New insights into the molecular mechanisms of ROR1, ROR2, and PTK7 signaling from the proteomics and pharmacological modulation of ROR1 interactome.

Juuli Raivola, Alice Dini, Kari Salokas, Hanna Karvonen, Wilhelmiina Niininen, Emilia Piki, Markku Varjosalo, Daniela Ungureanu
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Abstract

ROR1, ROR2, and PTK7 are Wnt ligand-binding members of the receptor tyrosine kinase family. Despite their lack of catalytic activity, these receptors regulate skeletal, cardiorespiratory, and neurological development during embryonic and fetal stages. However, their overexpression in adult tissue is strongly connected to tumor development and metastasis, suggesting a strong pharmacological potential for these molecules. Wnt5a ligand can activate these receptors, but lead to divergent signaling and functional outcomes through mechanisms that remain largely unknown. Here, we developed a cellular model by stably expressing ROR1, ROR2, and PTK7 in BaF3 cells that allowed us to readily investigate side-by-side their signaling capability and functional outcome. We applied proteomic profiling to BaF3 clones and identified distinctive roles for ROR1, ROR2, and PTK7 pseudokinases in modulating the expression of proteins involved in cytoskeleton dynamics, apoptotic, and metabolic signaling. Functionally, we show that ROR1 expression enhances cell survival and Wnt-mediated cell proliferation, while ROR2 and PTK7 expression is linked to cell migration. We also demonstrate that the distal C-terminal regions of ROR1 and ROR2 are required for receptors stability and downstream signaling. To probe the pharmacological modulation of ROR1 oncogenic signaling, we used affinity purification coupled to mass spectrometry (AP-MS) and proximity-dependent biotin identification (BioID) to map its interactome before and after binding of GZD824, a small molecule inhibitor previously shown to bind to the ROR1 pseudokinase domain. Our findings bring new insight into the molecular mechanisms of ROR1, ROR2, and PTK7, and highlight the therapeutic potential of targeting ROR1 with small molecule inhibitors binding to its vestigial ATP-binding site.

从 ROR1 交互组的蛋白质组学和药理调控中获得 ROR1、ROR2 和 PTK7 信号传导分子机制的新见解。
ROR1、ROR2 和 PTK7 是受体酪氨酸激酶家族中与 Wnt 配体结合的成员。尽管这些受体缺乏催化活性,但它们在胚胎和胎儿阶段能调节骨骼、心肺功能和神经系统的发育。然而,它们在成人组织中的过度表达与肿瘤的发展和转移密切相关,这表明这些分子具有很强的药理潜力。Wnt5a 配体可激活这些受体,但其导致不同信号转导和功能结果的机制在很大程度上仍是未知的。在这里,我们通过在BaF3细胞中稳定表达ROR1、ROR2和PTK7建立了一个细胞模型,从而可以随时并行研究它们的信号转导能力和功能结果。我们对 BaF3 克隆细胞进行了蛋白质组分析,发现 ROR1、ROR2 和 PTK7 伪激酶在调节参与细胞骨架动力学、凋亡和代谢信号转导的蛋白质表达方面发挥着不同的作用。在功能上,我们发现 ROR1 的表达能增强细胞存活和 Wnt 介导的细胞增殖,而 ROR2 和 PTK7 的表达则与细胞迁移有关。我们还证明,ROR1 和 ROR2 的 C 端远端区域是受体稳定性和下游信号转导所必需的。为了探究 ROR1 致癌信号的药理调控,我们使用了亲和纯化耦合质谱(AP-MS)和近距离依赖性生物素鉴定(BioID)技术,绘制了与 GZD824 结合前后的相互作用组图,GZD824 是一种小分子抑制剂,以前曾被证明能与 ROR1 伪激酶结构域结合。我们的研究结果使人们对 ROR1、ROR2 和 PTK7 的分子机制有了新的认识,并凸显了以 ROR1 为靶点、结合其残余 ATP 结合位点的小分子抑制剂的治疗潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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