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Peptide Scanning-assisted Identification of a Monoclonal Antibody-recognized Linear B-cell Epitope
Published on: March 24, 2017
Ultrastructural localization of a synaptic ribbon protein recognized by antibody B16
1Biology Department, Boston College, Chestnut Hill MA 02167, USA.
Abstract:
This study examines the immunolabelled structures in the mouse retina following incubation with a monoclonal antibody (B16) that recognizes a highly conserved antigen found in retinas from lizards, frogs, fish, birds, mice, rats, rabbits, cats, and monkeys. This paper focuses on observations in the murine retina. The B16 labelling pattern in the retina was compared with that of two synaptic vesicle antigens: SV2 and anti-synaptophysin in the outer plexiform layer were more diffuse and apparently filled the entire presynaptic terminal whereas B16 labelling was more restricted and labelled a discrete structure resembling a semi-ellipse or an arc with the ends pointing to the inner nuclear layer and the middle curve facing the outer nuclear layer (1-2 microns long by < 0.05 micron in width). The structure labelled in the inner plexiform layer resembles a short bar (0.8 micron long by < 0.05 micron in width) that is confined to the inner half the inner plexiform layer. Cryo-ultra microtomy was used to examine the ultrastructural distribution of the labelling, because the B16 epitope is sensitive to fixation and plastic embedding. The tissue was incubated with the B16 antibody and visualized with goat-anti-mouse 10 nm gold particles. In all cases label was found to be confined to the ribbon structure in the photoreceptor terminal. This is consistent with previous evidence linking B16 to an epitope associated with the synaptic ribbon. The labelling is confined to the ribbon structure and does not appear to be associated with synaptic vesicles.
Insights
The B16 antibody specifically labels synaptic ribbons in the mouse retina, differentiating it from synaptic vesicle markers. This finding clarifies the localization of this conserved antigen within photoreceptor terminals.
Area of Science:
- Neuroscience
- Cell Biology
- Immunohistochemistry
Background:
- The B16 monoclonal antibody recognizes a conserved antigen present in the retinas of various vertebrate species.
- Previous studies suggest B16 is associated with synaptic structures in the retina.
Purpose of the Study:
- To investigate the precise localization of the B16 antigen in the mouse retina at the ultrastructural level.
- To compare the B16 labelling pattern with known synaptic vesicle markers.
Main Methods:
- Immunolabelling of mouse retinal tissue with the B16 antibody.
- Comparison with antibodies against synaptic vesicle antigens SV2 and synaptophysin.
- Cryo-ultramicrotomy to preserve the B16 epitope's integrity.
- Visualization using goat-anti-mouse 10 nm gold particles.
Main Results:
- B16 labelling in the outer plexiform layer revealed discrete, semi-elliptical structures, distinct from the diffuse labelling of SV2 and synaptophysin.
- In the inner plexiform layer, B16 labelled short bar-like structures.
- Ultrastructural analysis confirmed B16 labelling is confined to the synaptic ribbon in photoreceptor terminals.
- The B16 epitope is sensitive to fixation and plastic embedding.
Conclusions:
- The B16 antibody specifically targets the synaptic ribbon structure in mouse photoreceptor terminals.
- This localization is distinct from synaptic vesicle components.
- The findings support B16 as a marker for synaptic ribbons, offering insights into retinal synaptic organization.

