Molecular Neurobiology Program, Department of Pharmacology, Skirball Institute, NYU School of Medicine, New York, NY 10016, USA.
Development. 2014 Feb;141(3):617-28. doi: 10.1242/dev.101600. Epub 2014 Jan 8.
Wnts control a wide range of essential developmental processes, including cell fate specification, axon guidance and anteroposterior neuronal polarization. We identified a conserved transmembrane RING finger protein, PLR-1, that governs the response to Wnts by lowering cell-surface levels of the Frizzled family of Wnt receptors in Caenorhabditis elegans. Loss of PLR-1 activity in the neuron AVG causes its anteroposterior polarity to be symmetric or reversed because signaling by the Wnts CWN-1 and CWN-2 are inappropriately activated, whereas ectopic PLR-1 expression blocks Wnt signaling and target gene expression. Frizzleds are enriched at the cell surface; however, when PLR-1 and Frizzled are co-expressed, Frizzled is not detected at the surface but instead is colocalized with PLR-1 in endosomes. The Frizzled cysteine-rich domain (CRD) and invariant second intracellular loop lysine are crucial for PLR-1 downregulation. The PLR-1 RING finger and protease-associated (PA) domain are essential for activity. In a Frizzled-dependent manner, PLR-1 reduces surface levels of the Wnt receptors CAM-1/Ror and LIN-18/Ryk. PLR-1 is a homolog of the mammalian transmembrane E3 ubiquitin ligases RNF43 and ZNRF3, which control Frizzled surface levels in an R-spondin-sensitive manner. We propose that PLR-1 downregulates Wnt receptor surface levels via lysine ubiquitylation of Frizzled to coordinate spatial and temporal responses to Wnts during neuronal development.
Wnts 控制着广泛的重要发育过程,包括细胞命运特化、轴突导向和前后神经元极化。我们鉴定了一个保守的跨膜环指蛋白 PLR-1,它通过降低秀丽隐杆线虫中 Frizzled 家族 Wnt 受体的细胞表面水平来控制对 Wnts 的反应。AVG 神经元中 PLR-1 活性的丧失导致其前后极性对称或反转,因为 CWN-1 和 CWN-2 Wnts 的信号被异常激活,而异位 PLR-1 表达阻断 Wnt 信号和靶基因表达。Frizzleds 在细胞表面富集;然而,当 PLR-1 和 Frizzled 共表达时,Frizzled 不在表面检测到,而是与 PLR-1 在内涵体中共定位。Frizzled 富含半胱氨酸的结构域(CRD)和不变的第二细胞内环赖氨酸对于 PLR-1 的下调至关重要。PLR-1 的 RING 指和蛋白酶相关(PA)结构域对于活性是必需的。以 Frizzled 依赖的方式,PLR-1 降低 Wnt 受体 CAM-1/Ror 和 LIN-18/Ryk 的表面水平。PLR-1 是哺乳动物跨膜 E3 泛素连接酶 RNF43 和 ZNRF3 的同源物,以 R-spondin 敏感的方式控制 Frizzled 的表面水平。我们提出,PLR-1 通过 Frizzled 的赖氨酸泛素化来下调 Wnt 受体的表面水平,以协调神经元发育过程中对 Wnts 的时空反应。