Npas4, a novel helix-loop-helix PAS domain protein, is regulated in response to cerebral ischemia

Research output: Contribution to journalJournal articleResearchpeer-review

  • Mehrdad Shamloo
  • Liza Soriano
  • David von Schack
  • Rickhag, Karl Mattias
  • Daniel J Chin
  • Mirella Gonzalez-Zulueta
  • Gunilla Gido
  • Roman Urfer
  • Tadeusz Wieloch
  • Karoly Nikolich

Basic helix-loop-helix PAS domain proteins form a growing family of transcription factors. These proteins are involved in the process of adaptation to cellular stresses and environmental factors such as a change in oxygen concentration. We describe the identification and characterization of a recently cloned PAS domain protein termed Npas4 in ischemic rat brain. Using gene expression profiling following middle cerebral artery occlusion, we showed that the Npas4 mRNA is differentially expressed in ischemic tissue. The full-length gene was cloned from rat brain and its spatial and temporal expression characterized with in situ hybridization and Northern blotting. The Npas4 mRNA is specifically expressed in the brain and is highly up-regulated in ischemic tissues following both focal and global cerebral ischemic insults. Immunohistochemistry revealed a strong expression in the limbic system and thalamus, as well as in layers 3 and 5 in the cortex of the unchallenged brain. When overexpressed in HEK 293 cells, Npas4 appears as a protein of approximately 100 kDa. In brain samples, however, in addition to the 100 kDa band a specific 200 kDa immunoreactive band was also detected. Ischemic challenge lead to a decrease in the 200 kDa form and a simultaneous increase in the 100 kDa immunoreactivity. This could indicate a novel regulatory mechanism for activation and/or deactivation of this protein in response to ischemic brain injury.

Original languageEnglish
JournalEuropean Journal of Neuroscience
Volume24
Issue number10
Pages (from-to)2705-20
Number of pages16
ISSN0953-816X
DOIs
Publication statusPublished - Nov 2006

    Research areas

  • Animals, Basic Helix-Loop-Helix Transcription Factors, Blotting, Northern, Blotting, Western, Brain, Cells, Cultured, Embryo, Mammalian, Gene Expression Regulation, Helix-Loop-Helix Motifs, Immunohistochemistry, In Situ Hybridization, Infarction, Middle Cerebral Artery, Male, Nerve Tissue Proteins, Neurons, RNA, Messenger, Rats, Rats, Wistar, Reverse Transcriptase Polymerase Chain Reaction, Subcellular Fractions, Synaptophysin, Time Factors

ID: 132931360