The role of the N-terminal loop in the function of the colicin E7 nuclease domain

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The role of the N-terminal loop in the function of the colicin E7 nuclease domain

Authors
Publisher
Springer
Keywords
  • I
  • E
  • However
  • In Agreement With This
  • Colicin E7 (Cole7) Is A Metallonuclease Toxin Of Escherichia Coli Belonging To The Hnh Superfamily O
  • It Contains Highly Conserved Amino Acids In Its Hhx14Nx8Hx3H ββα-Type Metal Ion Binding C-Terminal A
  • The Proximity Of The Arginine At The N-Terminus Of The Nuclease Domain Of Cole7 (Ncole7
  • 446–576) Is Necessary For The Hydrolytic Activity
  • This Poses A Possibility Of Allosteric Activation Control In This Protein
  • To Obtain More Information On This Phenomenon
  • Two Protein Mutants Were Expressed
  • Four And 25 N-Terminal Amino Acids Were Removed From Ncole7
  • The Effect Of The N-Terminal Truncation On The Zn2+ Ion And Dna Binding As Well As On The Activity W
  • Synchrotron-Radiation Circular Dichroism And Fluorescence Spectroscopy And Agarose Gel Mobility Shif
  • The Dynamics Of Protein Backbone Movement Was Simulated By Molecular Dynamics
  • Semiempirical Quantum Chemical Calculations Were Performed To Obtain Better Insightinto The Structur
  • The Longer Protein Interacted With Both Zn2+ Ion And Dna More Strongly Than Its Shorter Counterpart
  • The Results Were Explained By The Structural Stabilization Effect Of The N-Terminal Amino Acids On T
  • The Absence Of The N-Terminal Sequences Resulted In Significantly Increased Movement Of The Backbone
  • 511–515 And 570–571
  • And In ΔN4-Ncole7 Those Between Residues 467–468
  • 530–535 And 570–571

Abstract

The role of the N-terminal loop in the function of the colicin E7 nuclease domain - DTU Orbit (17/05/14) The role of the N-terminal loop in the function of the colicin E7 nuclease domain - DTU Orbit (17/05/14) The role of the N-terminal loop in the function of the colicin E7 nuclease domain Colicin E7 (ColE7) is a metallonuclease toxin of Escherichia coli belonging to the HNH superfamily of nucleases. It contains highly conserved amino acids in its HHX14NX8HX3H ββα-type metal ion binding C-terminal active centre. However, the proximity of the arginine at the N-terminus of the nuclease domain of ColE7 (NColE7, 446–576) is necessary for the hydrolytic activity. This poses a possibility of allosteric activation control in this protein. To obtain more information on this phenomenon, two protein mutants were expressed, i.e. four and 25 N-terminal amino acids were removed from NColE7. The effect of the N-terminal truncation on the Zn2+ ion and DNA binding as well as on the activity was investigated in this study by mass spectrometry, synchrotron-radiation circular dichroism and fluorescence spectroscopy and agarose gel mobility shift assays. The dynamics of protein backbone movement was simulated by molecular dynamics. Semiempirical quantum chemical calculations were performed to obtain better insight into the structure of the active centre. The longer protein interacted with both Zn2+ ion and DNA more strongly than its shorter counterpart. The results were explained by the structural stabilization effect of the N-terminal amino acids on the catalytic centre. In agreement with this, the absence of the N-terminal sequences resulted in significantly increased movement of the backbone atoms compared with that in the native NColE7: in ΔN25-NColE7 the amino acid strings between residues 485–487, 511–515 and 570–571, and in ΔN4-NColE7 those between residues 467–468, 530–535 and 570–571. General information State: Published Organisations: Department of Chemistry, Metalloprotein Chemistry and Engineer

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