Autonomic neurocristopathy-associated mutations in PHOX2B dysregulate Sox10 expression.
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Hiroshi Ohta | Hideki Enomoto | Teruhiko Wakayama | K. Nakao | H. Enomoto | H. Ohta | T. Wakayama | J. Amiel | D. Trochet | Jeanne Amiel | Chong Li | J. Brunet | Kazuki Nakao | Toshihiro Uesaka | Chong Li | Jean-François Brunet | Mayumi Nagashimada | Delphine Trochet | T. Uesaka | M. Nagashimada
[1] J. Miyazaki,et al. Quantitative expression of Oct-3/4 defines differentiation, dedifferentiation or self-renewal of ES cells , 2000, Nature Genetics.
[2] E. Rappaport,et al. Germline PHOX2B mutation in hereditary neuroblastoma. , 2004, American journal of human genetics.
[3] H. Young,et al. Expression of Ret‐, p75NTR‐, Phox2a‐, Phox2b‐, and tyrosine hydroxylase‐immunoreactivity by undifferentiated neural crest‐derived cells and different classes of enteric neurons in the embryonic mouse gut , 1999, Developmental dynamics : an official publication of the American Association of Anatomists.
[4] J. Milbrandt,et al. GFRα1-Deficient Mice Have Deficits in the Enteric Nervous System and Kidneys , 1998, Neuron.
[5] C. L. Yntema,et al. The origin of intrinsic ganglia of trunk viscera from vagal neural crest in the chick embryo , 1954, The Journal of comparative neurology.
[6] R. Bolande. Neurocristopathy: its growth and development in 20 years. , 1997, Pediatric pathology & laboratory medicine : journal of the Society for Pediatric Pathology, affiliated with the International Paediatric Pathology Association.
[7] J. Maris. Recent advances in neuroblastoma. , 2010, The New England journal of medicine.
[8] W. Gerald,et al. Temporally regulated neural crest transcription factors distinguish neuroectodermal tumors of varying malignancy and differentiation. , 2005, Neoplasia.
[9] T. Saito,et al. Mammalian achaete-scute homolog 1 is transiently expressed by spatially restricted subsets of early neuroepithelial and neural crest cells. , 1991, Genes & development.
[10] M. Nakafuku,et al. Regulation of Gli2 and Gli3 activities by an amino-terminal repression domain: implication of Gli2 and Gli3 as primary mediators of Shh signaling. , 1999, Development.
[11] J. Milbrandt,et al. GFRα1 Expression in Cells Lacking RET Is Dispensable for Organogenesis and Nerve Regeneration , 2004, Neuron.
[12] J. Maris,et al. Prevalence and functional consequence of PHOX2B mutations in neuroblastoma , 2008, Oncogene.
[13] K. Nave,et al. The transcription factor Sox10 is a key regulator of peripheral glial development. , 2001, Genes & development.
[14] H. Young,et al. Development of satellite glia in mouse sympathetic ganglia: GDNF and GFRα1 are not essential , 2008, Glia.
[15] H. Rohrer,et al. The expression of dopamine β-hydroxylase, tyrosine hydroxylase, and Phox2 transcription factors in sympathetic neurons: evidence for common regulation during noradrenergic induction and diverging regulation later in development , 2000, Mechanisms of Development.
[16] K K Matthay,et al. Molecular biology of neuroblastoma. , 1999, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[18] F. Baas,et al. The Phox2B homeobox gene is mutated in sporadic neuroblastomas , 2004, Oncogene.
[19] R. Bolande. The neurocristopathies: A unifying concept of disease arising in neural crest maldevelopment , 1974 .
[20] S. Morrison,et al. The loss of Nf1 transiently promotes self-renewal but not tumorigenesis by neural crest stem cells. , 2008, Cancer cell.
[21] P. Puri,et al. Long-term outcome of patients with enterocolitis complicating Hirschsprung’s disease , 2006, Pediatric Surgery International.
[22] S. Morrison,et al. Enteric glia are multipotent in culture but primarily form glia in the adult rodent gut. , 2011, The Journal of clinical investigation.
[23] David J. Anderson,et al. SOX10 Maintains Multipotency and Inhibits Neuronal Differentiation of Neural Crest Stem Cells , 2003, Neuron.
[24] A Chakravarti,et al. Hirschsprung disease, associated syndromes and genetics: a review , 2001, Journal of Medical Genetics.
[25] R. Longhi,et al. PHOX2B Regulates Its Own Expression by a Transcriptional Auto-regulatory Mechanism* , 2005, Journal of Biological Chemistry.
[26] X. Morin,et al. The homeobox gene Phox2b is essential for the development of autonomic neural crest derivatives , 1999, Nature.
[27] M. Wegner,et al. Bone Morphogenetic Proteins Are Required In Vivo for the Generation of Sympathetic Neurons , 1999, Neuron.
[28] J. Gallego,et al. Phox2b controls the development of peripheral chemoreceptors and afferent visceral pathways , 2003, Development.
[29] Yamamura Ken-ichi,et al. Efficient selection for high-expression transfectants with a novel eukaryotic vector , 1991 .
[30] A. Munnich,et al. Germline mutations of the paired-like homeobox 2B (PHOX2B) gene in neuroblastoma. , 2004, American journal of human genetics.
[31] U. Suter,et al. Schwann Cell Precursors from Nerve Innervation Are a Cellular Origin of Melanocytes in Skin , 2009, Cell.
[32] A. Munnich,et al. PHOX2B genotype allows for prediction of tumor risk in congenital central hypoventilation syndrome. , 2005, American journal of human genetics.
