Sox2 deficiency causes neurodegeneration and impaired neurogenesis in the adult mouse brain
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Pier Paolo Pandolfi | Annalisa Canta | Annamaria Vezzani | P. Pandolfi | A. Vezzani | S. Nicolis | S. Ottolenghi | D. Braida | M. Sala | S. Debiasi | A. Ferri | M. Cavallaro | A. Di Cristofano | A. Canta | Sergio Ottolenghi | Silvia DeBiasi | Maurizio Cavallaro | Silvia K Nicolis | Anna L M Ferri | Daniela Braida | Antonello Di Cristofano | Mariaelvina Sala | Maurizio Cavallaro
[1] Sally Temple,et al. The development of neural stem cells , 2001, Nature.
[2] K. Suzuki,et al. Ultrastructural observation on the thalamic neuronal inclusions in young mice , 2004, Acta Neuropathologica.
[3] Claire-Anne Gutekunst,et al. A YAC Mouse Model for Huntington’s Disease with Full-Length Mutant Huntingtin, Cytoplasmic Toxicity, and Selective Striatal Neurodegeneration , 1999, Neuron.
[4] S. W. Davies,et al. Nonapoptotic neurodegeneration in a transgenic mouse model of Huntington's disease. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[5] Nancy A. Jenkins,et al. Human α-synuclein-harboring familial Parkinson's disease-linked Ala-53 → Thr mutation causes neurodegenerative disease with α-synuclein aggregation in transgenic mice , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[6] J. García-Verdugo,et al. Cellular Composition and Three-Dimensional Organization of the Subventricular Germinal Zone in the Adult Mammalian Brain , 1997, The Journal of Neuroscience.
[7] F. Gage,et al. Mammalian neural stem cells. , 2000, Science.
[8] René Hen,et al. Reversal of Neuropathology and Motor Dysfunction in a Conditional Model of Huntington's Disease , 2000, Cell.
[9] S. Temple,et al. LeX/ssea-1 Is Expressed by Adult Mouse CNS Stem Cells, Identifying Them as Nonependymal , 2002, Neuron.
[10] Jonas Frisén,et al. Identification of a Neural Stem Cell in the Adult Mammalian Central Nervous System , 1999, Cell.
[11] D. Price,et al. Human alpha-synuclein-harboring familial Parkinson's disease-linked Ala-53 --> Thr mutation causes neurodegenerative disease with alpha-synuclein aggregation in transgenic mice. , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[12] H. Fraser. Eosinophilic bodies in some neurones in the thalamus of ageing mice , 1969, The Journal of pathology.
[13] S. Orkin,et al. A "knockdown" mutation created by cis-element gene targeting reveals the dependence of erythroid cell maturation on the level of transcription factor GATA-1. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[14] L. Pevny,et al. SOX2 Functions to Maintain Neural Progenitor Identity , 2003, Neuron.
[15] G. Sperk,et al. Powerful anticonvulsant action of IL-1 receptor antagonist on intracerebral injection and astrocytic overexpression in mice. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[16] C. Dobson,et al. Inherent toxicity of aggregates implies a common mechanism for protein misfolding diseases , 2002, Nature.
[17] Masahiro Yamaguchi,et al. Two Distinct Subpopulations of Nestin-Positive Cells in Adult Mouse Dentate Gyrus , 2003, The Journal of Neuroscience.
[18] S. Morrison,et al. Brain Repair by Endogenous Progenitors , 2002, Cell.
[19] F. Gage,et al. More hippocampal neurons in adult mice living in an enriched environment , 1997, Nature.
[20] K. Mizuseki,et al. Requirement of Sox2-mediated signaling for differentiation of early Xenopus neuroectoderm. , 2000, Development.
[21] B. Novitch,et al. Vertebrate neurogenesis is counteracted by Sox1–3 activity , 2003, Nature Neuroscience.
[22] N. Berardi,et al. Alzheimer-like neurodegeneration in aged antinerve growth factor transgenic mice , 2000 .
[23] R. McKay,et al. Dopamine neurons derived from embryonic stem cells function in an animal model of Parkinson's disease , 2002, Nature.
