Ensing Jessica, Ide Amber D, Gilliland Carla, Tsurho Visakuo, Caza Isabella, Stratman Amber N, Lanning Nathan J, Grainger Stephanie
Department of Cell Biology, Van Andel Institute, Grand Rapids, Michigan, 49503, USA RRID: SCR_021956.
Cell Biology and Physiology, Washington University in St. Louis School of Medicine, St. Louis, MO 63110, USA RRID: SCR_000343.
bioRxiv. 2024 Oct 25:2024.10.25.620301. doi: 10.1101/2024.10.25.620301.
Wnt signaling is essential for both the development and homeostasis of diverse cellular lineages, including hematopoietic stem cells. Organism-wide, Wnt signals are tightly regulated, as overactivation of the pathway can lead to tumorigenesis. Although numerous Wnt ligands and Frizzled (Fzd) receptors exist, how particular Wnt/Fzd pairings are established and how their signals are regulated is poorly understood. We have previously identified the requirements of the cognate pairing of Wnt9a and Fzd9b for early hematopoietic stem cell proliferation. However, the specific signals governing activation, but equally important, the molecular mechanisms required to turn the signal 'off,' are unknown. Here, we show that the E3 ubiquitin ligase Trip12 (thyroid hormone receptor interactor 12) is specifically required to ubiquitinate the third intracellular loop of Fzd9b at K437, targeting it for lysosomal degradation. In contrast to other ubiquitin ligases described to regulate the cell surface availability of multiple Fzds broadly, our data indicate that Trip12 is selective for Fzd9b. We further demonstrate that this occurs through ubiquitination at K437 of Fzd9b in the third intracellular loop, ultimately leading to a decrease in Fzd9b receptor availability and in Wnt9a/Fzd9b signaling that impacts hematopoietic stem cell proliferation in zebrafish. Our results point to specific mechanisms driving the availability of different Fzd receptors. Determining how particular Fzd abundance is regulated at the membrane will be critical to developing specific therapies for human intervention.
Wnt信号对于包括造血干细胞在内的多种细胞谱系的发育和体内平衡至关重要。在整个生物体中,Wnt信号受到严格调控,因为该信号通路的过度激活会导致肿瘤发生。尽管存在众多Wnt配体和卷曲蛋白(Fzd)受体,但对于特定的Wnt/Fzd配对是如何建立的以及它们的信号是如何被调控的,人们了解甚少。我们之前已经确定了Wnt9a和Fzd9b的同源配对对于早期造血干细胞增殖的必要性。然而,控制激活的具体信号,同样重要的是,使信号“关闭”所需的分子机制尚不清楚。在这里,我们表明E3泛素连接酶Trip12(甲状腺激素受体相互作用蛋白12)特异性地需要在K437处泛素化Fzd9b的第三个细胞内环,将其靶向溶酶体降解。与其他被描述为广泛调节多种Fzd细胞表面可用性的泛素连接酶不同,我们的数据表明Trip12对Fzd9b具有选择性。我们进一步证明,这是通过Fzd9b第三个细胞内环中K437处的泛素化发生的,最终导致Fzd9b受体可用性降低以及Wnt9a/Fzd9b信号传导减少,从而影响斑马鱼造血干细胞的增殖。我们的结果指出了驱动不同Fzd受体可用性的特定机制。确定特定Fzd在膜上的丰度是如何被调控的,对于开发人类干预的特异性疗法至关重要。