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Xbra 调节 Xenopus 发育过程中连接区磷酸化 Smad1 的活性。

Xbra modulates the activity of linker region phosphorylated Smad1 during Xenopus development.

机构信息

Department of Biochemistry, Institute of Cell Differentiation and Aging, College of Medicine, Hallym University, Chuncheon, Gangwon-Do, 24252, Republic of Korea.

ULB Neuroscience Institute (UNI), Université Libre de Bruxelles (ULB), Gosselies, B-6041, Belgium.

出版信息

Sci Rep. 2024 Apr 18;14(1):8922. doi: 10.1038/s41598-024-59299-7.

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.

摘要

Bmp/Smad1 途径在发育过程和组织稳态中发挥着关键作用。丝裂原活化蛋白激酶 (Mapk)/Erk 介导的 Smad1 连接区磷酸化导致 Smad1 降解、细胞质滞留和 Bmp/Smad1 信号抑制。虽然已经有文献报道 Fgf/Erk 途径抑制 Bmp/Smad1 信号,但也有几项研究表明这两种途径在不同的情况下存在协同作用。然而,这种协同相互作用的确切作用和分子途径仍然不清楚。在这里,我们确定了 Fgf/Erk 信号诱导的 Xbra 是 Smad1 保护机制中的一个因素。Xbra 与连接区磷酸化的 Smad1 发生物理相互作用,形成 Xbra/Smad1/Smad4 三聚体复合物,导致 Smad1 核定位,并防止其被泛素介导的蛋白酶体降解。这种 Xbra/Smad1/Smad4 的相互作用导致 Smad1 的核定位持续,并上调侧中胚层基因,同时抑制神经和血液形成基因。总之,这些结果表明,在 Xenopus 胚胎的侧中胚层特化过程中,Xbra 依赖的 Fgf/Erk 和 Bmp/Smad1 信号之间存在协同相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e0e/11026473/8572381c9438/41598_2024_59299_Fig1_HTML.jpg

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