Abstract

A protein which cross-links actin filaments in a nucleotide-sensitive manner has been purified to homogeneity from Acanthamoeba castellanii. This protein, GF-210, is a slightly asymmetric molecule composed of six subunits, each with an apparent mass of 35,000 Da. As determined by the method of falling ball vicometry, GF-210 was shown to cross-link actin filaments at hexamer:actin molar ratios of 1:500, with gelation occurring at molar ratios of 1:300 and higher. Actin gels did not form in the presence of 10 microM ATP, and filament cross-linking was completely inhibited by 100 microM ATP. Although ATP was the most effective inhibitor of actin filament cross-linking, other phospho-compounds including ADP, GTP, sodium phosphate, and sodium pyrophosphate prevented gelation at concentrations lower than 1.5 mM. In contrast, 50 mM KCl was required to inhibit the formation of actin networks. Direct binding studies showed that GF-210 binds to F-actin with a KD of 1.2 microM in the absence of ATP but with a KD of 72.8 microM in the presence of 2 mM ATP. This weakening of the interaction between F-actin and GF-210 may explain the inhibition of GF-210-induced actin cross-linking by nucleotides and other phospho-compounds.

Highlights

  • Trations lower than 1.5 mM In contrast, 50 mM KC1 Analytical ultracentrifugation was carried out in a BeckmanModel was required to inhibit the formation of actinnetworks

  • Direct binding studies showed that GF-210 binds to F-actin witha KOof 1.2 PM in the absence of ATP but with a KOof 72.8 PM in the presence of 2 mM ATP

  • This weakening of the interaction between Factin and GF-210 may explain the inhibition of GF210-inducedactincross-linking by nucleotides and

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Summary

THEJOURNALOF BIOLOGICAL CHEMISTRY

A protein which cross-links actin filaments in a nu- when examinedby electron microscopy, appeared to be a long cleotide-sensitive manner has been purified to homogeneity from Acanthamoeba castellanii. ATP was the most effective inhibitor of actin filament cross-linking, other phospho-comrod-shaped protein of approximately 100 nm in length (3). In this paper,we describe the purification of a new gelation factor, GF-210,composed of six subunits, each of molecular weight 35,000, which cross-links actin filaments in an ATP-sensitive manner. Direct binding studies showed that GF-210 binds to F-actin witha KOof 1.2 PM in the absence of ATP but with a KOof 72.8 PM in the presence of 2 mM ATP This weakening of the interaction between Factin and GF-210 may explain the inhibition of GF210-inducedactincross-linking by nucleotides and.

RESULTS
Subunit molecular weight'
Gelation Protein
LL v
DISCUSSION
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