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Purification of the 300K intermediate filament-associated protein and its in vitro recombination with intermediate

The Journal of Cell Biology
|September 1, 1985
PubMed

Insights

The intermediate filament-associated protein IFAP-300K was purified and characterized. This protein interacts with intermediate filaments (IFs) and influences their structure but not polymerization kinetics.

Area of Science:

  • Cell Biology
  • Biochemistry
  • Structural Biology

Background:

  • Intermediate filaments (IFs) are crucial cytoskeletal components.
  • IFAP-300K is a 300,000-mol-wt protein associated with IFs in baby hamster kidney (BHK-21) cells.
  • Previous identification was based on monoclonal antibody recognition.

Purpose of the Study:

  • To purify and biochemically characterize IFAP-300K.
  • To investigate the structural role and interactions of IFAP-300K with intermediate filaments.
  • To determine the effect of IFAP-300K on IF polymerization.

Main Methods:

  • Purification of IFAP-300K from BHK-21 cell cytoskeletal preparations using gel filtration and ion-exchange chromatography.
  • Immunological confirmation (monoclonal antibody, peptide mapping) and characterization (2D PAGE, isoelectric focusing, amino acid analysis).
  • Ultrastructural analysis (immunogold labeling) and in vitro recombination studies with purified vimentin IFs.

Main Results:

  • IFAP-300K was purified as a homogeneous 300,000-mol-wt protein.
  • Its physicochemical properties (pI, amino acid composition) were similar to vimentin/desmin but distinct.
  • Ultrastructurally, IFAP-300K forms particles that aggregate in physiological buffers.
  • In vitro, IFAP-300K localized at contact points and bridges between vimentin IFs, influencing their arrangement but not polymerization rate.

Conclusions:

  • IFAP-300K is a distinct protein that associates with intermediate filaments.
  • It plays a role in organizing and cross-linking intermediate filaments.
  • IFAP-300K does not appear to directly regulate the polymerization kinetics of intermediate filaments.

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