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Publication : Fine-tuning of neuronal architecture requires two profilin isoforms.

First Author  Michaelsen K Year  2010
Journal  Proc Natl Acad Sci U S A Volume  107
Issue  36 Pages  15780-5
PubMed ID  20798032 Mgi Jnum  J:164381
Mgi Id  MGI:4833740 Doi  10.1073/pnas.1004406107
Citation  Michaelsen K, et al. (2010) Fine-tuning of neuronal architecture requires two profilin isoforms. Proc Natl Acad Sci U S A 107(36):15780-5
abstractText  Two profilin isoforms (PFN1 and PFN2a) are expressed in the mammalian brain. Although profilins are essential for regulating actin dynamics in general, the specific role of these isoforms in neurons has remained elusive. We show that knockdown of the neuron-specific PFN2a results in a significant reduction in dendrite complexity and spine numbers of hippocampal neurons. Overexpression of PFN1 in PFN2a-deficient neurons prevents the loss of spines but does not restore dendritic complexity. Furthermore, we show that profilins are involved in differentially regulating actin dynamics downstream of the pan-neurotrophin receptor (p75(NTR)), a receptor engaged in modulating neuronal morphology. Overexpression of PFN2a restores the morphological changes in dendrites caused by p75(NTR) overexpression, whereas PFN1 restores the normal spine density. Our data assign specific functions to the two PFN isoforms, possibly attributable to different affinities for potent effectors also involved in actin dynamics, and suggest that they are important for the signal-dependent fine-tuning of neuronal architecture.
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