Spatial confinement of receptor activity by tyrosine phosphatase during directional cell migration

Author:

Zhu Zhiwen,Chai Yongping,Hu Huifang,Li WeiORCID,Li Wen-JunORCID,Dong Meng-QiuORCID,Wu Jia-Wei,Wang Zhi-Xin,Ou Guangshuo

Abstract

Directional cell migration involves signaling cascades that stimulate actin assembly at the leading edge, and additional pathways must inhibit actin polymerization at the rear. During neuroblast migration inCaenorhabditis elegans, the transmembrane protein MIG-13/Lrp12 acts through the Arp2/3 nucleation-promoting factors WAVE and WASP to guide the anterior migration. Here we show that a tyrosine kinase, SRC-1, directly phosphorylates MIG-13 and promotes its activity on actin assembly at the leading edge. In GFP knockin animals, SRC-1 and MIG-13 distribute along the entire plasma membrane of migrating cells. We reveal that a receptor-like tyrosine phosphatase, PTP-3, maintains the F-actin polarity during neuroblast migration. Recombinant PTP-3 dephosphorylates SRC-1–dependent MIG-13 phosphorylation in vitro. Importantly, the endogenous PTP-3 accumulates at the rear of the migrating neuroblast, and its extracellular domain is essential for directional cell migration. We provide evidence that the asymmetrically localized tyrosine phosphatase PTP-3 spatially restricts MIG-13/Lrp12 receptor activity in migrating cells.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

National key R&D Program of China

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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