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Xbra modulates the activity of linker region phosphorylated Smad1 during Xenopus developmentopen access

Authors
Kumar, SantoshUmair, ZobiaKumar, VijayGoutam, Ravi ShankarPark, SoochulLee, UnjooKim, Jaebong
Issue Date
Apr-2024
Publisher
Nature Research
Keywords
Bmp4; Erk; Fgf; Mesoderm specification; Smad1; Smad4; Xbra; Xenopus
Citation
Scientific Reports, v.14, no.1
Journal Title
Scientific Reports
Volume
14
Number
1
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/160147
DOI
10.1038/s41598-024-59299-7
ISSN
2045-2322
Abstract
The Bmp/Smad1 pathway plays a crucial role in developmental processes and tissue homeostasis. Mitogen-activated protein kinase (Mapk)/Erk mediated phosphorylation of Smad1 in the linker region leads to Smad1 degradation, cytoplasmic retention and inhibition of Bmp/Smad1 signaling. While Fgf/Erk pathway has been documented to inhibit Bmp/Smad1 signaling, several studies also suggests the cooperative interaction between these two pathways in different context. However, the precise role and molecular pathway of this collaborative interaction remain obscure. Here, we identified Xbra induced by Fgf/Erk signaling as a factor in a protective mechanism for Smad1. Xbra physically interacted with the linker region phosphorylated Smad1 to make Xbra/Smad1/Smad4 trimeric complex, leading to Smad1 nuclear localization and protecting it from ubiquitin-mediated proteasomal degradation. This interaction of Xbra/Smad1/Smad4 led to sustained nuclear localization of Smad1 and the upregulation of lateral mesoderm genes, while concurrently suppression of neural and blood forming genes. Taken together, the results suggests Xbra-dependent cooperative interplays between Fgf/Erk and Bmp/Smad1 signaling during lateral mesoderm specification in Xenopus embryos. © The Author(s) 2024.
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