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Publication : Palmitoylation of BMPR1a regulates neural stem cell fate.

First Author  Wegleiter T Year  2019
Journal  Proc Natl Acad Sci U S A Volume  116
Issue  51 Pages  25688-25696
PubMed ID  31772009 Mgi Jnum  J:282811
Mgi Id  MGI:6383339 Doi  10.1073/pnas.1912671116
Citation  Wegleiter T, et al. (2019) Palmitoylation of BMPR1a regulates neural stem cell fate. Proc Natl Acad Sci U S A 116(51):25688-25696
abstractText  Neural stem cells (NSCs) generate neurons and glial cells throughout embryonic and postnatal brain development. The role of S-palmitoylation (also referred to as S-acylation), a reversible posttranslational lipid modification of proteins, in regulating the fate and activity of NSCs remains largely unknown. We used an unbiased screening approach to identify proteins that are S-acylated in mouse NSCs and showed that bone morphogenic protein receptor 1a (BMPR1a), a core mediator of BMP signaling, is palmitoylated. Genetic manipulation of S-acylated sites affects the localization and trafficking of BMPR1a and leads to altered BMP signaling. Strikingly, defective palmitoylation of BMPR1a modulates NSC function within the mouse brain, resulting in enhanced oligodendrogenesis. Thus, we identified a mechanism regulating the behavior of NSCs and provided the framework to characterize dynamic posttranslational lipid modifications of proteins in the context of NSC biology.
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