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August 1, 1981Journal of Biological Chemistry51 citationsOpen Access

Isolation and characterization of covalently cross-linked actin dimer.

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SMStephen C. MockrinEKEdward D. Korn

Key Result

Covalently cross-linked actin dimer polymerized to filaments indistinguishable from native F-actin and had an ATPase activity 7 times greater than native G-actin in 0.5 mM MgCl2.

Key Points

  • Isolate covalently cross-linked actin dimers from rabbit skeletal muscle and evaluate their spectroscopic, polymerization, and nucleotide-binding properties.
  • Reacted rabbit skeletal muscle F-actin with phenylenebismaleimide to synthesize and purify covalently cross-linked actin dimers.
  • Evaluated filament formation via electron microscopy, myosin subfragment-1 Mg2+-ATPase activation, and critical concentration assays at 0.5 mM and 2.0 mM MgCl2.
  • Quantified nucleotide binding stoichiometry, ATP and ADP exchange rates, and basal as well as cytochalasin D-stimulated ATPase activity.
  • Cross-linked actin dimers polymerized into filaments structurally identical to native F-actin under electron microscopy, with critical polymerization concentrations of 2 to 4 µM in 0.5 mM MgCl2 and 1 to 2 µM in 2.0 mM MgCl2.
  • Each dimer bound 2 mol of nucleotide per mole of dimer, displaying asymmetric exchange where one site exchanged ATP with a t 1/2 of 55 min and ADP with a t 1/2 of 5 h, while the second site exchanged far more slowly.
  • The dimer exhibited an ATPase activity in 0.5 mM MgCl2 that was 7-fold higher than that of native G-actin and was further stimulated by cytochalasin D.

Structured PICO

P
Population
Rabbit skeletal muscle F-actin reacted with phenylenebismaleimide
I
Intervention
Isolation and characterization of covalently cross-linked actin dimer
C
Comparator
Native F-actin and native G-actin
O
Outcome
Biochemical and structural properties (UV spectrum, polymerization, ATPase activity, nucleotide exchange)surrogate

Covalently cross-linked actin dimer shares structural and functional properties with native F-actin and may serve as a model for the ends of native F-actin.

Abstract

Covalently cross-linked actin dimer was isolated from rabbit skeletal muscle F-actin reacted with phenylenebismaleimide (Knight, P., and Offer, G. (1978) Biochem. J. 175, 1023-1032). The UV spectrum of the purified cross-linked actin dimer, in a nonpolymerizing buffer, was very similar to that of native F-actin and not to the spectrum of G-actin. Cross-linked actin dimer polymerized to filaments that were indistinguishable in the electron microscope from F-actin made from native G-actin and that were similar to native F-actin in their ability to activate the Mg2+-ATPase of myosin subfragment-1. The critical concentrations of polymerization of cross-linked actin dimer in 0.5 mM and 2.0 mM MgCl2, 2 to 4 microM, and 1 to 2 microM, respectively, were similar to the values for native G-actin. Cross-linked actin dimer contained 2 mol of bound nucleotide/mol of dimer. One bound nucleotide exchanged with ATP in solution with a t 1/2 of 55 min and with ADP with a t 1/2 of 5 h. The second bound nucleotide exchanged much more slowly. The more rapidly exchangeable site contained 10 to 15% bound ADP.Pi and 85 to 90% bound ATP while the second site contained much less, if any, bound ADP.Pi. Cross-linked actin dimer had an ATPase activity in 0.5 mM MgCl2 that was 7 times greater than the ATPase activity of native G-actin and that was also stimulated by cytochalasin D. These data are discussed in relation to the possible role of ATP in actin polymerization and function with the speculation that the cross-linked actin dimer may serve simultaneously as a useful model for each of the two different ends of native F-actin.

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Cite This Study

Mockrin et al. (1981) studied this question. Covalently cross-linked actin dimer vs. Native G-actin and F-actin was evaluated on Biochemical and structural properties (UV spectrum, polymerization, ATPase activity). Covalently cross-linked actin dimer polymerized to filaments indistinguishable from native F-actin and had an ATPase activity 7 times greater than native G-actin in 0.5 mM MgCl2.

synapsesocial.com/papers/6a0cd48b3239dcc1e46264e5https://doi.org/10.1016/s0021-9258(18)43413-8
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