Year |
Citation |
Score |
2021 |
Lin WJ, Zhao Y, Li Z, Zheng S, Zou JL, Warren NA, Bali P, Wu J, Xing M, Jiang C, Tang Y, Salton SR, Ye X. An increase in VGF expression through a rapid, transcription-independent, autofeedback mechanism improves cognitive function. Translational Psychiatry. 11: 383. PMID 34238925 DOI: 10.1038/s41398-021-01489-2 |
0.301 |
|
2016 |
Jiang C, Lin WJ, Sadahiro M, Shin AC, Buettner C, Salton SR. Embryonic ablation of neuronal VGF increases energy expenditure and reduces body weight. Neuropeptides. PMID 28024880 DOI: 10.1016/j.npep.2016.12.005 |
0.318 |
|
2016 |
Foglesong GD, Huang W, Liu X, Slater AM, Siu J, Yildiz V, Salton SR, Cao L. Role of Hypothalamic VGF in Energy Balance and Metabolic Adaption to Environmental Enrichment in Mice. Endocrinology. en20151627. PMID 26730934 DOI: 10.1210/en.2015-1627 |
0.319 |
|
2009 |
Watson E, Fargali S, Okamoto H, Sadahiro M, Gordon RE, Chakraborty T, Sleeman MW, Salton SR. Analysis of knockout mice suggests a role for VGF in the control of fat storage and energy expenditure. Bmc Physiology. 9: 19. PMID 19863797 DOI: 10.1186/1472-6793-9-19 |
0.541 |
|
2005 |
Watson E, Hahm S, Mizuno TM, Windsor J, Montgomery C, Scherer PE, Mobbs CV, Salton SR. VGF ablation blocks the development of hyperinsulinemia and hyperglycemia in several mouse models of obesity. Endocrinology. 146: 5151-63. PMID 16141392 DOI: 10.1210/En.2005-0588 |
0.502 |
|
2004 |
Levi A, Ferri GL, Watson E, Possenti R, Salton SR. Processing, distribution, and function of VGF, a neuronal and endocrine peptide precursor. Cellular and Molecular Neurobiology. 24: 517-33. PMID 15233376 DOI: 10.1023/B:Cemn.0000023627.79947.22 |
0.571 |
|
2004 |
Mobbs CV, Yen K, Mastaitis J, Nguyen H, Watson E, Wurmbach E, Sealfon SC, Brooks A, Salton SR. Mining microarrays for metabolic meaning: nutritional regulation of hypothalamic gene expression. Neurochemical Research. 29: 1093-103. PMID 15176466 DOI: 10.1023/B:Nere.0000023596.49140.E0 |
0.499 |
|
2003 |
Snyder SE, Peng B, Pintar JE, Salton SR. Expression of VGF mRNA in developing neuroendocrine and endocrine tissues. The Journal of Endocrinology. 179: 227-35. PMID 14596674 DOI: 10.1677/joe.0.1790227 |
0.314 |
|
2003 |
Salton SR. Neurotrophins, growth-factor-regulated genes and the control of energy balance. The Mount Sinai Journal of Medicine, New York. 70: 93-100. PMID 12634901 |
0.389 |
|
2002 |
Hahm S, Fekete C, Mizuno TM, Windsor J, Yan H, Boozer CN, Lee C, Elmquist JK, Lechan RM, Mobbs CV, Salton SR. VGF is required for obesity induced by diet, gold thioglucose treatment, and agouti and is differentially regulated in pro-opiomelanocortin- and neuropeptide Y-containing arcuate neurons in response to fasting. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 22: 6929-38. PMID 12177191 DOI: 10.1523/Jneurosci.22-16-06929.2002 |
0.341 |
|
2000 |
Salton SR, Ferri GL, Hahm S, Snyder SE, Wilson AJ, Possenti R, Levi A. VGF: a novel role for this neuronal and neuroendocrine polypeptide in the regulation of energy balance. Frontiers in Neuroendocrinology. 21: 199-219. PMID 10882540 DOI: 10.1006/frne.2000.0199 |
0.431 |
|
1999 |
Hahm S, Mizuno TM, Wu TJ, Wisor JP, Priest CA, Kozak CA, Boozer CN, Peng B, McEvoy RC, Good P, Kelley KA, Takahashi JS, Pintar JE, Roberts JL, Mobbs CV, ... Salton SR, et al. Targeted deletion of the Vgf gene indicates that the encoded secretory peptide precursor plays a novel role in the regulation of energy balance. Neuron. 23: 537-48. PMID 10433265 DOI: 10.1016/S0896-6273(00)80806-5 |
0.344 |
|
1992 |
Baybis M, Salton SR. Nerve growth factor rapidly regulates VGF gene transcription through cycloheximide sensitive and insensitive pathways. Febs Letters. 308: 202-6. PMID 1499731 DOI: 10.1016/0014-5793(92)81274-P |
0.324 |
|
1991 |
Salton SR, Fischberg DJ, Dong KW. Structure of the gene encoding VGF, a nervous system-specific mRNA that is rapidly and selectively induced by nerve growth factor in PC12 cells. Molecular and Cellular Biology. 11: 2335-49. PMID 2017159 |
0.31 |
|
1984 |
Richter-Landsberg C, Lee VM, Salton SR, Shelanski ML, Greene LA. Release of the NILE and other glycoproteins from cultured PC12 rat pheochromocytoma cells and sympathetic neurons. Journal of Neurochemistry. 43: 841-8. PMID 6747638 DOI: 10.1111/J.1471-4159.1984.Tb12807.X |
0.545 |
|
1983 |
Margolis RK, Salton SR, Margolis RU. Complex carbohydrates of cultured PC12 pheochromocytoma cells. Effects of nerve growth factor and comparison with neonatal and mature rat brain. The Journal of Biological Chemistry. 258: 4110-7. PMID 6833245 |
0.334 |
|
1983 |
Salton SR, Shelanski ML, Greene LA. Biochemical properties of the nerve growth factor-inducible large external (NILE) glycoprotein. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 3: 2420-30. PMID 6655495 DOI: 10.1523/Jneurosci.03-12-02420.1983 |
0.566 |
|
1983 |
Margolis RK, Salton SR, Margolis RU. Structural features of the nerve growth factor inducible large external glycoprotein of PC12 pheochromocytoma cells and brain. Journal of Neurochemistry. 41: 1635-40. PMID 6644303 DOI: 10.1111/J.1471-4159.1983.Tb00874.X |
0.31 |
|
1983 |
Salton SR, Richter-Landsberg C, Greene LA, Shelanski ML. Nerve growth factor-inducible large external (NILE) glycoprotein: studies of a central and peripheral neuronal marker. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 3: 441-54. PMID 6338160 DOI: 10.1523/Jneurosci.03-03-00441.1983 |
0.567 |
|
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