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December 1, 1998Biochemistry44 citations

Intrastrand Cross-Linked Actin between Gln-41 and Cys-374. I. Mapping of Sites Cross-Linked in F-actin by N-(4-azido-2-nitrophenyl) Putrescine

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GHGyörgy HegyiMMMarianna MákEKEldar Kim

Key Result

Cross-linking of F-actin with N-(4-azido-2-nitrophenyl)-putrescine occurs between Gln-41 and Cys-374 on adjacent monomers of the same strand, consistent with structural models of F-actin.

Key Points

  • Map specific intermolecular contact sites and spatial distances between adjacent actin subunits within F-actin filaments using a novel photo-cross-linking probe.
  • Synthesized N-(4-azido-2-nitrophenyl) putrescine (ANP) and conjugated it to Gln-41 of rabbit skeletal muscle G-actin using bacterial transglutaminase.
  • Polymerized labeled G-actin into F-actin, induced intermolecular cross-linking with UV light, and performed complete as well as lysine-succinylated limited tryptic digests.
  • Analyzed cross-linked peptide products using N-terminal sequencing, mass spectrometry, and competitive Cys-374 fluorescent labeling.
  • ANP incorporated at up to 1.0 mol per mole of G-actin, attaching selectively to Gln-41 (≥90%) and Gln-59 (~8%).
  • UV irradiation successfully formed intermolecular cross-links exclusively between Gln-41 of one monomer and Cys-374 of an adjacent monomer.
  • The dynamic cross-linker span established an intermolecular distance constraint of 11.1 to 12.5 Å between Gln-41 and Cys-374, consistent with established long-pitch helix models of F-actin.

Structured PICO

P
Population
Rabbit skeletal muscle actin
I
Intervention
N-(4-azido-2-nitrophenyl)-putrescine (ANP) cross-linking
O
Outcome
Mapping of cross-linked sites in F-actin

The study maps the cross-linking sites of F-actin by ANP to Gln-41 and Cys-374, supporting existing structural models of F-actin.

Abstract

A new heterobifunctional photo-cross-linking reagent, N-(4-azido-2-nitrophenyl)-putrescine (ANP), was synthesized and covalently bound to Gln-41 of rabbit skeletal muscle actin by a bacterial transglutaminase-mediated reaction. Up to 1.0 mol of the reagent was incorporated per mole of G-actin; at least 90% of it was bound to Gln-41 while a minor fraction (about 8%) was attached to Gln-59. The labeled G-actin was polymerized, and the resulting F-actin was intermolecularly cross-linked by irradiation with UV light. The labeled and cross-linked peptides were isolated from either a complete or limited tryptic digest of cross-linked actin. In the limited digest the tryptic cleavage was restricted to arginine by succinylation of the lysyl residues. N-terminal sequencing and mass spectrometry indicated that the cross-linked peptides contained residues 40-50 (or 40-62 in the arginine limited digest) and residues 373-375, and that the actual cross-linking took place between Gln-41 and Cys-374. This latter finding was also supported by the inhibition of Cys-374 labeling with a fluorescent probe in the cross-linked actin. The dynamic length of ANP, between 11.1 and 12.5 A, constrains to that range the distance between the gamma-carboxyl group of Gln-41 in one monomer and the sulfur atom of Cys-374 in an adjacent monomer. This is consistent with the distances between these two residues on adjacent monomers of the same strand in the long-pitch helix in the structural models of F-actin Holmes, K. C., Popp, D., Gebhard, W., and Kabsch, W. (1990) Nature 347, 44-49 and Lorenz, M., Popp, D., and Holmes, K. C. (1993) J. Mol. Biol. 234, 826-836. The effect of cross-linking on the function of actin is described in the companion papers.

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Cite This Study

Hegyi et al. (1998) studied this question. N-(4-azido-2-nitrophenyl)-putrescine (ANP) was evaluated on Mapping of cross-linked sites in F-actin. Cross-linking of F-actin with N-(4-azido-2-nitrophenyl)-putrescine occurs between Gln-41 and Cys-374 on adjacent monomers of the same strand, consistent with structural models of F-actin.

synapsesocial.com/papers/6a0cd4ee9d761985b14a53e2https://doi.org/10.1021/bi981285j
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of the type of divalent cation, Ca2+ or Mg2+, bound at the high-affinity site and of the ionic composition of the solution on the structure of F-actin1996 · 55 citations
  2. 2Dynamic properties of actin. Structural changes induced by beryllium fluoride.1994 · 105 citations
  3. 3Isolation and characterization of covalently cross-linked actin dimer.1981 · 51 citations
  4. 4p-NN′-phenylenebismaleimide, a specific cross-linking agent for F-actin1978 · 104 citations
  5. 5Spatial relationship between the nucleotide‐binding site, Lys‐61 and Cys‐374 in actin and a conformational change induced by myosin subfragment‐1 binding1987 · 56 citations