Tan Qian Hui, Otgonbaatar Agimaa, Kaur Prameet, Ga Angelica Faye, Harmston Nathan P, Tolwinski Nicholas S
Division of Science, Yale-NUS College, Singapore 138527, Singapore.
Program in Cancer and Stem Cell Biology, Duke-NUS Medical School, Singapore 169857, Singapore.
Cells. 2024 Feb 20;13(5):365. doi: 10.3390/cells13050365.
Wnt signaling is a highly conserved metazoan pathway that plays a crucial role in cell fate determination and morphogenesis during development. Wnt ligands can induce disparate cellular responses. The exact mechanism behind these different outcomes is not fully understood but may be due to interactions with different receptors on the cell membrane. PTK7/Otk is a transmembrane receptor that is implicated in various developmental and physiological processes including cell polarity, cell migration, and invasion. Here, we examine two roles of Otk-1 and Otk-2 in patterning and neurogenesis. We find that Otk-1 is a positive regulator of signaling and Otk-2 functions as its inhibitor. We propose that PTK7/Otk functions in signaling, cell migration, and polarity contributing to the diversity of cellular responses seen in Wnt-mediated processes.
Wnt信号通路是一种高度保守的后生动物通路,在发育过程中的细胞命运决定和形态发生中起着关键作用。Wnt配体可诱导不同的细胞反应。这些不同结果背后的确切机制尚未完全了解,但可能是由于与细胞膜上不同受体的相互作用。PTK7/Otk是一种跨膜受体,参与包括细胞极性、细胞迁移和侵袭在内的各种发育和生理过程。在这里,我们研究了Otk-1和Otk-2在模式形成和神经发生中的两个作用。我们发现Otk-1是信号传导的正调节因子,而Otk-2则作为其抑制剂发挥作用。我们提出PTK7/Otk在信号传导、细胞迁移和极性方面发挥作用,有助于在Wnt介导的过程中看到的细胞反应多样性。