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Molecular cloning, expression and characterization of the human serine/threonine kinase Akt-3

S Masure1, B Haefner, J J Wesselink

  • 1Department of Biotechnology, Janssen Research Foundation, Beerse, Belgium.

Insights

The discovery of human Akt-3, a protein kinase, offers a new target for cancer drugs. Unlike other Akt forms, Akt-3

Area of Science:

  • Molecular Biology
  • Cell Signaling
  • Oncology

Background:

  • Akt (also known as Protein Kinase B or RAC-PK) is a key regulator of cell survival.
  • Akt's role in insulin signaling complicates its use as a cancer drug target.
  • Two human Akt isoforms (Akt-1, Akt-2) are known; a rat Akt-3 isoform has been described.

Purpose of the Study:

  • To identify and characterize the human isoform of Akt-3.
  • To investigate the potential of Akt-3 as a cancer therapeutic target independent of insulin signaling.

Main Methods:

  • Gene localization to chromosome 1q43-44.
  • Protein sequence analysis and comparison with Akt-1 and Akt-2.
  • Site-directed mutagenesis to study phosphorylation sites (Ser472, Thr305) and kinase activity.
  • Inhibition assays using kinase inhibitors (staurosporine, Ro 31-8220).
  • Expression analysis in various human tissues.

Main Results:

  • Human Akt-3 identified, sharing structural features with other Akt isoforms.
  • Human Akt-3 possesses a C-terminal tail with phosphorylation sites (Ser472, Thr305) crucial for activation.
  • Akt-3 activity is inhibited by staurosporine and Ro 31-8220.
  • Akt-3 is widely expressed but not significantly in liver or skeletal muscle.

Conclusions:

  • Human Akt-3 is a distinct isoform with unique activation mechanisms.
  • Akt-3's expression pattern suggests its primary role is not in insulin signaling.
  • Akt-3 represents a promising therapeutic target for novel cancer chemotherapeutics that avoid insulin signaling interference.

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