[33] O. Delattre,et al. Molecular pathogenesis of peripheral neuroblastic tumors , 2010, Oncogene.
[34] N. Kessaris,et al. Glial cells in the mouse enteric nervous system can undergo neurogenesis in response to injury. , 2011, The Journal of clinical investigation.
[35] X. Morin,et al. Expression and interactions of the two closely related homeobox genes Phox2a and Phox2b during neurogenesis. , 1997, Development.
[36] J. Milbrandt,et al. RET signaling is essential for migration, axonal growth and axon guidance of developing sympathetic neurons. , 2001, Development.
[37] Chaya Kalcheim,et al. The Neural Crest: General Introduction , 1999 .
[38] A. Look,et al. Neuroblastoma cells isolated from bone marrow metastases contain a naturally enriched tumor-initiating cell. , 2007, Cancer research.
[39] S. Morrison,et al. Cell-Intrinsic Differences between Stem Cells from Different Regions of the Peripheral Nervous System Regulate the Generation of Neural Diversity , 2002, Neuron.
[40] J. Milbrandt,et al. Conditional ablation of GFRα1 in postmigratory enteric neurons triggers unconventional neuronal death in the colon and causes a Hirschsprung's disease phenotype , 2007, Development.
[41] Torsten Werner,et al. Multiple conserved regulatory elements with overlapping functions determine Sox10 expression in mouse embryogenesis , 2007, Nucleic acids research.
[42] H. Rohrer,et al. Neuroblastoma Phox2b Variants Stimulate Proliferation and Dedifferentiation of Immature Sympathetic Neurons , 2010, The Journal of Neuroscience.
[43] T. Rohrer,et al. Congenital central hypoventilation syndrome associated with Hirschsprung's disease and neuroblastoma: Case of multiple neurocristopathies , 2002, Pediatric pulmonology.
[44] G. Tonini,et al. PHOX2B mutations and genetic predisposition to neuroblastoma , 2005, Oncogene.
[45] A. Munnich,et al. Molecular consequences of PHOX2B missense, frameshift and alanine expansion mutations leading to autonomic dysfunction. , 2005, Human molecular genetics.
[46] H. Young,et al. Acquisition of neuronal and glial markers by neural crest–derived cells in the mouse intestine , 2003, The Journal of comparative neurology.
[47] E. Coppola,et al. Reciprocal gene replacements reveal unique functions for Phox2 genes during neural differentiation , 2005, The EMBO journal.
[48] D. Newgreen,et al. A single rostrocaudal colonization of the rodent intestine by enteric neuron precursors is revealed by the expression of Phox2b, Ret, and p75 and by explants grown under the kidney capsule or in organ culture. , 1998, Developmental biology.
[49] E. Dupin,et al. Multipotentiality of the neural crest. , 2003, Current opinion in genetics & development.
[50] D. Riethmacher,et al. The ErbB2 and ErbB3 receptors and their ligand, neuregulin-1, are essential for development of the sympathetic nervous system. , 1998, Genes & development.
[51] J. Gallego,et al. A human mutation in Phox2b causes lack of CO2 chemosensitivity, fatal central apnea, and specific loss of parafacial neurons , 2008, Proceedings of the National Academy of Sciences.
[52] Kwang-Soo Kim,et al. A direct role of the homeodomain proteins Phox2a/2b in noradrenaline neurotransmitter identity determination , 2002, Journal of neurochemistry.
[53] F. Bourdeaut,et al. In neuroblastic tumours, Schwann cells do not harbour the genetic alterations of neuroblasts but may nevertheless share the same clonal origin , 2008, Oncogene.
[54] M. Heilemann,et al. Schwann cells can be reprogrammed to multipotency by culture. , 2011, Stem cells and development.
[55] A. Munnich,et al. Polyalanine expansion and frameshift mutations of the paired-like homeobox gene PHOX2B in congenital central hypoventilation syndrome , 2003, Nature Genetics.
[56] N. L. Douarin. Cell line segregation during peripheral nervous system ontogeny. , 1986, Science.
[57] H. Ohta,et al. Generation of Normal Progeny by Intracytoplasmic Sperm Injection Following Grafting of Testicular Tissue from Cloned Mice That Died Postnatally1 , 2005, Biology of reproduction.
[58] Benish Bm. Letter: "The neurocristopathies: a unifying concept of disease arising in neural crest development". , 1975 .
[59] David J. Anderson,et al. Prospective Identification, Isolation by Flow Cytometry, and In Vivo Self-Renewal of Multipotent Mammalian Neural Crest Stem Cells , 1999, Cell.
[60] S. Lyonnet,et al. Molecular bases of human neurocristopathies. , 2006, Advances in experimental medicine and biology.
[61] T. Wolfsberg,et al. Identification of Neural Crest and Glial Enhancers at the Mouse Sox10 Locus through Transgenesis in Zebrafish , 2008, PLoS genetics.
[62] D. Gozal. Congenital central hypoventilation syndrome: An update , 1998, Pediatric pulmonology.
[63] C. Real,et al. Reversal of developmental restrictions in neural crest lineages: Transition from Schwann cells to glial-melanocytic precursors in vitro , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[64] Isabelle Janoueix-Lerosey,et al. Germline mutations of the paired-like homeobox 2B (PHOX2B) gene in neuroblastoma. , 2005, Cancer letters.
[65] H. Niwa,et al. Efficient selection for high-expression transfectants with a novel eukaryotic vector. , 1991, Gene.