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Publication : DIP2B Interacts With α-Tubulin to Regulate Axon Outgrowth.

First Author  Xing ZK Year  2020
Journal  Front Cell Neurosci Volume  14
Pages  29 PubMed ID  32153366
Mgi Jnum  J:295176 Mgi Id  MGI:6458180
Doi  10.3389/fncel.2020.00029 Citation  Xing ZK, et al. (2020) DIP2B Interacts With alpha-Tubulin to Regulate Axon Outgrowth. Front Cell Neurosci 14:29
abstractText  Axonal development is essential to the establishment of neuronal morphology and circuitry, although the mechanisms underlying axonal outgrowth during the early developmental stages remain unclear. Here, we showed that the conserved disco-interacting protein B (DIP2B) which consists of a DMAP1 domain and a crotonobetaine/carnitine CoA ligase (Caic) domain, is highly expressed in the excitatory neurons of the hippocampus. DIP2B knockout led to excessive axonal outgrowth but not polarity at an early developmental stage. Furthermore, the loss of DIP2B inhibited synaptic transmission for both spontaneous and rapid release in cultured hippocampal neurons. Interestingly, DIP2B function during axonal outgrowth requires tubulin acetylation. These findings reveal a new conserved regulator of neuronal morphology and provide a novel intervention mechanism for neurocognitive disorders.
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