Plant annexins form calcium‐independent oligomers in solution

  • Hofmann A
  • Ruvinov S
  • Hess S
  • et al.
19Citations
Citations of this article
28Readers
Mendeley users who have this article in their library.

Abstract

The oligomeric state in solution of four plant annexins, namely Anx23(Ca38), Anx24(Ca32), Anx(Gh1), and Anx(Gh2), was characterized by sedimentation equilibrium analysis and gel filtration. All proteins were expressed and purified as amino‐terminal His n fusions. Sequencing of the Anx(Gh1) construct revealed distinct differences with the published sequence. Sedimentation equilibrium analysis of Anx23(Ca38), Anx24(Ca32), and Anx(Gh1) suggests monomer–trimer equilibria for each protein with association constants in the range of 0.9 × 10 10 −1.7 × 10 11 M −2 . All four proteins were subjected to analytical gel filtration under different buffer conditions. Observations from this experiment series agree quantitatively with the ultracentrifugation results, and strongly suggest calcium independence of the annexin oligomerization behavior; moreover, binding of calcium ions to the proteins seems to require disassembly of the oligomers. Anx(Gh2) showed a different elution profile than the other plant annexins; while having only a very small trimer content, this annexin seems to exist in a monomer–dimer equilibrium in solution.

Cite

CITATION STYLE

APA

Hofmann, A., Ruvinov, S., Hess, S., Schantz, R., Delmer, D. P., & Wlodawer, A. (2002). Plant annexins form calcium‐independent oligomers in solution. Protein Science, 11(8), 2033–2040. https://doi.org/10.1110/ps.4770102

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free