Medical Journals

Mechanisms of Discrimination Between Cobalamins and Their Natural Analogues During Their Binding to the Specific B12-transporting Proteins.

Authors:
  • Fedosov Sergey N
  • Fedosova Natalya U
  • Kräutler Bernhard
  • Nexø Ebba
  • Petersen Torben E

From: Protein Chemistry Laboratory, Department of Molecular Biology, University of Aarhus, Science Park, Gustav Wieds Vej 10, DK 8000 Aarhus C, Denmark. snf@mb.au.dk

Biochemistry

  • Publish Date: May 2007
  • ISSN: 0006-2960
  • Volume: 46
  • Issue: 21
  • Pages: 6446-58
  • Medium: Print
  • Language: English
  • Citation (JAMA): Fedosov Sergey N, Fedosova Natalya U, Kräutler Bernhard, et al. Mechanisms of Discrimination Between Cobalamins and Their Natural Analogues During Their Binding to the Specific B12-transporting Proteins.. Biochemistry May 2007;46:6446-58

Abstract

Three proteins, intrinsic factor (IF), transcobalamin (TC), and haptocorrin (HC), all have an extremely high affinity for the cobalamins (Cbls, Kd approximately 5 fM) but discriminate these physiological ligands from Cbl analogues with different efficiencies decreasing in the following order: IF > TC > HC. We investigated interactions of these proteins with a number of ligands: Cbl, fluorescent conjugate CBC, two base-off analogues [pseudo-coenzyme B12 (pB) and adenosyl factor A (fA)], and a baseless corrinoid cobinamide. Protein-ligand encounter and the following internal rearrangements in both molecules were registered as a change in the fluorescence of CBC (alone or mixed with other ligands), a transition in absorbance of pB and fA (base-off — > on-base conversion), and alterations in the molecular mass of two split IF domains. The greater complexity of the binding kinetics followed better Cbl specificity (HC < TC < IF). On the basis of the experimental results, we propose a general binding model with three major steps: (1) initial attachment of the ligand to the high-affinity C-domain, (2) primary assembly of N- and C-domains, and (3) slow adjustments and fixation of the ligand at the domain-domain interface. Since step 3 was characteristic of highly specific TC and especially IF, we suggest its particular importance for ligand recognition. The designed models revealed the absolute Kd values for a group of analogues. Calculations show that most of them could potentially bind to the specific transporters IF and TC under physiological conditions. Implications of this finding and the protective role of HC are discussed.

Mesh Headings (Keywords): Binding Sites, Carrier Proteins, Humans, Intrinsic Factor, Ligands, Protein Binding, Transcobalamins, Vitamin B 12


Check for Full Text / PubMed Unique Identifier (PMID): 17487979


This abstract is part of PubMed, a service of the U.S. National Library of Medicine. PubMed includes more than 17 million citations from MEDLINE and other life science journals for biomedical articles. See Copyright and Disclaimers.

Linked medical terms appearing on this page are added by Healia to help readers find more information and are not part of the original PubMed document.

The data herein was last updated on July 8th, 2008 and may not reflect the most current and accurate data available from NLM.


Advertisements

About | Privacy Policy | Business Solutions | Advertise | Contact | Add Healia to your site

©2012. Healia / Meredith Corporation  

Use of this site constitutes acceptance of our Terms of Service and Privacy Policy. All content on this Web site, including medical opinion and any other health-related information, is for informational purposes only and should not be used for a specific diagnosis or individual treatment plan for any situation. Use of this site and the information contained herein does not create a doctor-patient relationship. Always seek the direct advice of your doctor in connection with any questions or issues you may have regarding your own health or the health of others.