Abstract
AbstractRecent investigations of neurological developmental disorders have revealed the Rho-family modulators such as Syde and its interactors as the candidate genes. Although the mammalian Syde proteins are reported to possess GTPase-accelerating activity for RhoA-family proteins, diverse species-specific substrate selectivities and binding partners have been described, presumably based on their evolutionary variance in the molecular organization. A comprehensive in silico analysis of Syde family proteins was performed to elucidate their molecular functions and neurodevelopmental networks. Predicted structural modeling of the RhoGAP domain may account for the molecular constraints to substrate specificity among Rho-family proteins. Deducing conserved binding motifs can extend the Syde interaction network and highlight diverse but Syde isoform-specific signaling pathways in neuronal homeostasis, differentiation, and synaptic plasticity from novel aspects of post-translational modification and proteolysis.
Publisher
Springer Science and Business Media LLC
Reference82 articles.
1. Hallam, S. J., Goncharov, A., McEwen, J., Baran, R. & Jin, Y. Syd-1, a presynaptic protein with PDZ, C2 and rhoGAP-like domains specifies axon identity in C. elegans. Nat. Neurosci. 5, 1137–1146 (2002).
2. Xu, Y. & Quinn, C. C. SYD-1 promotes multiple developmental steps leading to neuronal connectivity. Mol. Neurobiol. 53, 6768–6773 (2016).
3. Wentzel, C. et al. mSYD1A, a mammalian synapse-defective-1 protein, regulates synaptogenic signaling and vesicle docking. Neuron 78, 1012–1023 (2013).
4. Spinner, M. A., Walla, D. A. & Herman, T. G. Drosophila Syd-1 has RhoGAP activity that is required for presynaptic clustering of Bruchpilot/ELKS but not Neurexin-1. Genetics 208, 705–716 (2018).
5. Xu, Y., Taru, H., Jin, Y. & Quinn, C. C. Syd-1c, Unc-40 (DCC) and Sax-3 (Robo) function interdependently to promote axon guidance by regulating the MIG-2 GTPase. PLoS Genet. 11, e1005185 (2015).
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