SP1-mediated downregulation of ADAMTS3 gene expression in osteosarcoma models

A Tuğşen Aydemir1, Meltem Alper2, Feray Kockar3

  • 1Balıkesir University, Faculty of Science and Literature, Department of Biology, 10145 Balikesir, Turkey.

Gene
|March 9, 2018
PubMed

Insights

The study reveals SP1 downregulates ADAMTS3, a key collagen maturation enzyme. SP1 also impacts collagen gene expression, affecting bone and cartilage health.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Genetics

Background:

  • ADAMTS3 (a disintegrin and metalloproteinase with thrombospondin motifs 3) is crucial for procollagen maturation, particularly type II collagen, vital for bone and cartilage.
  • Disruptions in collagen processing can lead to various connective tissue disorders.
  • The transcriptional regulation of ADAMTS3 remains largely unelucidated.

Purpose of the Study:

  • To clone and functionally characterize the promoter region of the ADAMTS3 gene.
  • To investigate the role of SP1 transcription factor in regulating ADAMTS3 expression.
  • To examine the impact of SP1 on the expression of collagen types I, II, and III.

Main Methods:

  • Cloning and functional analysis of the ADAMTS3 promoter region.
  • Transient transfection assays in Saos-2 and MG63 osteosarcoma cell lines.
  • In silico promoter analysis, Electrophoretic Mobility Shift Assays (EMSA).

Main Results:

  • A 171 bp fragment of the ADAMTS3 promoter was sufficient for gene activation.
  • ADAMTS3 promoter is TATA-less, containing SP1/GC box motifs and a CpG island.
  • SP1 significantly downregulated ADAMTS3 transcriptional activity, mRNA, and protein levels.
  • SP1 increased type II and III collagen expression but decreased type I collagen in Saos-2 cells.
  • SP1 decreased mRNA levels for all collagen types in MG63 cells and type II collagen protein levels.

Conclusions:

  • This study provides the first insights into SP1-mediated transcriptional regulation of ADAMTS3.
  • SP1 influences the expression of ADAMTS3 and various collagen types in osteosarcoma cell lines.
  • Findings contribute to understanding collagen gene regulation in bone and cartilage-related disorders.

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