Literature DB >> 4066693

Anion carrier in the human erythrocyte exists as a dimer.

J Cuppoletti, J Goldinger, B Kang, I Jo, C Berenski, C Y Jung.   

Abstract

The in situ state of assembly of the human erythrocyte anion carrier (band 3) has been investigated by applying target size analysis on the radiation-induced inactivation of anion flux and degradation of polypeptide band 3. Irradiation with a high energy electron beam resulted in inactivation of carrier-mediated anion flux in intact cells, in inside-out vesicles devoid of cytoskeletal and cytoplasmic proteins, and in inside-out vesicles whose band 3 protein has been partially proteolyzed, with little change in leak pathway. The inactivation showed a single exponential function of radiation dose from which the target size of the anion carrier was estimated to be 210,000, 220,000, and 98,000 daltons in intact cells, in the inside-out vesicles, and in the vesicles after a limited proteolysis, respectively. Irradiation also resulted in degradation of the band 3 of the inside-out vesicles, as detected on sodium dodecyl sulfate-gel electrophoresis, with a dose dependence characteristic of a target size of 220,000 daltons. It is suggested that the human erythrocyte anion carrier exists in situ as a dimer of band 3.

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Year:  1985        PMID: 4066693

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


  4 in total

1.  Hydrodynamic properties of human erythrocyte band 3 solubilized in reduced Triton X-100.

Authors:  A M Taylor; J Boulter; S E Harding; H Cölfen; A Watts
Journal:  Biophys J       Date:  1999-04       Impact factor: 4.033

2.  The sensitivity of saturation transfer electron paramagnetic resonance spectra to restricted amplitude uniaxial rotational diffusion.

Authors:  E J Hustedt; A H Beth
Journal:  Biophys J       Date:  2001-12       Impact factor: 4.033

3.  Oligomeric state of human erythrocyte band 3 measured by fluorescence resonance energy homotransfer.

Authors:  S M Blackman; D W Piston; A H Beth
Journal:  Biophys J       Date:  1998-08       Impact factor: 4.033

Review 4.  The "tunneling" mode of biological carrier-mediated transport.

Authors:  O Fröhlich
Journal:  J Membr Biol       Date:  1988-03       Impact factor: 1.843

  4 in total

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