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Immunohistochemical localization of Bis protein in the rat central nervous system

  • Hyun Jung Park
  • , Jeong Sun Choi
  • , Myung Hoon Chun
  • , Jin Woong Chung
  • , Mi Hee Jeon
  • , Jeong Hwa Lee
  • , Mun Yong Lee
  • The Catholic University of Korea

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

We studied the distribution of Bis (Bcl-2 interacting death suppressor) protein in the adult rat brain and spinal cord using immunohistochemistry. Immunoreactivity was observed in specific neuronal populations in distinct nuclei. The most intensely labeled cells were associated with the motor system, including most cranial nerve motor nuclei, Purkinje cells of the cerebellum, the red nucleus, and the ventral motor neurons of the spinal cord. Bis protein was also expressed in several structures associated with the ventricular system, including the subventricular zone of the lateral ventricle and its rostral extension, in the subcommissural organ, and in tanycytes, radial glial cells in the hypothalamus. Using double-labeling techniques, Bis-immunoreactive cells in the rostral migratory stream, coexpressing Bcl-2, were confirmed as glial fibrillary acidic protein-positive astrocytes comprising the glial tubes. The widespread distribution of Bis suggests that this protein has broader functions in the adult rat central nervous system than previously thought, and that it could be associated with a particular role in the rostral migratory system.

Original languageEnglish
Pages (from-to)207-214
Number of pages8
JournalCell and Tissue Research
Volume314
Issue number2
DOIs
StatePublished - Nov 2003

Bibliographical note

Funding Information:
J.-H. Lee and M.-Y. Lee contributed equally to this study. This work was supported by the KOSEF through the Cell Death Disease Research Center of MRC at the Catholic University of Korea (R13-2002-005-01001-0) and the Catholic Medical Center Research Foundation grant made in the program year of 2002

Keywords

  • Bcl-2
  • Bis protein
  • Neuron
  • Rat (Sprague Dawley)
  • Rostral migratory stream
  • Subventricular zone

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