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Helmer, P.

Publications and source records attributed to Helmer, P..

2 recordsLinked to original sources

The Role of Nde1 Phosphorylation in Interkinetic Nuclear Migration and Schizophrenia

Nde1 is a cytoplasmic dynein regulatory protein with important roles in vertebrate brain development. One noteworthy function is in the nuclear oscillatory behavior in neural progenitor cells, the control and mechanism of which remain poorly understood. Nde1 contains multiple phosphorylation sites for the cell cycle-dependent protein kinase CDK1, though the function of these sites is not well understood. To test their role in brain development we expressed phosphorylation-state mutant forms of Nde1 in embryonic rat brains using in utero electroporation. We find that Nde1 T215 and T243 phosphomutants block apical interkinetic nuclear migration (INM) and, consequently, mitosis in radial glial progenitor cells. Another Nde1 phosphomutant at T246 also interfered with mitotic entry without affecting INM, suggesting a more direct role for Nde1 T246 in mitotic regulation. We also found that the Nde1 S214F mutation, which is associated with schizophrenia, inhibits CDK5 phosphorylation at an adjacent residue which causes alterations in neuronal lamination. These results together identify important new roles for Nde1 phosphorylation in neocortical development and disease and represent the first evidence for Nde1 phosphorylation roles in INM, neuronal lamination, and schizophrenia. Significance StatementThe results presented in this study show the importance of Nde1 phosphoregulation during successive stages of neocortical development. Nde1 dysregulation may, in turn, have important consequences in human psychiatric disorders, such as schizophrenia, as well. We observed clear and potent effects of specific Nde1 phosphomutants in the control of INM and neural development. Our results provide strong support for new insight into the little-understood mechanism for triggering RGP mitotic entry. In the course of these studies, we obtained clear evidence for a novel post-mitotic role for Nde1 phosphorylation in schizophrenia.

developmental biology↗

The Nucleoporin Nup153 Is the Anchor for Kif1a during Basal Nuclear migration in Brain Progenitor Cells

Radial glial progenitors (RGPs) are highly elongated epithelial cells that give rise to most stem cells, neurons, and glia, in the vertebrate cerebral cortex. During development the RGP nuclei exhibit a striking pattern of cell cycle-dependent oscillatory movements known as interkinetic nuclear migration (INM), which we previously found to be mediated during G1 by the kinesin Kif1a, and during G2 by cytoplasmic dynein, recruited to the nuclear envelope by the nucleoporins RanBP2 and Nup133. We now identify Nup153 as a nucleoporin anchor for Kif1a, responsible for G1-specific basal nuclear migration, providing a complete model for the mechanisms underlying this basic, but mysterious behavior, with broad implications for understanding brain development.

neuroscience↗