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  • 1
    ISSN: 1573-6830
    Keywords: S-100 protein ; binding sites ; synaptosomes
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary 1. Immunocytochemical evidence is presented of the ultrastructural localization of binding sites for S-100 protein in synaptosomal fractions and subfractions. Synaptosomes or isolated synaptosomal subfractions were first incubated with S-100, then centrifuged to remove unbound S-100, and finally fixed before treatment with anti-S-100 antiserum, using the unlabeled antibody peroxidase-antiperoxidase (PAP) method. 2. When intact synaptosomes were used, the immunoreaction product was localized to the postsynaptic density including the postsynaptic membrane. In some reactive synaptosomes, the presynaptic membrane was labeled as well, in the region of synaptic contact. No reaction deposit was found in the synaptic cleft or on intrasynaptosomal structures. Divalent cations (Ca2+ and Mg2+) were essential for S-100 to interact with synaptosomes. Of the synaptosomal subfractions tested, i.e., synaptic vesicles and intraterminal mitochondria, only synaptic vesicles showed immunoreactivity when treated with S-100 and anti-S-100 antiserum as described above. 3. The S-100 immunoreactivity in synaptic structures documented in this report parallels the distribution of the high-affinity binding sites for radiolabeled S-100 in synaptosomal fractions and subfractions.
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Cellular and molecular neurobiology 3 (1983), S. 239-254 
    ISSN: 1573-6830
    Keywords: S-100 protein ; synaptosomes ; S-100 binding sites ; Ca2+-binding protein
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary 1. The125I-labeled S-100 specific binding to a Triton X-100 (TX-100) extract of synaptosomal particulate fractions (SYN) was investigated. 2. The results indicate that (a) S-100 binding to the TX-100 extract is partially irreversible after a critical association time at 37°C, while it is fully reversible after any association time at 4°C; (b) trypsin and phospholipase C partially reverse the S-100 binding, while phospholipase D enhances the interaction to some extent, in a dose-dependent way; (c) EDTA and high concentrations of NaC1 or KC1 are more efficient as inhibitors of the S-100 binding to the TX-100 extract than as125I-labeled S-100 dissociating agents, in analogy with previous observations with SYN; and (d) two main populations of solubilized S-100 binding sites can be evidenced by gel filtration and sucrose gradient centrifugation when low amounts of the TX-100 extract are processed and/or low S-100 concentrations are used, while two additional molecular species are separated when greater amounts of either factors are tested. 3. These results suggest the possibility that S-100 may be involved in the regulation of some membrane activities.
    Type of Medium: Electronic Resource
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