| Literature DB >> 27006115 |
Jianqin Niu1, Tao Li1, Chenju Yi2, Nanxin Huang1, Annette Koulakoff2, Chuanhuang Weng3, Chengren Li1, Cong-Jian Zhao3, Christian Giaume4, Lan Xiao5.
Abstract
Oligodendrocyte precursor cells (OPCs) undergo a series of energy-consuming developmental events; however, the uptake and trafficking pathways for their energy metabolites remain unknown. In the present study, we found that 2-NBDG, a fluorescent glucose analog, can be delivered between astrocytes and oligodendrocytes through connexin-based gap junction channels but cannot be transferred between astrocytes and OPCs. Instead, connexin hemichannel-mediated glucose uptake supports OPC proliferation, and ethidium bromide uptake or increase of 2-NBDG uptake rate is correlated with intracellular Ca(2+) elevation in OPCs, indicating a Ca(2+)-dependent activation of connexin hemichannels. Interestingly, deletion of connexin 43 (Cx43, also known as GJA1) in astrocytes inhibits OPC proliferation by decreasing matrix glucose levels without impacting on OPC hemichannel properties, a process that also occurs in corpus callosum from acute brain slices. Thus, dual functions of connexin-based channels contribute to glucose supply in oligodendroglial lineage, which might pave a new way for energy-metabolism-directed oligodendroglial-targeted therapies.Entities:
Keywords: Connexin hemichannel; Glial metabolism; Glucose uptake; Intracellular Ca2+; Oligodendroglia
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Year: 2016 PMID: 27006115 DOI: 10.1242/jcs.178731
Source DB: PubMed Journal: J Cell Sci ISSN: 0021-9533 Impact factor: 5.285