Publications of Liliana Minichiello
All genres
Journal Article (18)
1.
Journal Article
36 (1), pp. 121 - 137 (2002)
Mechanism of TrkB-mediated hippocampal long-term potentiation. Neuron 2.
Journal Article
22 (17), pp. 7502 - 7508 (2002)
Immunohistochemical evidence of seizure-induced activation of trkB receptors in the mossy fiber pathway of adult mouse hippocampus. The Journal of Neuroscience 3.
Journal Article
16 (5), pp. 633 - 645 (2002)
Distinct requirements for TrkB and TrkC signaling in target innervation by sensory neurons. Genes and Development 4.
Journal Article
12 (1), pp. 27 - 38 (2002)
Long-term monitoring of hippocampus-dependent behavior in naturalistic settings: Mutant mice lacking neurotrophin receptor TrkB in the forebrain show spatial learning but impaired behavioral flexibility. Hippocampus 5.
Journal Article
22, pp. 4062 - 4072 (2002)
Receptor-specific regulation of phosphatidylinositol 3'-kinase activation by the protein tyrosine phosphatase Shp2. Molecular and Cellular Biology (Washington, DC) 6.
Journal Article
3 (4), pp. 350 - 357 (2000)
Knocking the NT4 gene into the BDNF locus rescues BDNF deficient mice and reveals distinct NT4 and BDNF activities. Nature Neuroscience 7.
Journal Article
39 (5), pp. 717 - 724 (2000)
Shc-binding site in the TrkB receptor is not required for hippocampal long-term potentiation. Neuropharmacology 8.
Journal Article
24 (2), pp. 401 - 414 (1999)
Essential role for TrkB receptors in hippocampus-mediated learning. Neuron 9.
Journal Article
21 (2), pp. 335 - 345 (1998)
Point mutation in trkB causes loss of NT4-dependent neurons without major effects on diverse BDNF responses. Neuron 10.
Journal Article
18 (18), pp. 7272 - 7284 (1998)
TrkB and neurotrophin-4 are important for development and maintenance of sympathetic preganglionic neurons innervating the adrenal medulla. The Journal of Neuroscience 11.
Journal Article
390 (6657), pp. 281 - 286 (1997)
A role for the Ras signalling pathway in synaptic transmission and long-term memory. Nature 12.
Journal Article
64 (1-2), pp. 77 - 85 (1997)
Survival of inner ear sensory neurons in trk mutant mice. Mechanisms of Development 13.
Journal Article
17 (3), pp. 891 - 903 (1997)
Reduced acetylcholinesterase (AChE) activity in adrenal medulla and loss of sympathetic preganglionic neurons in TrkA-deficient, but not TrkB-deficient, mice. The Journal of Neuroscience 14.
Journal Article
10 (22), pp. 2849 - 2858 (1996)
TrkB and TrkC neurotrophin receptors cooperate in promoting survival of hippocampal and cerebellar granule neurons. Genes and Development 15.
Journal Article
122 (10), pp. 3255 - 3261 (1996)
Timing of neuronal death in trkA, trkB and trkC mutant embryos reveals developmental changes in sensory neuron dependence on Trk signalling. Development 16.
Journal Article
121 (12), pp. 4067 - 4075 (1995)
Differential effects of combined trk receptor mutations on dorsal root ganglion and inner ear sensory neurons. Development 17.
Journal Article
121 (10), pp. 3381 - 3391 (1995)
Developing inner ear sensory neurons require TrkB and TrkC receptors for innervation of their peripheral targets. Development 18.
Journal Article
14 (18), pp. 4482 - 4489 (1995)
Developmental changes in NT3 signaling via TrkA and TrkB in embryonic neurons. The EMBO Journal