Literature DB >> 16884711

Genetic manipulation of blood group carbohydrates alters development and pathfinding of primary sensory axons of the olfactory systems.

James A St John1, Christina Claxton, Mark W Robinson, Fumiichiro Yamamoto, Steven E Domino, Brian Key.   

Abstract

Primary sensory neurons in the vertebrate olfactory systems are characterised by the differential expression of distinct cell surface carbohydrates. We show here that the histo-blood group H carbohydrate is expressed by primary sensory neurons in both the main and accessory olfactory systems while the blood group A carbohydrate is expressed by a subset of vomeronasal neurons in the developing accessory olfactory system. We have used both loss-of-function and gain-of-function approaches to manipulate expression of these carbohydrates in the olfactory system. In null mutant mice lacking the alpha(1,2)fucosyltransferase FUT1, the absence of blood group H carbohydrate resulted in the delayed maturation of the glomerular layer of the main olfactory bulb. In addition, ubiquitous expression of blood group A on olfactory axons in gain-of-function transgenic mice caused mis-routing of axons in the glomerular layer of the main olfactory bulb and led to exuberant growth of vomeronasal axons in the accessory olfactory bulb. These results provide in vivo evidence for a role of specific cell surface carbohydrates during development of the olfactory nerve pathways.

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Year:  2006        PMID: 16884711     DOI: 10.1016/j.ydbio.2006.06.052

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  9 in total

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2.  Wnt/Frizzled family members mediate olfactory sensory neuron axon extension.

Authors:  Diego J Rodriguez-Gil; Charles A Greer
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Review 3.  Biological functions of fucose in mammals.

Authors:  Michael Schneider; Esam Al-Shareffi; Robert S Haltiwanger
Journal:  Glycobiology       Date:  2017-07-01       Impact factor: 4.313

4.  Identification of the plasticity-relevant fucose-alpha(1-2)-galactose proteome from the mouse olfactory bulb.

Authors:  Heather E Murrey; Scott B Ficarro; Chithra Krishnamurthy; Steven E Domino; Eric C Peters; Linda C Hsieh-Wilson
Journal:  Biochemistry       Date:  2009-08-04       Impact factor: 3.162

5.  N-linked glycan profiling of GGTA1/CMAH knockout pigs identifies new potential carbohydrate xenoantigens.

Authors:  Christopher Burlak; Marshall Bern; Alejandro E Brito; Dragan Isailovic; Zheng-Yu Wang; Jose L Estrada; Ping Li; A Joseph Tector
Journal:  Xenotransplantation       Date:  2013-09-05       Impact factor: 3.907

6.  Neofunctionalization of the Sec1 α1,2fucosyltransferase paralogue in leporids contributes to glycan polymorphism and resistance to rabbit hemorrhagic disease virus.

Authors:  Kristina Nyström; Joana Abrantes; Ana Margarida Lopes; Béatrice Le Moullac-Vaidye; Stéphane Marchandeau; Jézabel Rocher; Nathalie Ruvoën-Clouet; Pedro J Esteves; Jacques Le Pendu
Journal:  PLoS Pathog       Date:  2015-04-15       Impact factor: 6.823

7.  Radial glia interact with primary olfactory axons to regulate development of the olfactory bulb.

Authors:  Daniel A Amaya; Jenny A K Ekberg; James A St John
Journal:  Neural Regen Res       Date:  2015-03       Impact factor: 5.135

8.  Widespread gene conversion of alpha-2-fucosyltransferase genes in mammals.

Authors:  Joana Abrantes; David Posada; Patrice Guillon; Pedro J Esteves; Jacques Le Pendu
Journal:  J Mol Evol       Date:  2009-06-16       Impact factor: 2.395

9.  Anatomy, histochemistry, and immunohistochemistry of the olfactory subsystems in mice.

Authors:  Arthur W Barrios; Gonzalo Núñez; Pablo Sánchez Quinteiro; Ignacio Salazar
Journal:  Front Neuroanat       Date:  2014-07-14       Impact factor: 3.856

  9 in total

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