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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Archives of microbiology 111 (1977), S. 225-238 
    ISSN: 1432-072X
    Keywords: Cyanobacteria ; Phycobiliproteins ; Allophycocyanins ; Hybrid proteins ; Immunology ; Protein evolution ; Cyanidium caldurium
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Allophycocyanins were purified from diverse cyanobacteria and one rhodophytan alga (Cyanidium caldarium). The native proteins are trimeric molecules with the structure (αβ)3. Representative native allophycocyanins and their α and β subunits were characterized with respect to molecular weight, amino acid composition, isoelectric point, absorption and fluorescence spectra and immunological properties. All of the allophycocyanins studied were strikingly similar with respect to each of these properties. Renatured α and β subunits of allophycocyanin were distinct immunologically from each other, and both cross-reacted with the antiserum to the native protein. Trimeric allophycocyanin was readily reconstituted from the purified α and β subunits. Formation of hybrid allophycocyanins was demonstrated by direct isolation and characterization of the hybrid proteins and by immunological techniques. The results support the view that allophycocyanins are a highly conserved group of proteins.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-1017
    Keywords: K+ channel ; Chromaffn granule ; Membrane reconstitution ; Planar bilayer
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Physics
    Notes: Abstract A K+ channel was incorporated into voltage-clamped planar lipid bilayers from bovine chromaffin granules and resealed granule membranes (“ghosts”). It was not incorporated from plasma membrane-rich fractions from the adrenal medulla. The channel had a conductance of ∼ 400 pS in symmetric 450 mM KCI, with the permeability sequence K+ 〉 Rb+ 〉 Cs+ 〉 Na+ 〉 Li+, and was insensitive to both Ca2+ and charybdotoxin. It exhibited complex gating kinetics, consistent with the presence of multiple open and closed states, and its gating was voltage-dependent. The channels appeared to incorporate into bilayers with the same orientation, and were blocked from one side (the side of vesicle addition) by 0.2-1 mM TEA'. The block was slightly voltage-dependent. Acidification of resealed granule membranes in response to external ATP (which activated the vacuolartype ATPase) was significantly reduced in the presence of 1 mM intralumenal TEACI (with 9 mM KCl), and parallel measurements with the potential-sensitive dye Oxonol V showed that such vesicles tended to develop higher internal-positive membrane potentials than control vesicles containing only 10 mM KCI. 1 mM TEA+ had no effect on proton-pumping activity when applied externally, and did not directly affect either the proton-pumping or ATP hydrolytic activity of the partially-purified ATPase. These results suggest that chromaffin granule membranes contain a TEA+-sensitive K+ channel which may have a role in regulating the vesicle membrane potential.
    Type of Medium: Electronic Resource
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