Alternative polyadenylation and nonsense-mediated decay coordinately regulate the human HFE mRNA levels

Rute Martins1, Daniela Proença, Bruno Silva

  • 1Departamento de Genética, Instituto Nacional de Saúde Dr Ricardo Jorge, Lisboa, Portugal.

Plos One
|April 25, 2012
PubMed

Insights

Nonsense-mediated decay (NMD) targets physiological HFE mRNA, regulating its expression. Alternative polyadenylation also controls HFE mRNA levels, coordinating with NMD to adjust protein output based on cellular needs.

Area of Science:

  • Molecular Biology
  • Genetics
  • Cell Biology

Background:

  • Nonsense-mediated decay (NMD) is a crucial mRNA surveillance pathway.
  • While NMD degrades faulty mRNAs, it also regulates physiological transcripts.
  • The human HFE gene, linked to hereditary hemochromatosis, has features suggesting NMD sensitivity.

Purpose of the Study:

  • To investigate whether physiological HFE mRNA is a target of NMD.
  • To explore the role of alternative polyadenylation in HFE mRNA regulation.
  • To understand how NMD and polyadenylation coordinate HFE expression.

Main Methods:

  • UPF1 depletion and cycloheximide treatment in HeLa and HepG2 cells to assess HFE transcript levels.
  • Transient expression of the HFE gene in HeLa cells.
  • 3'-RACE analysis in human tissues to identify HFE mRNA polyadenylation sites.

Main Results:

  • HFE transcripts were upregulated in UPF1-depleted or cycloheximide-treated cells, confirming HFE mRNA as an NMD target.
  • Four alternative polyadenylation sites were identified, including novel sites at exon six (NMD-resistant) and exon seven.
  • HFE mRNA isoforms from exon seven polyadenylation were more abundant in HepG2 cells than HeLa cells.

Conclusions:

  • NMD plays a significant role in controlling physiological HFE mRNA levels.
  • Alternative polyadenylation, particularly at exon seven, influences HFE mRNA stability and abundance.
  • NMD and alternative polyadenylation likely act together to fine-tune HFE protein expression according to cellular demands.

Related Concept Videos

Nonsense-mediated mRNA Decay02:27

Nonsense-mediated mRNA Decay

The Upf proteins that carry out nonsense-mediated decay (NMD) are found in all eukaryotic organisms, including humans. Each protein has an individual role, but they need to work in collaboration. Upf1 is an ATP-dependent RNA helicase that unwinds the RNA helix. Because Upf1 can unwind any RNA, Upf2 and Upf3 are required to help Upf1 discriminate between nonsense and normal mRNAs.
Usually, Upf3 binds to an Exon Junction Complex (EJC) at mRNA splice sites. If a ribosome fully translates the mRNA,...
Nonsense-mediated mRNA Decay02:27

Nonsense-mediated mRNA Decay

The Upf proteins that carry out nonsense-mediated decay (NMD) are found in all eukaryotic organisms, including humans. Each protein has an individual role, but they need to work in collaboration. Upf1 is an ATP-dependent RNA helicase that unwinds the RNA helix. Because Upf1 can unwind any RNA, Upf2 and Upf3 are required to help Upf1 discriminate between nonsense and normal mRNAs.
Usually, Upf3 binds to an Exon Junction Complex (EJC) at mRNA splice sites. If a ribosome fully translates the mRNA,...
Nuclear Export of mRNA02:31

Nuclear Export of mRNA

Before mRNAs are exported to the cytoplasm, it is crucial to check each mRNA for structural and functional integrity. Eukaryotic cells use several different mechanisms, collectively known as mRNA surveillance, to look for irregularities in mRNAs. Irregular or aberrant mRNA are rapidly degraded by various enzymes. If a defective mRNA escapes the surveillance, it would be translated into a protein which would either be non-functional or not function properly. One of the primary irregularities in...
Nuclear Export of mRNA02:31

Nuclear Export of mRNA

Before mRNAs are exported to the cytoplasm, it is crucial to check each mRNA for structural and functional integrity. Eukaryotic cells use several different mechanisms, collectively known as mRNA surveillance, to look for irregularities in mRNAs. Irregular or aberrant mRNA are rapidly degraded by various enzymes. If a defective mRNA escapes the surveillance, it would be translated into a protein which would either be non-functional or not function properly. One of the primary irregularities in...