Thrombosis Research
Volume 126, Issue 2 , Pages 130-136, August 2010

A potential regulatory role for mRNA secondary structures within the prothrombin 3'UTR

  • Xingge Liu

      Affiliations

    • Current address: Center for Cellular and Molecular Therapeutics, The Children's Hospital of Philadelphia, 34th Street and Civic Center Boulevard, Philadelphia, PA 19104.
  • ,
  • Yong Jiang

      Affiliations

    • Current address: GlaxoSmithKline, 1250 South Collegeville Road, Collegeville, PA 19426.
  • ,
  • J. Eric Russell

      Affiliations

    • Corresponding Author InformationCorresponding author. Abramson Research Building, Room 310D, The Children's Hospital of Philadelphia, 34th Street and Civic Center Boulevard, Philadelphia, PA 19104. Tel.: +1 215 590 3880; fax: +1 215 590 2320.

Departments of Medicine (Hematology-Oncology) and Pediatrics (Hematology), University of Pennsylvania School of Medicine and The Children's Hospital of Philadelphia, Philadelphia PA

Received 10 March 2010; received in revised form 10 March 2010; accepted 20 April 2010. published online 31 May 2010.

Abstract 

The distal 3'UTR of prothrombin mRNA exhibits significant sequence heterogeneity reflecting an inexact 3′-cleavage/polyadenylation reaction. This same region encompasses a single-nucleotide polymorphism that enhances the normal post-transcriptional processing of nascent prothrombin transcripts. Both observations indicate the importance of 3'UTR structures to physiologically relevant properties of prothrombin mRNA. Using a HepG2-based model system, we mapped both the primary structures of reporter mRNAs containing the prothrombin 3'UTR, as well as the secondary structures of common, informative 3'UTR processing variants. A chromatographic method was subsequently employed to assess the effects of structural heterogeneities on the binding of candidate trans-acting regulatory factors. We observed that prothrombin 3'UTRs are constitutively polyadenylated at seven or more positions, and can fold into at least two distinct stem-loop conformations. These alternate structures expose/sequester a consensus binding site for hnRNP-I/PTB-1, a trans-acting factor with post-transcriptional regulatory properties. hnRNP-I/PTB-1 exhibits different affinities for the alternate 3'UTR secondary structures in vitro, predicting a corresponding regulatory role in vivo. These analyses demonstrate a critical link between the structure of the prothrombin 3'UTR and its normal function, providing a basis for further investigations into the molecular pathophysiology of naturally occurring polymorphisms within this region.

Abbreviations: F.II, prothrombin, PTB-1, polypyrimidine tract binding protein 1

Keywords: Prothrombin, mRNA, 3'UTR, mRNA processing

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PII: S0049-3848(10)00248-3

doi:10.1016/j.thromres.2010.04.010

Thrombosis Research
Volume 126, Issue 2 , Pages 130-136, August 2010