[24] K. Fischbeck,et al. Toxic Proteins in Neurodegenerative Disease , 2002, Science.
[25] F. Gage,et al. Stem cells of the central nervous system. , 1998, Current opinion in neurobiology.
[26] S. Orkin,et al. Dysregulation of protein modification by ISG15 results in brain cell injury. , 2002, Genes & development.
[27] F. Doetsch,et al. The glial identity of neural stem cells , 2003, Nature Neuroscience.
[28] D. Wilkinson. In situ hybridization: a practical approach , 1998 .
[29] A. Álvarez-Buylla,et al. Stem cells in the adult mammalian central nervous system , 1999, Current Opinion in Neurobiology.
[30] A Carlsson,et al. A Paradigm Shift in Brain Research , 2001, Science.
[31] T. Hashikawa,et al. Neurodegeneration with Tau Accumulation in a Transgenic Mouse Expressing V337M Human Tau , 2002, The Journal of Neuroscience.
[32] D. Braida,et al. CP 55,940 protects against ischemia-induced electroencephalographic flattening and hyperlocomotionin Mongolian gerbils , 2000, Neuroscience Letters.
[33] E. Cartwright,et al. Embryonic expression of the chicken Sox2, Sox3 and Sox11 genes suggests an interactive role in neuronal development , 1995, Mechanisms of Development.
[34] G. Martin,et al. An Fgf8 mutant allelic series generated by Cre- and Flp-mediated recombination , 1998, Nature Genetics.
[35] I. Cobos,et al. Graded phenotypic response to partial and complete deficiency of a brain-specific transcript variant of the winged helix transcription factor RFX4 , 2003, Development.
[36] Wolfgang Schmid,et al. Disruption of CREB function in brain leads to neurodegeneration , 2002, Nature Genetics.
[37] H. Zoghbi,et al. Mouse and fly models of neurodegeneration. , 2002, Trends in genetics : TIG.
[38] D. Wozniak,et al. Ataxia and Paroxysmal Dyskinesia in Mice Lacking Axonally Transported FGF14 , 2002, Neuron.
[39] J. García-Verdugo,et al. Astrocytes Give Rise to New Neurons in the Adult Mammalian Hippocampus , 2001, The Journal of Neuroscience.
[40] C. Hayward,et al. Mutations in SOX2 cause anophthalmia , 2003, Nature Genetics.
[41] D. Livingston,et al. A specific, nonproliferative role for E2F-5 in choroid plexus function revealed by gene targeting. , 1998, Genes & development.
[42] N. Heintz,et al. Loss of function of axonemal dynein Mdnah5 causes primary ciliary dyskinesia and hydrocephalus. , 2002, Human molecular genetics.
[43] R. Lovell-Badge,et al. Sox2 regulatory sequences direct expression of a (beta)-geo transgene to telencephalic neural stem cells and precursors of the mouse embryo, revealing regionalization of gene expression in CNS stem cells. , 2000, Development.
[44] H. Kondoh,et al. Pairing SOX off: with partners in the regulation of embryonic development. , 2000, Trends in genetics : TIG.
[45] Daniel A. Lim,et al. Subventricular Zone Astrocytes Are Neural Stem Cells in the Adult Mammalian Brain , 1999, Cell.
[46] R. Lovell-Badge,et al. Multipotent cell lineages in early mouse development depend on SOX2 function. , 2003, Genes & development.
[47] K. Rajewsky,et al. A cre-transgenic mouse strain for the ubiquitous deletion of loxP-flanked gene segments including deletion in germ cells. , 1995, Nucleic acids research.
[48] E. Gould,et al. Learning enhances adult neurogenesis in the hippocampal formation , 1999, Nature Neuroscience.
[49] Peter Goodfellow,et al. A gene mapping to the sex-determining region of the mouse Y chromosome is a member of a novel family of embryonically expressed genes , 1990, Nature.
[50] S. W. Davies,et al. Exon 1 of the HD Gene with an Expanded CAG Repeat Is Sufficient to Cause a Progressive Neurological Phenotype in Transgenic Mice , 1996, Cell.