4.6 Article

Involvement of the Serum Response Factor Coactivator Megakaryoblastic Leukemia (MKL) in the Activin-regulated Dendritic Complexity of Rat Cortical Neurons

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 285, Issue 43, Pages 32734-32743

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M110.118745

Keywords

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Funding

  1. Ministry of Education, Culture, Sports, Science, and Technology of Japan [17790055, 19790052, 22590080, 20390023]
  2. Hayashi Memorial Foundation for Female Natural Scientists
  3. Foundation of the First Bank of Toyama
  4. Takeda Science Foundation
  5. Narishige Neuroscience Research Foundation
  6. Tokyo Biochemical Research Foundation
  7. Uehara Memorial Foundation
  8. Comprehensive Brain Science Network
  9. Grants-in-Aid for Scientific Research [22300114, 19790052, 17790055, 22590080] Funding Source: KAKEN

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Dynamic changes in neuronal morphology and transcriptional regulation play crucial roles in the neuronal network and function. Accumulating evidence suggests that the megakaryoblastic leukemia (MKL) family members, which function not only as actin-binding proteins but also as serum response factor (SRF) transcriptional coactivators, regulate neuronal morphology. However, the extracellular ligands and signaling pathways, which activate MKL-mediated morphological changes in neurons, remain unresolved. Here, we demonstrate that in addition to MKL1, MKL2, highly enriched in the forebrain, strongly contributes to the dendritic complexity, and this process is triggered by stimulation with activin, a member of the transforming growth factor beta (TGF-beta) superfamily. Activin promoted dendritic complexity in a SRF- and MKL-dependent manner without drastically affecting MKL localization and protein levels. In contrast, activin promoted the nuclear export of suppressor of cancer cell invasion (SCAI), which is a corepressor for SRF and MKL. Furthermore, overexpression of SCAI blocked activin-induced SRF transcriptional responses and dendritic complexity. Collectively, these results strongly suggest that activin-SCAI-MKL signaling is a novel pathway that regulates the dendritic morphology of rat cortical neurons by excluding SCAI from the nucleus and activating MKL/SRF-mediated gene expression.

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