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Morpholino Publication Database

This database contains citations and abstracts for research using Morpholino oligos, as well as some review articles incorporating Morpholino data. You can search the content using the filter boxes below.

There are 12371 scientific papers returned from the database with the search filters currently being used below.

CCDC39 is required for assembly of inner dynein arms and the dynein regulatory complex and for normal ciliary motility in humans and dogs

Authors:
Merveille AC, Davis EE, Becker-Heck A, Legendre M, Amirav I, Bataille G, Belmont J, Beydon N, Billen F, Clément A, Clercx C, Coste A, Crosbie R, de Blic J, Deleuze S, Duquesnoy P, Escalier D, Escudier E, Fliegauf M, Horvath J, Hill K, Jorissen M, Just J, Kispert A, Lathrop M, Loges NT, Marthin JK, Momozawa Y, Montantin G, Nielsen KG, Olbrich H, Papon JF, Rayet I, Roger G, Schmidts M, Tenreiro H, Towbin JA, Zelenika D, Zentgraf H, Georges M, Lequarr� AS, Katsanis N, Omran H, Amselem S
Citation:
Nat Genet. 2010 Dec 5. [Epub ahead of print]
Epub:
Not Epub
Abstract:
Primary ciliary dyskinesia (PCD) is an inherited disorder characterized by recurrent infections of the upper and lower...
Organism or Cell Type:
zebrafish
Citation Extract:
Merveille AC, Davis EE, Becker-Heck A, Legendre M, Amirav I, Bataille G, Belmont J, Beydon N, Billen F, Clément A, Clercx C, Coste A, Crosbie R, de Blic J, Deleuze S, Duquesnoy P, Escalier D, Escudier E, Fliegauf M, Horvath J, Hill K, Jorissen M, Just J, Kispert A, Lathrop M, Loges NT, Marthin JK, Momozawa Y, Montantin G, Nielsen KG, Olbrich H, Papon JF, Rayet I, Roger G, Schmidts M, Tenreiro H, Towbin JA, Zelenika D, Zentgraf H, Georges M, Lequarr� AS, Katsanis N, Omran H, Amselem S . CCDC39 is required for assembly of inner dynein arms and the dynein regulatory complex and for normal ciliary motility in humans and dogs. Nat Genet. 2010 Dec 5. [Epub ahead of print].

Cdc2-Cyclin B triggers H3 kinase activation of aurora-A in xenopus oocytes.

Authors:
Maton G, Thibier C, Castro A, Lorca T, Prigent C, Jessus C.
Citation:
J Biol Chem. 2003 Jun 13;278(24):21439-49. Epub 2003 Apr 01.
Epub:
Not Epub
Abstract:
Xenopus oocytes are arrested in meiotic prophase I and resume meiotic divisions in response to progesterone. Progesterone...
Delivery Method:
Microinjection
Organism or Cell Type:
Xenopus
Citation Extract:
Maton G, Thibier C, Castro A, Lorca T, Prigent C, Jessus C.. Cdc2-Cyclin B triggers H3 kinase activation of aurora-A in xenopus oocytes.. J Biol Chem. 2003 Jun 13;278(24):21439-49. Epub 2003 Apr 01..

Celf1 regulation of dmrt2a is required for somite symmetry and left-right patterning during zebrafish development

Authors:
Matsui T, Sasaki A, Akazawa N, Otani H, Bessho Y
Citation:
Development. 2012 Aug 16. [Epub ahead of print]
Epub:
Not Epub
Abstract:
RNA-binding proteins (RBPs) bind to numerous and diverse mRNAs to control gene expression post-transcriptionally, although the...
Organism or Cell Type:
zebrafish
Citation Extract:
Matsui T, Sasaki A, Akazawa N, Otani H, Bessho Y. Celf1 regulation of dmrt2a is required for somite symmetry and left-right patterning during zebrafish development. Development. 2012 Aug 16. [Epub ahead of print].

Circular RNAs are a large class of animal RNAs with regulatory potency

Authors:
Memczak S, Jens M, Elefsinioti A, Torti F, Krueger J, Rybak A, Maier L, Mackowiak SD, Gregersen LH, Munschauer M, Loewer A, Ziebold U, Landthaler M, Kocks C, le Noble F, Rajewsky N
Citation:
Nature. 2013 Feb 27. doi: 10.1038/nature11928. [Epub ahead of print]
Epub:
Not Epub
Abstract:
Circular RNAs (circRNAs) in animals are an enigmatic class of RNA with unknown function. To explore circRNAs systematically, we...
Delivery Method:
Microinjection
Organism or Cell Type:
zebrafish
Citation Extract:
Memczak S, Jens M, Elefsinioti A, Torti F, Krueger J, Rybak A, Maier L, Mackowiak SD, Gregersen LH, Munschauer M, Loewer A, Ziebold U, Landthaler M, Kocks C, le Noble F, Rajewsky N. Circular RNAs are a large class of animal RNAs with regulatory potency. Nature. 2013 Feb 27. doi: 10.1038/nature11928. [Epub ahead of print].

