Literature DB >> 20056793

Analysis of novel sph (spherocytosis) alleles in mice reveals allele-specific loss of band 3 and adducin in alpha-spectrin-deficient red cells.

Raymond F Robledo1, Amy J Lambert, Connie S Birkenmeier, Marius V Cirlan, Andreea Flavia M Cirlan, Dean R Campagna, Samuel E Lux, Luanne L Peters.   

Abstract

Five spontaneous, allelic mutations in the alpha-spectrin gene, Spna1, have been identified in mice (spherocytosis [sph], sph(1J), sph(2J), sph(2BC), sph(Dem)). All cause severe hemolytic anemia. Here, analysis of 3 new alleles reveals previously unknown consequences of red blood cell (RBC) spectrin deficiency. In sph(3J), a missense mutation (H2012Y) in repeat 19 introduces a cryptic splice site resulting in premature termination of translation. In sph(Ihj), a premature stop codon occurs (Q1853Stop) in repeat 18. Both mutations result in markedly reduced RBC membrane spectrin content, decreased band 3, and absent beta-adducin. Reevaluation of available, previously described sph alleles reveals band 3 and adducin deficiency as well. In sph(4J), a missense mutation occurs in the C-terminal EF hand domain (C2384Y). Notably, an equally severe hemolytic anemia occurs despite minimally decreased membrane spectrin with normal band 3 levels and present, although reduced, beta-adducin. The severity of anemia in sph(4J) indicates that the highly conserved cysteine residue at the C-terminus of alpha-spectrin participates in interactions critical to membrane stability. The data reinforce the notion that a membrane bridge in addition to the classic protein 4.1-p55-glycophorin C linkage exists at the RBC junctional complex that involves interactions between spectrin, adducin, and band 3.

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Year:  2010        PMID: 20056793      PMCID: PMC2832806          DOI: 10.1182/blood-2009-07-232199

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  45 in total

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4.  Role of terminal nonhomologous domains in initiation of human red cell spectrin dimerization.

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Authors:  Steven L Ciciotte; Babette Gwynn; Kengo Moriyama; Marjan Huizing; William A Gahl; Juan S Bonifacino; Luanne L Peters
Journal:  Blood       Date:  2003-02-06       Impact factor: 22.113

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Authors:  May-Jean King; Jonathan S Smythe; Rosey Mushens
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7.  The erythrocyte skeletons of beta-adducin deficient mice have altered levels of tropomyosin, tropomodulin and EcapZ.

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8.  Mutations in the murine erythroid alpha-spectrin gene alter spectrin mRNA and protein levels and spectrin incorporation into the red blood cell membrane skeleton.

Authors:  Nancy J Wandersee; Connie S Birkenmeier; David M Bodine; Narla Mohandas; Jane E Barker
Journal:  Blood       Date:  2002-08-08       Impact factor: 22.113

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  6 in total

1.  The carboxyterminal EF domain of erythroid alpha-spectrin is necessary for optimal spectrin-actin binding.

Authors:  Catherine Korsgren; Samuel E Lux
Journal:  Blood       Date:  2010-06-28       Impact factor: 22.113

2.  Comparative proteomics reveals deficiency of SLC9A1 (sodium/hydrogen exchanger NHE1) in β-adducin null red cells.

Authors:  Jason M Wooden; Greg L Finney; Eric Rynes; Michael J Maccoss; Amy J Lambert; Raymond F Robledo; Luanne L Peters; Diana M Gilligan
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3.  Erythrocyte adducin: a structural regulator of the red blood cell membrane.

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4.  Proceedings of the 2011 National Toxicology Program Satellite Symposium.

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6.  The Complexity of Genotype-Phenotype Correlations in Hereditary Spherocytosis: A Cohort of 95 Patients: Genotype-Phenotype Correlation in Hereditary Spherocytosis.

Authors:  Annelies van Vuren; Bert van der Zwaag; Rick Huisjes; Nathalie Lak; Marc Bierings; Egbert Gerritsen; Eduard van Beers; Marije Bartels; Richard van Wijk
Journal:  Hemasphere       Date:  2019-08-07
  6 in total

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