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1.
Glycobiology ; 33(8): 615-625, 2023 10 06.
Article in English | MEDLINE | ID: mdl-36924076

ABSTRACT

Hyaluronan (HA) is a central component of the extracellular matrix (ECM) in the brain and plays a pivotal role in neural development and plasticity. Brain HA exists in 2 distinct forms of the ECM: the diffuse ECM, which is soluble in saline and detergents, and the condensed ECM, which forms aggregates, such as perineuronal nets (PNNs). Although the physiological functions of HA significantly differ depending on its size, size differences in HA have not yet been examined in the 2 ECM types, which is partly because of the lack of methods to rapidly and accurately measure the molecular weight (MW) of HA. In this study, we established a simple method to simultaneously assess the MW of HA in multiple crude biological samples. HA was purified through single-step precipitation from tissue extracts using biotinylated HA-binding protein and streptavidin-coupled magnetic beads, followed by separation on gel electrophoresis. By applying this method to HA in the mouse brain, we revealed that the condensed ECM contained higher MW HA than the diffuse ECM. Higher MW HA and lower MW HA exhibited different spatial distributions: the former was confined to PNNs, whereas the latter was widely present throughout the brain. Furthermore, the limited degradation of HA showed that only higher MW HA was required to form an insoluble HA-aggrecan complex. The present study demonstrated that the MW of HA in the brain strongly correlates with the localization and solubility of the ECM it forms.


Subject(s)
Hyaluronic Acid , Neurons , Animals , Mice , Hyaluronic Acid/metabolism , Solubility , Neurons/metabolism , Extracellular Matrix/metabolism , Brain/metabolism
2.
Biochim Biophys Acta Gen Subj ; 1865(2): 129804, 2021 02.
Article in English | MEDLINE | ID: mdl-33253804

ABSTRACT

BACKGROUND: Perineuronal nets (PNNs) are insoluble aggregates of extracellular matrix molecules in the brain that consist of hyaluronan (HA) and chondroitin sulfate proteoglycans (CSPGs). PNNs promote the acquisition and storage of memories by stabilizing the formation of synapses in the adult brain. Although the deterioration of PNNs has been suggested to contribute to the age-dependent decline in brain function, the molecular mechanisms underlying age-related changes in PNNs remain unclear. METHODS: The amount and solubility of PNN components were investigated by sequential extraction followed by a disaccharide analysis and immunoblotting. We examined the interaction between HA and aggrecan, a major HA-binding CSPG, by combining mass spectrometry and pull-down assays. RESULTS: The solubility and amount of HA increased in the brain with age. Among several CSPGs, the solubility of aggrecan was selectively elevated during aging. In contrast to alternations in biochemical properties, the expression of PNN components at the transcript level was not markedly changed by aging. The increased solubility of aggrecan was not due to the loss of HA-binding properties. Our results indicated that the degradation of high-molecular-mass HA induced the release of the HA-aggrecan complex from PNNs in the aged brain. CONCLUSION: The present study revealed a novel mechanism underlying the age-related deterioration of PNNs in the brain.


Subject(s)
Aggrecans/metabolism , Aging , Brain/physiology , Chondroitin Sulfate Proteoglycans/metabolism , Hyaluronic Acid/metabolism , Animals , Brain/cytology , Extracellular Matrix/metabolism , Mice , Mice, Inbred C57BL , Mice, Inbred ICR , Neurons/cytology , Neurons/metabolism
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