Literature DB >> 6806279

Reductive methylation of the two 4,4'-diisothiocyanodihydrostilbene-2,2'-disulfonate-binding lysine residues of band 3, the human erythrocyte anion transport protein.

M L Jennings.   

Abstract

The bifunctional anion transport inhibitor 4,4'p-diisothiocyanodihydrostilbene-2,2'-disulfonate (H2DIDS) can react covalently with both chymotryptic peptides of band 3, the human erythrocyte anion transport protein. The functional roles of the two sites of covalent H2DIDS attachment have been investigated using reductive methylation with formaldehyde and borohydride, which is a substrate for band 3. Reductive methylation of outward facing lysing residues of intact cells can block the covalent H2DIDS reaction with both the 60,000- and the 38,000-dalton chymotryptic peptides (CH60 and CH38, respectively). The methylation does not interfere with reversible H2DIDS binding. Methylation of all copies of and 3 at both sites of covalent H2DIDS attachment inhibits Cl-Cl exchange by 75%. The same treatment does not detectably alter the apparent affinity for extracellular substrate (Br). The extent of transport inhibition by reductive methylation correlates very well with the extent of blockage of the Amino acid analysis indicates that the H2DIDS-binding lysine on CH38 rather than some coincidentally modified lysine is responsible for the inhibition. This lysine is therefore likely to be closely associated with the anion transport pathway.

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Year:  1982        PMID: 6806279

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


  10 in total

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Review 4.  Oligomeric structure and the anion transport function of human erythrocyte band 3 protein.

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Review 5.  Role of substrate binding forces in exchange-only transport systems: II. Implications for the mechanism of the anion exchanger of red cells.

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7.  Transport domain of the erythrocyte anion exchange protein.

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8.  Electrogenic sulfate/chloride exchange in Xenopus oocytes mediated by murine AE1 E699Q.

Authors:  M N Chernova; L Jiang; M Crest; M Hand; D H Vandorpe; K Strange; S L Alper
Journal:  J Gen Physiol       Date:  1997-03       Impact factor: 4.086

9.  Functional evidence for distinct interaction of hydrophobic arylisothiocyanates with the erythrocyte anion transport protein.

Authors:  S O Cacciola; H Sigrist; M Reist; Z I Cabantchik; P Zahler
Journal:  J Membr Biol       Date:  1984       Impact factor: 1.843

Review 10.  Cell physiology and molecular mechanism of anion transport by erythrocyte band 3/AE1.

Authors:  Michael L Jennings
Journal:  Am J Physiol Cell Physiol       Date:  2021-10-20       Impact factor: 4.249

  10 in total

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