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Items: 1 to 20 of 77

1.

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

Murrey HE, Ficarro SB, Krishnamurthy C, Domino SE, Peters EC, Hsieh-Wilson LC.

Biochemistry. 2009 Aug 4;48(30):7261-70. doi: 10.1021/bi900640x.

2.

Identification of fucose alpha(1-2) galactose epitope-containing glycoproteins from rat hippocampus.

Smalla KH, Angenstein F, Richter K, Gundelfinger ED, Staak S.

Neuroreport. 1998 Mar 30;9(5):813-7.

PMID:
9579671
3.

Protein fucosylation regulates synapsin Ia/Ib expression and neuronal morphology in primary hippocampal neurons.

Murrey HE, Gama CI, Kalovidouris SA, Luo WI, Driggers EM, Porton B, Hsieh-Wilson LC.

Proc Natl Acad Sci U S A. 2006 Jan 3;103(1):21-6. Epub 2005 Dec 22.

4.

Photoactivatable glycopolymers for the proteome-wide identification of fucose-α(1-2)-galactose binding proteins.

Wibowo A, Peters EC, Hsieh-Wilson LC.

J Am Chem Soc. 2014 Jul 9;136(27):9528-31. doi: 10.1021/ja502482a. Epub 2014 Jun 25.

6.

Molecular clock regulates daily α1-2-fucosylation of the neural cell adhesion molecule (NCAM) within mouse secondary olfactory neurons.

Kondoh D, Tateno H, Hirabayashi J, Yasumoto Y, Nakao R, Oishi K.

J Biol Chem. 2014 Dec 26;289(52):36158-65. doi: 10.1074/jbc.M114.571141. Epub 2014 Nov 10.

7.

A role for fucose alpha(1-2) galactose carbohydrates in neuronal growth.

Kalovidouris SA, Gama CI, Lee LW, Hsieh-Wilson LC.

J Am Chem Soc. 2005 Feb 9;127(5):1340-1.

PMID:
15686343
8.

Reduction in the level of Gal(alpha1,3)Gal in transgenic mice and pigs by the expression of an alpha(1,2)fucosyltransferase.

Sharma A, Okabe J, Birch P, McClellan SB, Martin MJ, Platt JL, Logan JS.

Proc Natl Acad Sci U S A. 1996 Jul 9;93(14):7190-5.

9.
10.

Quantitative proteomics reveals olfactory input-dependent alterations in the mouse olfactory bulb proteome.

Zeng HL, Rao X, Zhang LK, Zhao X, Zhang WP, Wang J, Xu F, Guo L.

J Proteomics. 2014 Sep 23;109:125-42. doi: 10.1016/j.jprot.2014.06.023. Epub 2014 Jul 3.

PMID:
24998433
11.
12.

Chemoenzymatic probes for detecting and imaging fucose-α(1-2)-galactose glycan biomarkers.

Chaubard JL, Krishnamurthy C, Yi W, Smith DF, Hsieh-Wilson LC.

J Am Chem Soc. 2012 Mar 14;134(10):4489-92. doi: 10.1021/ja211312u. Epub 2012 Feb 29.

13.

Using GADlacZ transgenic mice as a marker system for homotopic transplantation.

Sekerková G, Katarova Z, Szabó G.

Brain Res Brain Res Protoc. 1998 Sep;3(1):107-18.

PMID:
9767140
14.

Expression and localization of the calmodulin-binding protein neurogranin in the adult mouse olfactory bulb.

Gribaudo S, Bovetti S, Garzotto D, Fasolo A, De Marchis S.

J Comp Neurol. 2009 Dec 10;517(5):683-94. doi: 10.1002/cne.22177.

PMID:
19827160
15.

Cell surface carbohydrates and glomerular targeting of olfactory sensory neuron axons in the mouse.

Lipscomb BW, Treloar HB, Klenoff J, Greer CA.

J Comp Neurol. 2003 Dec 1;467(1):22-31.

PMID:
14574677
16.

Disrupted compartmental organization of axons and dendrites within olfactory glomeruli of mice deficient in the olfactory cell adhesion molecule, OCAM.

Walz A, Mombaerts P, Greer CA, Treloar HB.

Mol Cell Neurosci. 2006 May-Jun;32(1-2):1-14. Epub 2006 Mar 10.

PMID:
16531066
17.

Pattern of olfactory bulb innervation returns after recovery from reversible peripheral deafferentation.

Cummings DM, Emge DK, Small SL, Margolis FL.

J Comp Neurol. 2000 Jun 5;421(3):362-73.

PMID:
10813792
18.

Slits and Robo-2 regulate the coalescence of subsets of olfactory sensory neuron axons within the ventral region of the olfactory bulb.

Cho JH, Kam JW, Cloutier JF.

Dev Biol. 2012 Nov 15;371(2):269-79. doi: 10.1016/j.ydbio.2012.08.028. Epub 2012 Sep 7.

20.

Congenital lack of nNOS impairs long-term social recognition memory and alters the olfactory bulb proteome.

Jüch M, Smalla KH, Kähne T, Lubec G, Tischmeyer W, Gundelfinger ED, Engelmann M.

Neurobiol Learn Mem. 2009 Nov;92(4):469-84. doi: 10.1016/j.nlm.2009.06.004. Epub 2009 Jun 14.

PMID:
19531381

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