Combinatorial Control of Signal-Induced Exon Repression by hnRNP L and PSF

Authors:
Melton AA, Jackson J, Wang J, Lynch KW
Citation:
Mol Cell Biol. 2007 Oct;27(19):6972-84. Epub 2007 Jul 30
Epub:
Not Epub
Abstract:
Cells can regulate their protein repertoire in response to extracellular stimuli via alternative splicing; however, the...
Delivery Method:
Electroporation
Organism or Cell Type:
cell culture: human JSL1 T-cell line
Citation Extract:
Melton AA, Jackson J, Wang J, Lynch KW. Combinatorial Control of Signal-Induced Exon Repression by hnRNP L and PSF. Mol Cell Biol. 2007 Oct;27(19):6972-84. Epub 2007 Jul 30.

Comparative expression profiling reveals an essential role for raldh2 in epimorphic regeneration

Authors:
Mathew LK, Sengupta S, Franzosa JA, Perry J, La Du J, Andreasen EA, Tanguay RL
Citation:
J Biol Chem. 2009 Nov 27;284(48):33642-53. Epub 2009 Sep 30
Epub:
Not Epub
Abstract:
Zebrafish have the remarkable ability to regenerate body parts including the heart and fins by a process referred to as...
Organism or Cell Type:
zebrafish
Citation Extract:
Mathew LK, Sengupta S, Franzosa JA, Perry J, La Du J, Andreasen EA, Tanguay RL. Comparative expression profiling reveals an essential role for raldh2 in epimorphic regeneration. J Biol Chem. 2009 Nov 27;284(48):33642-53. Epub 2009 Sep 30.

Cooperation of Mtmr8 with PI3K regulates actin filament modeling and muscle development in zebrafish

Authors:
Mei J, Li Z, Gui JF
Citation:
PLoS ONE. 2009;4(3):e4979. Epub 2009 Mar 26
Epub:
Not Epub
Abstract:
BACKGROUND: It has been shown that mutations in at least four myotubularin family genes (MTM1, MTMR1, 2 and 13) are causative...
Organism or Cell Type:
zebrafish
Citation Extract:
Mei J, Li Z, Gui JF. Cooperation of Mtmr8 with PI3K regulates actin filament modeling and muscle development in zebrafish. PLoS ONE. 2009;4(3):e4979. Epub 2009 Mar 26.

Crosstalk between AHR and Wnt signaling through R-Spondin1 impairs tissue regeneration in zebrafish

Authors:
Mathew LK, Sengupta SS, Ladu J, Andreasen EA, Tanguay RL
Citation:
FASEB J. 2008 Aug;22(8):3087-96. Epub 2008 May 21
Epub:
Not Epub
Abstract:
Exposure to dioxins, including 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD), causes a wide array of toxicities in vertebrates,...
Organism or Cell Type:
zebrafish
Citation Extract:
Mathew LK, Sengupta SS, Ladu J, Andreasen EA, Tanguay RL. Crosstalk between AHR and Wnt signaling through R-Spondin1 impairs tissue regeneration in zebrafish. FASEB J. 2008 Aug;22(8):3087-96. Epub 2008 May 21.

CXCR7 (RDC1) promotes breast and lung tumor growth in vivo and is expressed on tumor-associated vasculature

Authors:
Miao Z, Luker KE, Summers BC, Berahovich R, Bhojani MS, Rehemtulla A, Kleer CG, Essner JJ, Nasevicius A, Luker GD, Howard MC, Schall TJ
Citation:
Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15735-40. Epub 2007 Sep 26
Epub:
Not Epub
Abstract:
Chemokines and chemokine receptors have been posited to have important roles in several common malignancies, including breast...
Organism or Cell Type:
zebrafish
Citation Extract:
Miao Z, Luker KE, Summers BC, Berahovich R, Bhojani MS, Rehemtulla A, Kleer CG, Essner JJ, Nasevicius A, Luker GD, Howard MC, Schall TJ. CXCR7 (RDC1) promotes breast and lung tumor growth in vivo and is expressed on tumor-associated vasculature. Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15735-40. Epub 2007 Sep 26.

Development of an embryonic skeletogenic mesenchyme lineage in a sea cucumber reveals the trajectory of change for the evolution of novel structures in echinoderms

Authors:
McCauley BS, Wright EP, Exner CE, Kitazawa C, Hinman VF
Citation:
EvoDevo. 2012;3:17 doi:10.1186/2041-9139-3-17
Epub:
Not Epub
Abstract:
Background The mechanisms by which the conserved genetic “toolkit” for development generates phenotypic disparity across...
Delivery Method:
Microinjection
Organism or Cell Type:
sea cucumber, Parastichopus parvimensis
Citation Extract:
McCauley BS, Wright EP, Exner CE, Kitazawa C, Hinman VF. Development of an embryonic skeletogenic mesenchyme lineage in a sea cucumber reveals the trajectory of change for the evolution of novel structures in echinoderms. EvoDevo. 2012;3:17 doi:10.1186/2041-9139-3-17.

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