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整合虚拟筛选和生化筛选以发现蛋白酪氨酸磷酸酶抑制剂

Integrating virtual and biochemical screening for protein tyrosine phosphatase inhibitor discovery.

作者信息

Martin Katie R, Narang Pooja, Medina-Franco José L, Meurice Nathalie, MacKeigan Jeffrey P

机构信息

Laboratory of Systems Biology, Van Andel Research Institute, Grand Rapids, MI, United States.

Mayo Clinic, Scottsdale, AZ, United States.

出版信息

Methods. 2014 Jan 15;65(2):219-28. doi: 10.1016/j.ymeth.2013.08.013. Epub 2013 Aug 20.

Abstract

Protein tyrosine phosphatases (PTPs) represent an important class of enzymes that mediate signal transduction and control diverse aspects of cell behavior. The importance of their activity is exemplified by their significant contribution to disease etiology with over half of all human PTP genes implicated in at least one disease. Small molecule inhibitors targeting individual PTPs are important biological tools, and are needed to fully characterize the function of these enzymes. Moreover, potent and selective PTP inhibitors hold the promise to transform the treatment of many diseases. While numerous methods exist to develop PTP-directed small molecules, we have found that complimentary use of both virtual (in silico) and biochemical (in vitro) screening approaches expedite compound identification and drug development. Here, we summarize methods pertinent to our work and others. Focusing on specific challenges and successes we have experienced, we discuss the considerable caution that must be taken to avoid enrichment of inhibitors that function by non-selective oxidation. We also discuss the utility of using "open" PTP structures to identify active-site directed compounds, a rather unconventional choice for virtual screening. When integrated closely, virtual and biochemical screening can be used in a productive workflow to identify small molecules targeting PTPs.

摘要

蛋白酪氨酸磷酸酶(PTPs)是一类重要的酶,介导信号转导并控制细胞行为的多个方面。它们的活性的重要性体现在它们对疾病病因学的重大贡献上,超过一半的人类PTP基因与至少一种疾病有关。靶向单个PTP的小分子抑制剂是重要的生物学工具,对于全面表征这些酶的功能是必需的。此外,强效且选择性的PTP抑制剂有望改变许多疾病的治疗方法。虽然存在多种开发PTP导向小分子的方法,但我们发现,虚拟(计算机模拟)和生化(体外)筛选方法的互补使用可加快化合物鉴定和药物开发。在此,我们总结与我们的工作及其他工作相关的方法。聚焦于我们所经历的特定挑战和成功,我们讨论了必须格外谨慎以避免富集通过非选择性氧化起作用的抑制剂。我们还讨论了使用“开放”PTP结构来鉴定活性位点导向化合物的实用性,这对于虚拟筛选而言是一个相当非常规的选择。当紧密结合时,虚拟和生化筛选可用于一个高效的工作流程中,以鉴定靶向PTP的小分子。

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