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WNTS and WNT receptors as therapeutic tools and targets in human disease processes

机译:WNTS和WNT受体作为人类疾病过程中的治疗工具和靶标

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摘要

The body of scientific literature linking Wnts and Wnt-associated proteins to human disease processes continues to grow in parallel with new discoveries from basic science laboratories that further characterize the elaborate cellular events following the binding of Wnts to their receptors. While Wnt-mediated signaling has long been known to play a major role in human carcinogenesis, accumulating evidence indicates that Wnts are also important mediators of inflammation and recovery from injury. The binding of secreted Wnt ligands to their receptors offers an attractive and accessible target for therapeutic regulation of these signaling pathways. Several promising preliminary studies have already addressed potential avenues for the manipulation of Wnt signaling in disease processes. This review will focus on disease processes involving the regulation of Wnt signaling at the level of Wnt binding to its target receptors. Wnt proteins, Wnt receptors, and secreted Wnt inhibitors are attractive as potential therapeutic agents and targets due to their extracellular location. In addition, since Wnt signaling results in a diverse array of downstream intracellular events, many of which are not fully understood, the targeting of this pathway at the most upstream site of pathway activation also provides a strategic advantage for therapy. As the list of Wnt-related diseases continues to grow, advances in our understanding of the biochemical and molecular mechanisms underlying Wnt signaling may ultimately translate into innovative ways to treat Wnt-related disease processes in patients.
机译:与Wnts和Wnt相关蛋白与人类疾病过程相关联的科学文献的不断发展与基础科学实验室的新发现同时发展,这些发现进一步表征了Wnts与其受体结合后发生的复杂细胞事件。虽然早已知道Wnt介导的信号在人类致癌作用中起主要作用,但越来越多的证据表明Wnt也是炎症和损伤恢复的重要介体。分泌的Wnt配体与其受体的结合为这些信号传导途径的治疗性调节提供了有吸引力且易于接近的靶标。一些有希望的初步研究已经解决了在疾病过程中操纵Wnt信号转导的潜在途径。这篇综述将集中在涉及在Wnt与其靶受体结合水平上调控Wnt信号传导的疾病过程。 Wnt蛋白,Wnt受体和分泌的Wnt抑制剂由于其在细胞外的位置而吸引人,成为潜在的治疗剂和靶标。另外,由于Wnt信号传导导致下游细胞内事件的多样化阵列,其中许多尚未被完全理解,因此将该途径靶向途径激活的最上游部位也为治疗提供了战略上的优势。随着Wnt相关疾病的清单不断增加,我们对Wnt信号基础的生化和分子机制的了解的进步最终可能会转化为治疗患者Wnt相关疾病过程的创新方法。

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