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Thermodynamic analysis of subunit interactions in Escherichia coli molybdopterin synthase.

Publication ,  Journal Article
Tong, Y; Wuebbens, MM; Rajagopalan, KV; Fitzgerald, MC
Published in: Biochemistry
February 2005

The molybdopterin (MPT) synthase complex in Escherichia coli consists of two MoaE subunits and two MoaD subunits in a heterotetrameric structure with the two MoaE subunits forming a central dimer. Each MoaD subunit binds to a single MoaE molecule to form two identical MoaE/MoaD interfaces. Here we define the thermodynamic properties of the interaction between MoaE and MoaD in MPT synthase using a H/D exchange and matrix-assisted laser desorption/ionization (MALDI) mass spectroscopy based method termed SUPREX (stability of unpurified proteins from rates of H/D exchange). SUPREX-derived protein folding free energies and m values are reported for MoaE in the presence and absence of MoaD and MoaD-SH, the thiocarboxylated form of MoaD that is essential for the catalytic activity of MPT synthase. The protein folding free energy measurements were used to calculate a dissociation constant of 17 +/- 7 microM for the binding of MoaD to MoaE in inactive MPT synthase and a dissociation constant of 2.6 +/- 0.9 microM for the binding of MoaD-SH to MoaE in active MPT synthase. The increased binding affinity of MoaD-SH for MoaE is consistent with a previously proposed mechanism for the MPT synthase reaction. Using the increased m values exhibited by MoaE in the presence of either MoaD subunit, the solvent accessible surface area buried upon formation of the subunit interface in MPT synthase was estimated to be 2378 A(2) for inactive MPT synthase and 4117 A(2) for active MPT synthase.

Duke Scholars

Published In

Biochemistry

DOI

EISSN

1520-4995

ISSN

0006-2960

Publication Date

February 2005

Volume

44

Issue

7

Start / End Page

2595 / 2601

Related Subject Headings

  • Thermodynamics
  • Sulfurtransferases
  • Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
  • Pteridines
  • Protein Subunits
  • Protein Denaturation
  • Protein Binding
  • Organometallic Compounds
  • Molybdenum Cofactors
  • Models, Chemical
 

Citation

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Tong, Y., Wuebbens, M. M., Rajagopalan, K. V., & Fitzgerald, M. C. (2005). Thermodynamic analysis of subunit interactions in Escherichia coli molybdopterin synthase. Biochemistry, 44(7), 2595–2601. https://doi.org/10.1021/bi047762h
Tong, Yan, Margot M. Wuebbens, K. V. Rajagopalan, and Michael C. Fitzgerald. “Thermodynamic analysis of subunit interactions in Escherichia coli molybdopterin synthase.Biochemistry 44, no. 7 (February 2005): 2595–2601. https://doi.org/10.1021/bi047762h.
Tong Y, Wuebbens MM, Rajagopalan KV, Fitzgerald MC. Thermodynamic analysis of subunit interactions in Escherichia coli molybdopterin synthase. Biochemistry. 2005 Feb;44(7):2595–601.
Tong, Yan, et al. “Thermodynamic analysis of subunit interactions in Escherichia coli molybdopterin synthase.Biochemistry, vol. 44, no. 7, Feb. 2005, pp. 2595–601. Epmc, doi:10.1021/bi047762h.
Tong Y, Wuebbens MM, Rajagopalan KV, Fitzgerald MC. Thermodynamic analysis of subunit interactions in Escherichia coli molybdopterin synthase. Biochemistry. 2005 Feb;44(7):2595–2601.
Journal cover image

Published In

Biochemistry

DOI

EISSN

1520-4995

ISSN

0006-2960

Publication Date

February 2005

Volume

44

Issue

7

Start / End Page

2595 / 2601

Related Subject Headings

  • Thermodynamics
  • Sulfurtransferases
  • Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
  • Pteridines
  • Protein Subunits
  • Protein Denaturation
  • Protein Binding
  • Organometallic Compounds
  • Molybdenum Cofactors
  • Models, Chemical