Sizzled (Frzb3) physically interacts with noncanonical Wnt ligands to inhibit gastrulation cell movement

IF 3.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecules and Cells Pub Date : 2024-06-01 DOI:10.1016/j.mocell.2024.100068
Jaeho Yoon , Santosh Kumar , Haeryung Lee , Zia Ur Rehman , Soochul Park , Unjoo Lee , Jaebong Kim
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Abstract

The coordinated movement of germ layer progenitor cells reaches its peak at the dorsal side, where the Bmp signaling gradient is low, and minimum at the ventral side, where the Bmp gradient is high. This dynamic cell movement is regulated by the interplay of various signaling pathways. The noncanonical Wnt signaling cascade serves as a pivotal regulator of convergence and extension cell movement, facilitated by the activation of small GTPases such as Rho, Rab, and Rac. However, the underlying cause of limited cell movement at the ventral side remains elusive. To explore the functional role of a key regulator in constraining gastrulation cell movement at the ventral side, we investigated the Bmp4-direct target gene, sizzled (szl), to assess its potential role in inhibiting noncanonical Wnt signaling. In our current study, we demonstrated that ectopic expression of szl led to gastrulation defects in a dose-dependent manner without altering cell fate specification. Overexpression of szl resulted in decreased elongation of Activin-treated animal cap and Keller explants. Furthermore, our immunoprecipitation assay unveiled the physical interaction of Szl with noncanonical Wnt ligand proteins (Wnt5 and Wnt11). Additionally, the activation of small GTPases involved in Wnt signaling mediation (RhoA and Rac1) was diminished upon szl overexpression. In summary, our findings suggest that Bmp4 signaling negatively modulates cell movement from the ventral side of the embryo by inducing szl expression during early Xenopus gastrulation.

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Sizzled (frzb3)与非经典Wnt配体发生物理作用,从而抑制胃形成细胞的移动。
胚层祖细胞的协调运动在 Bmp 信号梯度较低的背侧达到高峰,而在 Bmp 信号梯度较高的腹侧达到最低点。这种动态的细胞移动受各种信号通路的相互作用调控。非经典的 Wnt 信号级联是细胞汇聚和延伸运动的关键调节因子,Rho、Rab 和 Rac 等小 GTP 酶的激活促进了细胞的汇聚和延伸运动。然而,细胞在腹侧运动受限的根本原因仍然不明。为了探索一个关键调控因子在限制腹侧胃伸展细胞运动中的功能作用,我们研究了 Bmp4 直接靶基因 sizzled,以评估其在抑制非经典 Wnt 信号转导中的潜在作用。在目前的研究中,我们证实了异位表达sizzled会以剂量依赖的方式导致胃形成缺陷,而不会改变细胞命运的规范。过表达 sizzled 会导致经 Activin 处理的动物盖和 Keller 外植体的伸长率降低。此外,我们的免疫沉淀分析揭示了 Sizzled 与非经典 Wnt 配体蛋白(Wnt5 和 Wnt11)之间的物理相互作用。此外,sizzled 过表达后,参与 Wnt 信号调解的小 GTP 酶(RhoA 和 Rac1)的活化作用减弱。总之,我们的研究结果表明,Bmp4 信号传导通过诱导 sizzled 的表达,在早期章鱼胚胎发育过程中负向调节来自胚胎腹侧的细胞移动。
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来源期刊
Molecules and Cells
Molecules and Cells 生物-生化与分子生物学
CiteScore
6.60
自引率
10.50%
发文量
83
审稿时长
2.3 months
期刊介绍: Molecules and Cells is an international on-line open-access journal devoted to the advancement and dissemination of fundamental knowledge in molecular and cellular biology. It was launched in 1990 and ISO abbreviation is ''Mol. Cells''. Reports on a broad range of topics of general interest to molecular and cell biologists are published. It is published on the last day of each month by the Korean Society for Molecular and Cellular Biology.
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