev. April 1, 1995; 50 (2-3): 119-30.


Two distinct pathways for the localization of RNAs at the vegetal cortex in Xenopus oocytes., Kloc M, Etkin LD., Development. February 1, 1995; 121 (2): 287-97.   


Delocalization of Vg1 mRNA from the vegetal cortex in Xenopus oocytes after destruction of Xlsirt RNA., Kloc M, Etkin LD., Science. August 19, 1994; 265 (5175): 1101-3.


The association of Xenopus nuclear factor 7 with subcellular structures is dependent upon phosphorylation and specific domains., Li X, Shou W, Kloc M, Reddy BA, Etkin LD., Exp Cell Res. August 1, 1994; 213 (2): 473-81.


Cytoplasmic retention of Xenopus nuclear factor 7 before the mid blastula transition uses a unique anchoring mechanism involving a retention domain and several phosphorylation sites., Li X, Shou W, Kloc M, Reddy BA, Etkin LD., J Cell Biol. January 1, 1994; 124 (1-2): 7-17.


Translocation of repetitive RNA sequences with the germ plasm in Xenopus oocytes., Kloc M, Spohr G, Etkin LD., Science. December 10, 1993; 262 (5140): 1712-4.


Characterisation of a novel cysteine/histidine-rich metal binding domain from Xenopus nuclear factor XNF7., Borden KL, Martin SR, O'Reilly NJ, Lally JM, Reddy BA, Etkin LD, Freemont PS., FEBS Lett. December 6, 1993; 335 (2): 255-60.


The formation of the pronephric duct in Xenopus involves recruitment of posterior cells by migrating pronephric duct cells., Cornish JA, Etkin LD., Dev Biol. September 1, 1993; 159 (1): 338-45.


Two upstream cysteines and the CAAX motif but not the polybasic domain are required for membrane association of Xlcaax in Xenopus oocytes., Kloc M, Li XX, Etkin LD., Biochemistry. August 17, 1993; 32 (32): 8207-12.


Xenopus nuclear factor 7 (xnf7) possesses an NLS that functions efficiently in both oocytes and embryos., Li X, Etkin LD., J Cell Sci. June 1, 1993; 105 ( Pt 2) 389-95.

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