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Editorial [Hot Topic: MDM2 as a Cancer Therapeutic Target (Guest Editor: Ruiwen Zhang)]

机译:社论[热门话题:作为癌症治疗靶点的MDM2(来宾编辑:张瑞文)]

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摘要

It was with great pleasure that I agreed to be guest editor for this special issue of Current Cancer Drug Targets. The MDM2 oncogene is important for cancer initiation, progression and response to therapy, and new information about MDM2 is being uncovered every month. Since its discovery over thirteen years ago, MDM2 has become a widely-researched molecule, generating thousands of papers about its role in various stages of cancer. Although the p53-dependent pathways have been extensively investigated for many years, new information about the effects of this interaction continues to be revealed. More recently, the p53-independent activity of MDM2 has increasingly attracted more researchers. Because of the sheer amount of research detailing both the p53-dependent and -independent pathways, new reviews about MDM2 are both timely and important. I trust that you will find the reviews in this issue of Current Cancer Drug Targets to be as informative and thought provoking as I did. The topics addressed span the range of MDM2 research, from the historical perspective to the latest discoveries about splice variations, therapeutic targeting, and proteins interacting with MDM2.nnBond, Hu and Levine illustrate in great detail what has been discovered about the p53-dependent effects of MDM2, and the p53 / MDM2 relationship. Although the existence of the auto-regulatory loop between MDM2 and p53 has been known for many years, new proteins depending on the interaction are still being discovered, and the complex relationship between p53 and MDM2 is finally becoming clear. Their review is an excellent introduction to the MDM2 field, from the viewpoint of the protein's earliest known function. On the other hand, the review by Zhang and Zhang discusses the many and diverse newly discovered p53-independent interactions of MDM2. These include a variety of proteins involved in signal transduction guiding the cell cycle and apoptosis, as well as other cellular processes. This article is sure to spark the interest of many readers, because MDM2 interacts with so many different proteins and is involved in nearly every important cellular pathway.nnThe review by Harris encompasses the most up-to-date information on the alternative splicing of MDM2. Not only does MDM2 interact with a large number of proteins, there also exist splice variants of the protein, which may have other interactions, or different effects on the same proteins. The article by Rayburn, Zhang, He and Wang addresses the clinical relevance of MDM2 expression. Even before it was known that MDM2 had any effects on proteins other that p53, MDM2 was known to be an indicator for worse prognosis in cancer patients. This review describes the effects of MDM2 expression in various human cancers, and addresses the role of MDM2 in various stages of cancer development and progression, as well as therapeutic intervention.nnIn this issue, three additional articles provide a comprehensive review on intervention approaches to inhibiting MDM2 functions. The review by Zhang, Wang and Agrawal provides a historic perspective and brief summary on antisense approaches to knocking down MDM2 expression, and the underlying molecular mechanisms behind the antisense technology. This approach has been shown to be effective in several in vitro and in vivo cancer models as a novel cancer therapy used alone or in combination with conventional chemotherapy and radiation therapy. The review by Tortora and colleagues focuses on the chemosensitization effects of this antisense oligonucleotide. Buolamwini and coauthors summarize the strategic approaches to developing small molecules as MDM2 inhibitors, which can serve as an example for rational drug design.nnIn short, I hope that you will find the reviews contained within these pages to be interesting and helpful. I would like to thank Elizabeth Rayburn, who was instrumental in the editing and organization of the manuscripts, and thank the authors, whose contributions make this issue possible, and reviewers, whose critical comments and suggestions have significantly improved the quality of the articles.
机译:我非常高兴地同意担任本期《当前癌症药物目标》特刊的特约编辑。 MDM2癌基因对于癌症的发生,发展和对治疗的反应非常重要,而且每月都会发现有关MDM2的新信息。自十三年前被发现以来,MDM2已经成为广泛研究的分子,产生了数千篇有关其在癌症各个阶段中的作用的论文。尽管已经对p53依赖性途径进行了广泛研究,但有关这种相互作用作用的新信息仍在不断揭示。最近,MDM2的不依赖p53的活性越来越吸引了更多的研究人员。由于大量研究详述了p53依赖性和非依赖性途径,因此有关MDM2的新综述既及时又重要。我相信您会发现本期《当前癌症药物目标》中的评论与我一样具有启发性和启发性。从历史的角度到有关剪接变异,治疗靶点和与MDM2相互作用的蛋白质的最新发现,涉及的主题涵盖了MDM2的研究范围。nnBond,Hu和Levine详细阐述了关于p53依赖性效应的发现MDM2的作用,与p53 / MDM2的关系有关。尽管人们已经知道MDM2和p53之间存在自动调节环,但仍在发现依赖于相互作用的新蛋白质,并且p53和MDM2之间的复杂关系终于变得清晰起来。从该蛋白质最早的已知功能的观点,他们的综述是对MDM2领域的出色介绍。另一方面,Zhang和Zhang的评论讨论了MDM2的许多新发现的独立于p53的相互作用。这些包括与信号转导有关的各种蛋白质,指导细胞周期和细胞凋亡以及其他细胞过程。本文肯定会引起许多读者的兴趣,因为MDM2与这么多不同的蛋白质相互作用并且涉及几乎所有重要的细胞途径。nnHarris的综述涵盖了有关MDM2选择性剪接的最新信息。 MDM2不仅与大量蛋白质相互作用,而且还存在该蛋白质的剪接变体,这些变体可能具有其他相互作用或对相同蛋白质产生不同影响。 Rayburn,Zhang,He和Wang的文章探讨了MDM2表达的临床意义。甚至在不知道MDM2对p53以外的蛋白质有任何作用之前,就已经知道MDM2是癌症患者预后较差的指标。这篇综述描述了MDM2表达在各种人类癌症中的作用,并论述了MDM2在癌症发展和进展的各个阶段以及治疗干预中的作用.nn在本期中,另外三篇文章对抑制癌症的干预方法进行了全面综述MDM2功能。 Zhang,Wang和Agrawal的评论提供了有关降低MDM2表达的反义方法以及反义技术背后的潜在分子机制的历史性观点和简要概述。作为一种单独使用或与常规化学疗法和放射疗法结合使用的新型癌症疗法,该方法已在多种体外和体内癌症模型中有效。 Tortora及其同事的评论集中在这种反义寡核苷酸的化学增敏作用上。 Buolamwini和合著者总结了开发小分子作为MDM2抑制剂的战略方法,可以作为合理药物设计的一个例子。总之,我希望您会发现这些页面中包含的评论是有趣且有用的。我要感谢在稿件的编辑和组织方面发挥了重要作用的伊丽莎白·雷伯恩(Elizabeth Rayburn),并感谢作者的贡献使这一问题成为可能,并感谢审稿人的批评意见和建议极大地提高了文章的质量。

著录项

  • 来源
    《Current Cancer Drug Targets》 |2005年第1期|p.1-2|共2页
  • 作者

    Ruiwen Zhang;

  • 作者单位

    Department of Pharmacology and Toxicology, University of Alabama at Birmingham, VH 113, Box 600, 1670 University Boulevard, Birmingham, AL 35294-0019.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MDM2;

    机译:MDM2;

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