Characterization of a nuclear deformed epidermal autoregulatory factor-1 (DEAF-1)-related (NUDR) transcriptional

J I Huggenvik1, R J Michelson, M W Collard

  • 1Department of Physiology, Southern Illinois University School of Medicine, Carbondale 62901-6523, USA. jhuggenvik@som.siu.edu

Insights

Nuclear DEAF-1-related (NUDR) protein, a novel transcription factor, regulates gene expression. NUDR

Area of Science:

  • Molecular Biology
  • Genetics
  • Developmental Biology

Background:

  • Nuclear regulatory factors play crucial roles in gene expression.
  • Retinoic acid response elements (RAREs) are key regulatory sequences.
  • Drosophila Deformed epidermal autoregulatory factor-1 (DEAF-1) is a cofactor in embryonic gene regulation.

Purpose of the Study:

  • Identify and characterize a novel nuclear regulatory factor.
  • Investigate the function and regulatory mechanisms of NUDR.
  • Determine NUDR's role in gene transcription during development and differentiation.

Main Methods:

  • cDNA cloning and sequencing
  • Protein expression and purification
  • Immunocytochemistry and fluorescent protein tagging
  • Site-directed mutagenesis
  • Transient transfection assays
  • Electrophoretic mobility shift assays (EMSAs)
  • DNase I protection assays

Main Results:

  • Identified and cloned cDNAs encoding the 59-kDa NUDR protein.
  • NUDR exhibits sequence similarity to DEAF-1 and contains functional domains.
  • NUDR protein is localized to the nucleus and is essential for transcriptional activation.
  • NUDR activates transcription of the proenkephalin promoter, particularly when a RARE is present.
  • NUDR binds to a specific DNA motif (TTCGGGNNTTTCCGG) but may activate transcription independently of direct promoter binding.

Conclusions:

  • NUDR is a novel nuclear regulatory factor with domains similar to SP100 and AML1/MTG8.
  • NUDR's nuclear localization is critical for its transcriptional activation function.
  • NUDR may function as a cofactor, potentially interacting with other factors to regulate gene transcription.
  • NUDR's role in regulating genes during fetal development and testicular cell differentiation is suggested.

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