Decreased cyclin-dependent kinase activity promotes thyroid hormone-dependent tail regression in Rana catesbeiana

Rachel C Skirrow1, Caren C Helbing

  • 1Department of Biochemistry and Microbiology, University of Victoria, Victoria, BC, Canada.

Cell and Tissue Research
|January 17, 2007
PubMed

Insights

Thyroid hormone (T3) drives tadpole tail regression. A decrease in cyclin-dependent kinase 2 (Cdk2) activity, not MAPK/ERK, promotes this TH-dependent developmental process.

Area of Science:

  • Developmental Biology
  • Endocrinology
  • Molecular Biology

Background:

  • Thyroid hormone (TH), specifically 3,5,3'-triiodothyronine (T3), regulates crucial cellular processes like proliferation, differentiation, and apoptosis.
  • Phosphorylation's role in T3-mediated cellular outcomes during development is not well understood.
  • Cyclin-dependent kinases (Cdks) and mitogen-activated protein kinases (MAPK/ERK) are implicated in TH signaling.

Purpose of the Study:

  • To investigate the role of Cdks and MAPK/ERK in TH-dependent tadpole tail regression during metamorphosis.
  • To elucidate the specific kinase mechanisms underlying T3-mediated developmental changes.

Main Methods:

  • Studied frog tadpole metamorphosis, focusing on tail regression.
  • Measured Cdk2, Cyclin-A, ERK1, and ERK2 levels and activities in the tail.
  • Utilized in vitro tail tip culture with T3 and specific kinase inhibitors (Cdk2 inhibitor and PD098059 for MAPK).

Main Results:

  • Cdk2 levels and activity increased during metamorphosis growth and decreased during tail regression.
  • Cyclin-A-associated kinase activity showed a similar but delayed decrease.
  • ERK1/ERK2 levels remained constant, with activity decreasing late in tail regression.
  • T3-induced tail regression was accelerated by a Cdk2 inhibitor but unaffected by a MAPK inhibitor.

Conclusions:

  • T3-dependent tail regression in tadpoles does not require MAPK signaling.
  • A decrease in Cdk2 activity is a key factor promoting TH-induced tail regression.
  • This study highlights Cdk2's critical role in postembryonic development regulated by thyroid hormone.

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