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The carboxyl-terminal domain of kinesin heavy chain is important for membrane binding

D A Skoufias1, D G Cole, K P Wedaman

  • 1Section of Molecular and Cellular Biology, University of California, Davis 95616.

Insights

Sea urchin kinesin binds to egg membranes, with its heavy chain

Area of Science:

  • Cell Biology
  • Molecular Motors
  • Cytoskeletal Dynamics

Background:

  • Kinesin is a microtubule-based motor protein.
  • Sea urchin kinesin is implicated in organelle transport.
  • Its role in membrane binding was previously unclear.

Purpose of the Study:

  • To investigate the mechanism of sea urchin kinesin binding to cellular membranes.
  • To determine the role of kinesin light chains in membrane association.
  • To identify the specific domain of kinesin heavy chain responsible for membrane attachment.

Main Methods:

  • Binding assays using isolated microsomal membranes and purified sea urchin kinesin.
  • Experiments with kinesin lacking light chains.
  • Characterization of membrane binding by bacterially expressed kinesin heavy chain fragments (stalk-tail and stalk).

Main Results:

  • Sea urchin kinesin binds to microsomal membranes in a concentration-dependent and saturable manner.
  • Kinesin light chains are not essential for membrane binding.
  • The carboxyl-terminal domain (residues 858-1031) of the kinesin heavy chain mediates membrane binding and competes with native kinesin.

Conclusions:

  • The carboxyl-terminal domain of sea urchin kinesin heavy chain is responsible for attaching the motor to membranous cargo.
  • This binding mechanism is relevant in both mitotic and interphase sea urchin cells.
  • Kinesin's interaction with membranes is crucial for intracellular transport processes.

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