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Ecto-ATPases: identities and functions
1Department of Biophysics, University of Aarhus, Denmark.
International Review of Cytology
|January 1, 1995
Summary
Ecto-ATPases are enzymes that hydrolyze extracellular nucleoside tri- and diphosphates. The T-tubule Mg2+-ATPase, a type of ecto-ATPase, plays roles in signal transduction termination and adenosine recycling.
Area of Science:
- Biochemistry
- Cell Biology
Background:
- Ecto-ATPases are enzymes found in eukaryotic cells that hydrolyze extracellular nucleoside tri- and diphosphates.
- They exhibit E-type ATPase activity, characterized by dependence on Ca2+ or Mg2+ and insensitivity to other ATPase inhibitors.
- Ecto-ATPases are glycoproteins with high turnover numbers, posing challenges in isolation and purification.
Purpose of the Study:
- To characterize the T-tubule Mg2+-ATPase as a member of the ecto-ATPase family.
- To elucidate the functions of ecto-ATPases, including signal transduction termination and adenosine recycling.
- To explore potential identities of ecto-ATPases with cell adhesion molecules and bile acid transport proteins.
Main Methods:
- Enzyme isolation and purification of T-tubule Mg2+-ATPase.
- Biochemical assays to determine ATPase activity and substrate specificity.
- Immunological studies and cDNA clone analysis to investigate protein identity.
Main Results:
- The T-tubule Mg2+-ATPase was confirmed to belong to the ecto-ATPase group.
- Ecto-ATPases were shown to hydrolyze extracellular nucleoside tri- and diphosphates but not monophosphates.
- Potential roles in signal transduction and adenosine recycling were supported, with suggested links to cell adhesion and bile acid transport.
Conclusions:
- Ecto-ATPases, including the T-tubule Mg2+-ATPase, are crucial for regulating extracellular nucleotide levels.
- These enzymes play significant roles in cellular signaling and metabolic processes.
- Further research is needed to fully understand the diverse functions and molecular identities of ecto-ATPases.