Abstract

The flagellar calcium-binding protein (FCaBP) of the protozoan Trypanosoma cruzi is targeted to the flagellar membrane where it regulates flagellar function and assembly. As a first step toward understanding the Ca(2+)-induced conformational changes important for membrane-targeting, we report here the x-ray crystal structure of FCaBP in the Ca(2+)-free state determined at 2.2A resolution. The first 17 residues from the N terminus appear unstructured and solvent-exposed. Residues implicated in membrane targeting (Lys-19, Lys-22, and Lys-25) are flanked by an exposed N-terminal helix (residues 26-37), forming a patch of positive charge on the protein surface that may interact electrostatically with flagellar membrane targets. The four EF-hands in FCaBP each adopt a "closed conformation" similar to that seen in Ca(2+)-free calmodulin. The overall fold of FCaBP is closest to that of grancalcin and other members of the penta EF-hand superfamily. Unlike the dimeric penta EF-hand proteins, FCaBP lacks a fifth EF-hand and is monomeric. The unstructured N-terminal region of FCaBP suggests that its covalently attached myristoyl group at the N terminus may be solvent-exposed, in contrast to the highly sequestered myristoyl group seen in recoverin and GCAP1. NMR analysis demonstrates that the myristoyl group attached to FCaBP is indeed solvent-exposed in both the Ca(2+)-free and Ca(2+)-bound states, and myristoylation has no effect on protein structure and folding stability. We propose that exposed acyl groups at the N terminus may anchor FCaBP to the flagellar membrane and that Ca(2+)-induced conformational changes may control its binding to membrane-bound protein targets.

Highlights

  • We propose that exposed acyl groups at the N terminus may anchor Flagellar calcium-binding protein (FCaBP) to the flagellar membrane and that Ca2؉-induced conformational changes may control its binding to membrane-bound protein targets

  • Flagellar calcium-binding protein (FCaBP)3 is a 24-kDa highly immunogenic protein found in the flagellum of the protozoan parasite Trypanosoma cruzi [1]

  • Calcium is required for stable flagellar localization as well, as FCaBP can be washed out of detergent-permeabilized trypanosomes if calcium chelators are included in the wash solutions

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Summary

EXPERIMENTAL PROCEDURES

Protein Expression and Purification—To prepare recombinant unmyristoylated FCaBP FCaBP was characterized in T. brucei [15] These Ca2ϩ-binding proteins all eluted with a 200-ml linear KCl gradient to a final concentralocalize to the flagellum, a unique organelle that has many func- tion of 250 mM KCl. Peak fractions were pooled, and purified tions, including motility, chemotaxis, and cell signaling. The axoneme, paraflagellar Recombinant myristoylated FCaBP was generated by co-exrod, and flagelloplasm are encased by the flagellar membrane. FCaBP as a first step toward understanding the Ca2ϩ-induced conformational changes that control membrane targeting This is only the second atomic resolution structure of a Ca2ϩ-acyl switch protein in the Ca2ϩ-free state.

Refinement statistics table
RESULTS AND DISCUSSION
Similar NMR experiments were performed on samples of
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