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Polysialic acid in the rat brainstem and thoracolumbar spinal cord: distribution, cellular location and comparison with mouse

Item Type:Article
Title:Polysialic acid in the rat brainstem and thoracolumbar spinal cord: distribution, cellular location and comparison with mouse
Creators Name:Shahbazian, S., Bokiniec, P., Berning, B.A., McMullan, S. and Goodchild, A.K.
Abstract:Polysialic acid (polySia), a homopolymer of α2,8-linked glycans, is a post translational modification on a few glycoproteins, most commonly in the brain, on the neural cell adhesion molecule. Most research in the adult central nervous system has focused on its expression in higher brain regions, where its distribution coincides with regions known to exhibit high levels of synaptic plasticity. In contrast, scant attention has been paid to the expression of polySia in the hindbrain. The main aims of the study were to examine the distribution of polySia immunoreactivity in the brainstem and thoracolumbar spinal cord, to compare the distribution of polySia revealed by two commercial antibodies commonly used for its investigation, and to compare labelling in the rat and mouse. We present a comprehensive atlas of polySia immunoreactivity: we report that polySia labelling is particularly dense in the dorsal tegmentum, medial vestibular nuclei and lateral parabrachial nucleus, and in brainstem regions associated with autonomic function, including the dorsal vagal complex, A5, RVL, A1 and midline raphe, as well as sympathetic preganglionic neurons in the spinal cord and central targets of primary sensory afferents (nucleus of the solitary tract, spinal trigeminal nucleus, and dorsal horn). Ultrastructural examination showed labelling was present predominantly on the plasma membrane/within the extracellular space/in or on astrocytes. Labelling throughout the brainstem and spinal cord were very similar for the two antibodies and was eliminated by the polySia-specific sialidase, Endo-NF. Similar patterns of distribution were found in rat and mouse brainstem with differences evident in dorsal horn.
Keywords:Brain Stem, Inbred C57BL Mice, Lumbar Vertebrae, Sialic Acids, Spinal Cord, Sprague-Dawley Rats, Thoracic Vertebrae, Animals, Mice, Rats
Source:Journal of Comparative Neurology
ISSN:0021-9967
Publisher:Wiley
Volume:529
Number:4
Page Range:811-827
Date:March 2021
Official Publication:https://doi.org/10.1002/cne.24982
PubMed:View item in PubMed

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