Literature DB >> 10536059

Differential expression of Hoxa-2 protein along the dorsal-ventral axis of the developing and adult mouse spinal cord.

Z Hao1, J Yeung, L Wolf, R Doucette, A Nazarali.   

Abstract

We have used synthetic oligopeptides derived from the coding sequence of the murine Hoxa-2 protein to produce polyclonal antibodies that specifically recognize the Hoxa-2 recombinant protein. Immunohistochemical studies reveal a distinct pattern of spatial and temporal expression of Hoxa-2 protein within the mouse spinal cord which is concomitant with the cytoarchitectural changes occurring in the developing cord. Hoxa-2 protein is predominantly detected in the nuclei of cells in the ventral mantle region of 10-day-old mouse embryos. Islet-1, a marker for motor neurons was also shown to be co-localized with Hoxa-2 in nuclei of cells in this region. As development progresses from 10-days to 14-days of gestation, Hoxa-2 protein expression gradually extends to the dorsal regions of the mantle layer. The Hoxa-2 protein expression pattern changes at 16-days of embryonic development with strong expression visible throughout the dorsal mantle layer. In 18-day-old and adult mouse spinal cords, Hoxa-2 protein was expressed predominantly by cells of the dorsal horn and only by a few cells of the ventral horn. Double labeling studies with an antibody against glial fibrillary acidic protein (GFAP, an astrocyte-specific intermediate filament protein) showed that within the adult spinal cord, astrocytes rarely expressed the Hoxa-2 protein. However, Hoxa-2 and GFAP double-labeled astrocytes were found in the neopallial cultures, although not all astrocytes expressed Hoxa-2. Hoxa-2 expressing oligodendrocyte progenitor cells were also identified after double-labeling with O4 and Hoxa-2 antibodies; although cells in this lineage that have begun to develop a more extensive array of cytoplasmic processes were less likely to be Hoxa-2 positive. The early pattern of Hoxa-2 protein expression across transverse sections of the neural tube is temporally and spatially modified as each major class of neuron is generated. This congruence in the expression of the Hoxa-2 protein and the generation of neurons in the cord suggests that the Hoxa-2 protein may contribute to dorsal-ventral patterning and/or to the specification of neuronal phenotype. Dev Dyn 1999;216:201-217. Copyright 1999 Wiley-Liss, Inc.

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Year:  1999        PMID: 10536059     DOI: 10.1002/(SICI)1097-0177(199910)216:2<201::AID-DVDY10>3.0.CO;2-6

Source DB:  PubMed          Journal:  Dev Dyn        ISSN: 1058-8388            Impact factor:   3.780


  7 in total

1.  Hoxb4 in oligodendrogenesis.

Authors:  Danette J Nicolay; J Ronald Doucette; Adil J Nazarali
Journal:  Cell Mol Neurobiol       Date:  2004-06       Impact factor: 5.046

2.  Temporal and spatial expression of Hoxa-2 during murine palatogenesis.

Authors:  A Nazarali; R Puthucode; V Leung; L Wolf; Z Hao; J Yeung
Journal:  Cell Mol Neurobiol       Date:  2000-06       Impact factor: 5.046

3.  Conditional Tet-regulated over-expression of Hoxa2 in CG4 cells increases their proliferation and delays their differentiation into oligodendrocyte-like cells expressing myelin basic protein.

Authors:  Monica Wang; J Ronald Doucette; Adil J Nazarali
Journal:  Cell Mol Neurobiol       Date:  2011-04-09       Impact factor: 5.046

4.  Neonatal Mice Spinal Cord Interneurons Send Axons through the Dorsal Roots.

Authors:  Laura Paulina Osuna-Carrasco; Sergio Horacio Dueñas-Jiménez; Carmen Toro-Castillo; Braniff De la Torre; Irene Aguilar-García; Jonatan Alpirez; Luis Castillo; Judith Marcela Dueñas-Jiménez
Journal:  Exp Neurobiol       Date:  2022-04-30       Impact factor: 3.800

Review 5.  Hox genes and their candidate downstream targets in the developing central nervous system.

Authors:  Z N Akin; A J Nazarali
Journal:  Cell Mol Neurobiol       Date:  2005-06       Impact factor: 5.046

6.  Ascorbic acid reverses valproic acid-induced inhibition of hoxa2 and maintains glutathione homeostasis in mouse embryos in culture.

Authors:  B Zhang; X Wang; A J Nazarali
Journal:  Cell Mol Neurobiol       Date:  2009-08-05       Impact factor: 5.046

7.  Age-related and cuprizone-induced changes in myelin and transcription factor gene expression and in oligodendrocyte cell densities in the rostral corpus callosum of mice.

Authors:  J Ronald Doucette; Rubin Jiao; Adil J Nazarali
Journal:  Cell Mol Neurobiol       Date:  2010-01-09       Impact factor: 5.046

  7 in total

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