Transcript shortening via alternative polyadenylation promotes gene expression during fracture healing

Deepak Kumar Khajuria1,2, Irena Nowak1,2, Ming Leung3

  • 1Department of Orthopaedics and Rehabilitation, The Pennsylvania State University College of Medicine, Hershey, PA, 17033, USA.

Bone Research
|January 3, 2023
PubMed

Insights

Alternative polyadenylation (APA) globally shortens 3' untranslated regions during bone healing. This process enhances collagen gene expression by removing microRNA binding sites, promoting fracture repair.

Area of Science:

  • Molecular Biology
  • Genetics
  • Biochemistry

Background:

  • Messenger RNA (mRNA) 3' end processing, including cleavage and polyadenylation, is essential for eukaryotic gene expression.
  • Alternative polyadenylation (APA) generates mRNA isoforms with identical coding regions but different 3' untranslated regions (UTRs), impacting mRNA metabolism and gene expression.
  • Endochondral ossification is critical for bone healing, but the role of APA in this process remains unexplored.

Purpose of the Study:

  • To investigate the occurrence and impact of APA during endochondral ossification and fracture healing.
  • To elucidate the mechanisms by which APA regulates gene expression in the context of bone repair.

Main Methods:

  • Analysis of APA patterns in fracture callus models.
  • Quantification of transcript abundance and 3'UTR lengths.
  • Mechanistic studies involving microRNA regulation and collagen gene expression.

Main Results:

  • Widespread APA was observed, affecting multiple pathways involved in bone healing.
  • Endochondral ossification is characterized by global 3'UTR shortening, with increased abundance of shorter mRNA isoforms.
  • APA enhances the expression of collagen type I alpha 1 (Col1a1) and Col1a2 by shortening their 3'UTRs, thereby removing miR-29a-3p binding sites and preventing transcript degradation.

Conclusions:

  • APA plays a crucial role in regulating the 3'UTR landscape during fracture healing.
  • Global 3'UTR shortening via APA promotes gene expression essential for endochondral bone formation.
  • The study reveals a novel regulatory mechanism where APA modulates collagen gene expression through microRNA interaction during bone repair.

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