MRCKβ links Dasm1 to actin rearrangements to promote dendrite development Journal Article


Authors: Wang, X. X.; Zhang, S.; Dong, P. P.; Li, Y. H.; Zhang, L.; Shi, S. H.; Yu, Z. Q.; Chen, S.
Article Title: MRCKβ links Dasm1 to actin rearrangements to promote dendrite development
Abstract: Proper dendrite morphogenesis and synapse formation are essential for neuronal development and function. Dasm1, a member of the immunoglobulin superfamily, is known to promote dendrite outgrowth and excitatory synapse maturation in vitro. However, the in vivo function of Dasm1 in neuronal development and the underlying mechanisms are not well understood. To learn more, Dasm1 knockout mice were constructed and employed to confirm that Dasm1 regulates dendrite arborization and spine formation in vivo. We performed a yeast two-hybrid screen using Dasm1, revealing MRCKβ as a putative partner; additional lines of evidence confirmed this interaction and identified cytoplasmic proline-rich region (823–947 aa) of Dasm1 and MRCKβ self-activated kinase domain (CC1, 410–744 aa) as necessary and sufficient for binding. Using co-immunoprecipitation assay, autophosphorylation assay, and BS3 cross-linking assay, we show that Dasm1 binding triggers a change in MRCKβ’s conformation and subsequent dimerization, resulting in autophosphorylation and activation. Activated MRCKβ in turn phosphorylates a class 2 regulatory myosin light chain, which leads to enhanced actin rearrangement, causing the dendrite outgrowth and spine formation observed before. Removal of Dasm1 in mice leads to behavioral abnormalities. Together, these results reveal a crucial molecular pathway mediating cell surface and intracellular signaling communication to regulate actin dynamics and neuronal development in the mammalian brain. © 2021 THE AUTHORS.
Keywords: cell proliferation; proteins; signaling; neurons; autophosphorylation; cell membranes; mammals; intracellular signaling; cell signaling; neuronal development; mammalian brain; molecular pathways; co-immunoprecipitation assays; myosin light chains; yeast two hybrid
Journal Title: Journal of Biological Chemistry
Volume: 296
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 2021-01-01
Start Page: 100730
Language: English
DOI: 10.1016/j.jbc.2021.100730
PUBMED: 33933448
PROVIDER: scopus
PMCID: PMC8191314
DOI/URL:
Notes: Article -- Export Date: 1 July 2021 -- Source: Scopus
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  1. Song-Hai Shi
    52 Shi