Functional characteristics and research trends of PDE11A in human diseases (Review)

Gyeyeong Kong1, Hyunji Lee1, Thuy-Trang T Vo1

  • 1Department of Pharmacology, Metabolic Syndrome and Cell Signaling Laboratory, Institute for Cancer Research, College of Medicine, Chungnam National University, Daejeon 35015, Republic of Korea.

Insights

Phosphodiesterases (PDEs) regulate cyclic nucleotide signaling. PDE11A, expressed in the prostate and other tissues, is linked to adrenocortical tumors and glioblastoma, impacting disease progression.

Area of Science:

  • Molecular Biology
  • Cellular Signaling
  • Biochemistry

Background:

  • Cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP) are crucial secondary messengers regulating cellular processes.
  • G protein-coupled receptor signaling pathways influence cell metabolism and regulation.
  • Aberrant cAMP signaling is implicated in tumorigenesis, with mutations increasing cAMP levels in cancer cells.

Purpose of the Study:

  • To review the expression patterns of Phosphodiesterase 11A (PDE11A).
  • To explore the structural variations and disease associations of PDE11A.
  • To highlight the role of PDE11A in specific pathologies.

Main Methods:

  • Literature review of studies on PDE11A expression and function.
  • Analysis of reported PDE11A mutations and their clinical relevance.
  • Summary of research linking PDE11A to various diseases.

Main Results:

  • PDE11A exhibits distinct tissue expression, with the highest levels in the prostate.
  • Four splice variants of PDE11A exist, differing in tissue distribution and regulatory regions.
  • PDE11A mutations are associated with Cushing syndrome and adrenocortical tumors.
  • Increased PDE11A expression correlates with glioblastoma proliferation and poorer prognosis.

Conclusions:

  • PDE11A plays a significant role in cellular signaling and has implications in endocrine and neurological disorders.
  • Understanding PDE11A structure and expression is vital for disease management.
  • PDE11A represents a potential therapeutic target for associated diseases.

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