Literature DB >> 12458193

The position of arginine 124 controls the rate of iron release from the N-lobe of human serum transferrin. A structural study.

Ty E Adams1, Anne B Mason, Qing-Yu He, Peter J Halbrooks, Sara K Briggs, Valerie C Smith, Ross T A MacGillivray, Stephen J Everse.   

Abstract

Human serum transferrin (hTF) is a bilobal iron-binding and transport protein that carries iron in the blood stream for delivery to cells by a pH-dependent mechanism. Two iron atoms are held tightly in two deep clefts by coordination to four amino acid residues in each cleft (two tyrosines, a histidine, and an aspartic acid) and two oxygen atoms from the "synergistic" carbonate anion. Other residues in the binding pocket, not directly coordinated to iron, also play critical roles in iron uptake and release through hydrogen bonding to the liganding residues. The original crystal structures of the iron-loaded N-lobe of hTF (pH 5.75 and 6.2) revealed that the synergistic carbonate is stabilized by interaction with Arg-124 and that both the arginine and the carbonate adopt two conformations (MacGillivray, R. T. A., Moore, S. A., Chen, J., Anderson, B. F., Baker, H., Luo, Y. G., Bewley, M., Smith, C. A., Murphy, M. E., Wang, Y., Mason, A. B., Woodworth, R. C., Brayer, G. D., and Baker, E. N. (1998) Biochemistry 37, 7919-7928). In the present study, we show that the two conformations are also found for a structure at pH 7.7, indicating that this finding was not strictly a function of pH. We also provide structures for two single point mutants (Y45E and L66W) designed to force Arg-124 to adopt each of the previously observed conformations. The structures of each mutant show that this goal was accomplished, and functional studies confirm the hypothesis that access to the synergistic anion dictates the rate of iron release. These studies highlight the importance of the arginine/carbonate movement in the mechanism of iron release in the N-lobe of hTF. Access to the carbonate via a water channel allows entry of protons and anions, enabling the attack on the iron.

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Year:  2002        PMID: 12458193     DOI: 10.1074/jbc.M210349200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  11 in total

1.  The crystal structure of iron-free human serum transferrin provides insight into inter-lobe communication and receptor binding.

Authors:  Jeremy Wally; Peter J Halbrooks; Clemens Vonrhein; Mark A Rould; Stephen J Everse; Anne B Mason; Susan K Buchanan
Journal:  J Biol Chem       Date:  2006-06-22       Impact factor: 5.157

Review 2.  The long history of iron in the Universe and in health and disease.

Authors:  Alex D Sheftel; Anne B Mason; Prem Ponka
Journal:  Biochim Biophys Acta       Date:  2011-08-09

3.  Preparation and investigation of bioactive transferrin-iron complexes formed with different synergistic anions.

Authors:  Judit Gálicza; Andrea Vargová; Viktor Sándor; Csongor Kálmán Orbán; Csaba Dezso András; Beáta Abrahám; Szabolcs Lányi; Ferenc Kilár
Journal:  Protein J       Date:  2012-01       Impact factor: 2.371

4.  Exploring the Fe(III) binding sites of human serum transferrin with EPR at 275 GHz.

Authors:  Guinevere Mathies; Peter Gast; N Dennis Chasteen; Ashley N Luck; Anne B Mason; Edgar J J Groenen
Journal:  J Biol Inorg Chem       Date:  2014-12-24       Impact factor: 3.358

5.  Detailed molecular dynamics simulations of human transferrin provide insights into iron release dynamics at serum and endosomal pH.

Authors:  Haleh Abdizadeh; Ali Rana Atilgan; Canan Atilgan
Journal:  J Biol Inorg Chem       Date:  2015-03-20       Impact factor: 3.358

6.  Structural and functional consequences of the substitution of glycine 65 with arginine in the N-lobe of human transferrin.

Authors:  Anne B Mason; Peter J Halbrooks; Nicholas G James; Shaina L Byrne; John K Grady; N Dennis Chasteen; Cedric E Bobst; Igor A Kaltashov; Valerie C Smith; Ross T A MacGillivray; Stephen J Everse
Journal:  Biochemistry       Date:  2009-03-10       Impact factor: 3.162

7.  Sensitizing curium luminescence through an antenna protein to investigate biological actinide transport mechanisms.

Authors:  Manuel Sturzbecher-Hoehne; Christophe Goujon; Gauthier J-P Deblonde; Anne B Mason; Rebecca J Abergel
Journal:  J Am Chem Soc       Date:  2013-02-11       Impact factor: 15.419

8.  Evolution reversed: the ability to bind iron restored to the N-lobe of the murine inhibitor of carbonic anhydrase by strategic mutagenesis.

Authors:  Anne B Mason; Gregory L Judson; Maria Cristina Bravo; Andrew Edelstein; Shaina L Byrne; Nicholas G James; Eric D Roush; Carol A Fierke; Cedric E Bobst; Igor A Kaltashov; Margaret A Daughtery
Journal:  Biochemistry       Date:  2008-08-20       Impact factor: 3.162

9.  Perturbation-response scanning reveals ligand entry-exit mechanisms of ferric binding protein.

Authors:  Canan Atilgan; Ali Rana Atilgan
Journal:  PLoS Comput Biol       Date:  2009-10-23       Impact factor: 4.475

10.  Iron and bismuth bound human serum transferrin reveals a partially-opened conformation in the N-lobe.

Authors:  Nan Yang; Hongmin Zhang; Minji Wang; Quan Hao; Hongzhe Sun
Journal:  Sci Rep       Date:  2012-12-19       Impact factor: 4.379

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