Literature DB >> 2398041

Characterization of calpain I-binding proteins in human erythrocyte plasma membrane.

M Kuboki1, H Ishii, M Kazama.   

Abstract

The calpain-binding components on the plasma membrane were characterized using calpain I. 125I-labeled calpain was bound to inside-out membrane vesicles from human erythrocyte in a Ca2(+)-dependent manner, but not to right-side-out membrane vesicles. The maximum binding was observed at more than 5 microM Ca2+. The binding amount of calpain to the inside-out membrane vesicles was decreased when the vesicles were pretreated with 100 micrograms/ml of trypsin, chymotrypsin, elastase, or pronase P for 30 min at 37 degrees C, although the binding to the vesicles pretreated with 200 micrograms/ml of phospholipase A2 or C was not affected. Calpain-binding proteins in the membrane were analyzed by using a modified immunoblotting for calpain. Immunostained bands of 240, 220, 89, 72, 52, and 36 kDa were detected as the calpain-binding proteins in the native membrane. All of these bands had disappeared in trypsin-treated membrane. The disappearance of bands was dose-dependent with respect to trypsin and paralleled the reduction of binding amount of calpain to the trypsinized membrane. In calpain-treated membrane, the 240 and 36 kDa bands were retained in the blotting, though the other bands disappeared dose-dependently with respect to calpain. These results suggested that the significant component in the inner surface of plasma membrane for binding of calpain was proteinaceous and the calpain-binding proteins could be classified into two species, i.e. substrates of calpain (220, 89, 72, and 52 kDa protein) and non-substrates (240 and 36 kDa protein).

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Year:  1990        PMID: 2398041     DOI: 10.1093/oxfordjournals.jbchem.a123124

Source DB:  PubMed          Journal:  J Biochem        ISSN: 0021-924X            Impact factor:   3.387


  8 in total

1.  Activation of calpain I in thrombin-stimulated platelets is regulated by the initial elevation of the cytosolic Ca2+ concentration.

Authors:  H Ishii; Y Suzuki; M Kuboki; M Morikawa; M Inoue; M Kazama
Journal:  Biochem J       Date:  1992-06-15       Impact factor: 3.857

Review 2.  Exercise-induced muscle injury: a calpain hypothesis.

Authors:  A N Belcastro; L D Shewchuk; D A Raj
Journal:  Mol Cell Biochem       Date:  1998-02       Impact factor: 3.396

3.  Calpain-1 knockout reveals broad effects on erythrocyte deformability and physiology.

Authors:  Adam Wieschhaus; Anwar Khan; Asma Zaidi; Henry Rogalin; Toshihiko Hanada; Fei Liu; Lucia De Franceschi; Carlo Brugnara; Alicia Rivera; Athar H Chishti
Journal:  Biochem J       Date:  2012-11-15       Impact factor: 3.857

4.  Calpain (Ca(2+)-dependent thiol protease) in erythrocytes of young and old individuals.

Authors:  T Glaser; N Schwarz-Benmeir; S Barnoy; S Barak; Z Eshhar; N S Kosower
Journal:  Proc Natl Acad Sci U S A       Date:  1994-08-16       Impact factor: 11.205

Review 5.  Contribution of the plasma and lymph Degradome and Peptidome to the MHC Ligandome.

Authors:  Laura Santambrogio; Hans-Georg Rammensee
Journal:  Immunogenetics       Date:  2018-10-20       Impact factor: 2.846

6.  Affinity labelling of the Ca(2+)-activated neutral proteinase (calpain) in intact human platelets.

Authors:  J Anagli; J Hagmann; E Shaw
Journal:  Biochem J       Date:  1993-01-01       Impact factor: 3.857

7.  Calpain/calpastatin activities and substrate depletion patterns during hindlimb unweighting and reweighting in skeletal muscle.

Authors:  Deborah L Enns; Truls Raastad; Ingrid Ugelstad; Angelo N Belcastro
Journal:  Eur J Appl Physiol       Date:  2007-04-12       Impact factor: 3.346

8.  Effect of nutrient restriction and re-feeding on calpain family genes in skeletal muscle of channel catfish (Ictalurus punctatus).

Authors:  Elena Preziosa; Shikai Liu; Genciana Terova; Xiaoyu Gao; Hong Liu; Huseyin Kucuktas; Jeffery Terhune; Zhanjiang Liu
Journal:  PLoS One       Date:  2013-03-19       Impact factor: 3.240

  8 in total

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