| Literature DB >> 20969804 |
Xiu-Li Kuang1, Xiao-Mei Zhao, Hai-Fang Xu, Yuan-Yuan Shi, Jin-Bo Deng, Guo-Tao Sun.
Abstract
BACKGROUND: <hemical">span class="Gene">Neuron-derived neurotrophic factor (NDNF) is evolutionarily well conserved, being present in invertebrate animals such as the nematode, Caenorhabditis elegans, as well as in the fruit fly, Drosophila melanogaster. Multiple cysteines are conserved between species and secondary structure prediction shows that NDNF is mainly composed of beta-strands. In this study, we aimed to investigate the function of NDNF.Entities:
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Year: 2010 PMID: 20969804 PMCID: PMC2984559 DOI: 10.1186/1471-2202-11-137
Source DB: PubMed Journal: BMC Neurosci ISSN: 1471-2202 Impact factor: 3.288
Figure 1Comparison of the protein sequence of NDNF. Identical amino acids are shaded. The signal peptide of NDNF is marked (SP), and the conserved N-linked glycosylation sites are indicated (G). The putative secondary structure is presented under the alignment. The red box represents the alpha-helix and the blue box represents the beta-sheet. In the frame, the phylogenic tree of NDNF proteins is shown.
Figure 2Secretion of NDNF into culture medium. Western blot analysis of conditioned medium from HEK293 cells transfected with empty vector (mock) and HEK293 cells transfected with NDNF.
Figure 3Subcellular localization of NDNF in HEK293 cells. Co-labeling NDNF (green) and ERGIC-53/P58 (red) in HEK293 cells show that NDNF is predominantly distributed around the nuclei, representing endoplasmic reticulum/Golgi. The nuclear DNA was labeled with DAPI (blue) to identify individual cells. Scale bars: 15 um.
Figure 4Glycosylation, and tissue distribution of NDNF. A. Mouse NDNF protein immunoprecipitated from brain extracts was incubated with PNGase F and then analyzed by western blot in triplicate. B. Protein samples from the brains, spinal cords, kidneys, livers and hearts of mice were analyzed by western blot analysis using beta-actin as a control in triplicate. NDNF is expressed by cells in the mouse brain and spinal cord.
Figure 5Effects of NDNF on cultured hippocampal neurons. A. The cultured neurons were transfected with pEGFP to express green fluorescent protein (GFP) and immunostained with the neuron marker, neuN antibody (red). B. The conditioned medium with NDNF protein was used on cultured hippocampal neurons, with BDNF (20 ng/ml) as positive controls, and quantitative analysis was provided in C-E. C. A histogram was used to graphically display the number of cells that migrated per field (n = 10). BDNF or NDNF vs control, p < 0.01. D. A histogram was used to graphically display the cell soma area (n = 60). BDNF or NDNF vs control, p < 0.05. E. A histogram was used to graphically display the neurite length (n = 60). BDNF or NDNF vs control, NDNF vs BDNF, p < 0.01. Scale bars: 50 um.
Figure 6Effect of NDNF on the cell survival by MTT assay. Percent survival is expressed relative to control (100%). Glutamate (10 uM) and Aβ25-35 (5 uM) were used. Bar represents average (± SEM) for three experiments repeated in triplicate. BDNF (20 ng/ml) or NDNF group vs Vehicle group, p < 0.01.
Figure 7Expression of NDNF in the mouse brain. A. Cerebral cortex; B. Cerebellar cortex; C. Olfactory bulb. ML, molecular layer; PCL, purkinje cell layer; GCL, granule cell layer; ECL, external plexiform layer; MCL, mitral cell layer. Scale bars: 50 um.
Figure 8Expression of NDNF in neurons. Cerebral cortex (A-C); Cervical spinal cord adjacent to medulla (D-F). NDNF-positive cells colocalized with the neuronal markers NeuN (red). Scale bars: 30 um.
Figure 9NDNF expression was not seen in astrocytes. Cerebral cortex (A-C), Hippocampus (D-F), Spinal cord (G-I); NDNF staining was not merged with GFAP (red), an astrocytic marker. Scale bars: 50 um.
Figure 10Developmental changes in NDNF expression in the mouse brain. Sections of the cerebral cortex were immunolabelled with NDNF antibody. A dramatic decrease in the density and number of NDNF-expressing cells was found from postnatal day P7 to adults (P60, P90). MZ: marginal zone; CP: cortical plate. Scale bars: 60 um.
Figure 11Expression of NDNF in the cerebral cortex during development. Reelin antibody (red) was used to show Cajal-Retzius cells and reelin-positive interneurons. Cajal-Retzius cells express NDNF from E16 to P7. Scale bars: 50 um.