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Modulation of tryptophan environment in membrane-bound melittin by negatively charged phospholipids: implications in

A K Ghosh1, R Rukmini, A Chattopadhyay

  • 1Centre for Cellular and Molecular Biology, Hyderabad, India.

Biochemistry
|December 16, 1997
PubMed

Insights

Melittin

Area of Science:

  • Biophysics
  • Membrane Biology
  • Protein-Lipid Interactions

Background:

  • Melittin, a peptide from honey bees, interacts with cell membranes.
  • Membrane surface charge influences melittin's lytic activity.
  • The tryptophan residue in melittin is key to its hemolytic function.

Purpose of the Study:

  • Investigate melittin's interaction with membranes of varying surface charges.
  • Understand how membrane charge affects melittin's tryptophan residue.
  • Elucidate the molecular mechanisms of melittin-induced membrane lysis.

Main Methods:

  • Wavelength-selective fluorescence spectroscopy to probe the tryptophan environment.
  • Fluorescence polarization and near-UV circular dichroism to assess tryptophan organization.
  • Time-resolved fluorescence and parallax method for tryptophan penetration depth analysis.

Main Results:

  • Melittin shows a 5 nm red edge excitation shift (REES) on zwitterionic membranes, reduced to 2-3 nm on anionic membranes.
  • Differences in tryptophan environment and penetration depth observed between zwitterionic and anionic membranes.
  • Negatively charged lipids modulate melittin's interaction and lytic activity.

Conclusions:

  • Membrane surface charge significantly alters melittin's interaction and conformational dynamics.
  • Tryptophan residue's environment and accessibility are critical for melittin's lytic activity.
  • Findings provide molecular insights into how charged lipids inhibit melittin-induced membrane lysis.

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