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Two distinct classes of CCAAT box elements that bind nuclear factor-Y/alpha-actinin-4: potential role in human CYP1A1
Mark T Poch1, Loola Al-Kassim, Steven M Smolinski
1Birth Defects Research Center, Department of Pediatrics, Medical College of Wisconsin, Milwaukee 53226, USA.
Abstract:
A negative regulatory element (NRE1; position -794 to -774) was previously identified that mediates the downregulation of CYP1A1, including partial suppression of Ah receptor-dependent induction. The CCAAT-box binding protein, nuclear factor-Y (NF-Y), is a component of one of two protein complexes that specifically and competitively bind the CYP1A1 NRE1 in vitro with nearly equal affinity. The second complex involves an unidentified protein(s) called the negative regulatory factor (NRF). Competitive electrophoretic mobility shift assays (EMSA) revealed two distinct classes of NF-Y-binding CCAAT-box elements distinguished by their ability or inability to also bind NRF. To further explore the identity of NRE1-binding proteins, a purification scheme was developed culminating in NRE1-dependent DNA affinity chromatography and sequence analysis. An approximate 106-kDa protein was purified and shown to be alpha-actinin-4 (ACTN4), one of two ubiquitously expressed non-muscle actinins. Electrophoretic mobility shift assays combined with Western blot analysis and co-immunoprecipitation experiments suggested that ACTN4 is associated with the NF-Y complex, but not NRF. Attempts to demonstrate a role for NF-Y/ACTN4 in regulating CYP1A1 expression were unsuccessful, likely due to an inability to significantly change nuclear ACTN4 levels with phosphatidylinositol 3'-kinase agonists and antagonists. However, given ACTN4's known functions and the suspected functions of actin and actin-related proteins in chromatin remodeling and other nuclear events, ACTN4 may assist NF-Y in recruiting chromatin-remodeling complexes or may direct NF-Y/ACTN4-targeted genes to the nuclear matrix and active transcriptional complexes.
Insights
Researchers identified alpha-actinin-4 (ACTN4) as a protein that binds to a regulatory element (NRE1) involved in CYP1A1 gene expression. While ACTN4 associates with nuclear factor-Y (NF-Y), its direct role in regulating CYP1A1 remains unclear.
Area of Science:
- Molecular Biology
- Gene Regulation
- Protein-DNA Interactions
Background:
- A negative regulatory element (NRE1) downregulates CYP1A1 gene expression.
- Nuclear factor-Y (NF-Y) and an unknown protein (NRF) bind to NRE1.
- NF-Y binds to two distinct CCAAT-box element classes, differing in NRF binding.
Purpose of the Study:
- To identify proteins binding to the CYP1A1 NRE1.
- To investigate the role of identified proteins in gene regulation.
Main Methods:
- DNA affinity chromatography and sequence analysis to purify NRE1-binding proteins.
- Electrophoretic mobility shift assays (EMSA) to study protein-DNA interactions.
- Western blot and co-immunoprecipitation to confirm protein associations.
Main Results:
- Alpha-actinin-4 (ACTN4), an approximately 106-kDa protein, was purified and identified.
- ACTN4 was found to associate with NF-Y, but not NRF.
- Attempts to demonstrate ACTN4's role in regulating CYP1A1 expression were unsuccessful.
Conclusions:
- ACTN4 is a novel NRE1-binding protein associated with NF-Y.
- ACTN4 may contribute to chromatin remodeling or nuclear organization.
- Further research is needed to elucidate ACTN4's precise function in gene regulation.
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