Literature DB >> 1002704

Reactivity of cyanate with valine-1 (alpha) of hemoglobin. A probe of conformational change and anion binding.

A M Nigen, B D Bass, J M Manning.   

Abstract

The 3-fold increase in the carbamylation rate of Val-1 (alpha) of hemoglobin upon deoxygenation described earlier is now shown to be a sensitive probe of conformational change. Thus, whereas this residue in methemoglobin A is carbamylated at the same rate as in liganded hemoglobin, upon addition of inositol hexaphosphate its carbamylation rate is enhanced 30% as much as the total change in the rate between the CO and deoxy states. For CO-hemoglobin Kansas in the presence of the organic phosphate, the relative increase in the carbamylation rate of this residue is about 50%. These results indicate that methemoglobin A and hemoglobin Kansas in the presence of inositol hexaphosphate do not assume a conformation identical with deoxyhemoglobin but rather form either a mixture of R and T states or an intermediate conformation in the region around Val-1 (alpha). Studies on the mechanism for the rate enhancement in deoxyhemoglobin suggest that the cyanate anion binds to groups in the vicinity of Val-1 (alpha) prior to proton transfer and carbamylation of this NH2-terminal residue. Thus, specific removal with carboxypeptidase B of Arg-141 (alpha), which is close to Val-1 (alpha) in deoxyhemoglobin, abolishes the enhancement in carbamylation. Chloride, which has the same valency as cyanate, is a better competitive inhibitor of the carbamylation of deoxyhemoglobin (Ki = 50 mM) compared with liganded hemoglobin. Nitrate and iodide are also effective inhibitors of the carbamylation of Val-1 (alpha) of deoxyhemoglobin (Ki = 35 mM); inorganic phosphate, sulfate, and fluoride are poor competitive inhibitors. The change in pKa of Val-1 (alpha) upon deoxygenation may be due to its differential interaction with chloride.

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Year:  1976        PMID: 1002704

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


  4 in total

1.  Random chemical modification of the oxygen-linked chloride-binding sites of hemoglobin: those in the central dyad axis may influence the transition between deoxy- and oxy-hemoglobin.

Authors:  H Ueno; A M Popowicz; J M Manning
Journal:  J Protein Chem       Date:  1993-10

2.  Measurement of Hba(1C) in patients with chronic renal failure.

Authors:  Randie R Little; Curt L Rohlfing; Alethea L Tennill; Steven E Hanson; Shawn Connolly; Trefor Higgins; Charles E Wiedmeyer; Cas W Weykamp; Richard Krause; William Roberts
Journal:  Clin Chim Acta       Date:  2013-01-12       Impact factor: 3.786

3.  The functional, oxygen-linked chloride binding sites of hemoglobin are contiguous within a channel in the central cavity.

Authors:  H Ueno; J M Manning
Journal:  J Protein Chem       Date:  1992-04

4.  Thermodynamic aspects of the linkage between binding of chloride and oxygen to human hemoglobin.

Authors:  R N Haire; B E Hedlund
Journal:  Proc Natl Acad Sci U S A       Date:  1977-10       Impact factor: 11.205

  4 in total

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