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用于选择性金属蛋白酶抑制剂设计的巨噬细胞模型

A macrophage cell model for selective metalloproteinase inhibitor design.

作者信息

Jacobsen Faith E, Buczynski Matthew W, Dennis Edward A, Cohen Seth M

机构信息

Department of Chemistry and Biochemistry, University of California in San Diego, La Jolla, CA 92093-0358, USA.

出版信息

Chembiochem. 2008 Sep 1;9(13):2087-95. doi: 10.1002/cbic.200800148.

Abstract

The desire to inhibit zinc-dependent matrix metalloproteinases (MMPs) has, over the course of the last 30 years, led to the development of a plethora of MMP inhibitors that bind directly to the active-site metal. With one exception, all of these drugs have failed in clinical trials, due to many factors, including an apparent lack of specificity for MMPs. To address the question of whether these inhibitors are selective for MMPs in a biological setting, a cell-based screening method is presented to compare the relative activities of zinc, heme iron, and non-heme iron enzymes in the presence of these compounds using the RAW264.7 macrophage cell line. We screened nine different zinc-binding groups (ZBGs), four established MMP inhibitors (MMPis), and two novel MMP inhibitors developed in our laboratory to determine their selectivities against five different metalloenzymes. Using this model, we identified two nitrogen donor compounds--2,2'-dipyridylamine (DPA) and triazacyclononane (TACN)--as the most selective ZBGs for zinc metalloenzyme inhibitor development. We also demonstrated that the model could predict known nonspecific interactions of some of the most commonly used MMPis, and could also give cross-reactivity information for newly developed MMPis. This work demonstrates the utility of cell-based assays in both the design and the screening of novel metalloenzyme inhibitors.

摘要

在过去30年里,抑制锌依赖性基质金属蛋白酶(MMPs)的需求促使人们开发了大量直接与活性位点金属结合的MMP抑制剂。除一种药物外,所有这些药物在临床试验中均告失败,原因是多方面的,包括对MMPs明显缺乏特异性。为了解决这些抑制剂在生物环境中对MMPs是否具有选择性的问题,本文介绍了一种基于细胞的筛选方法,利用RAW264.7巨噬细胞系比较这些化合物存在时锌、血红素铁和非血红素铁酶的相对活性。我们筛选了9种不同的锌结合基团(ZBGs)、4种已有的MMP抑制剂(MMPis)以及我们实验室开发的2种新型MMP抑制剂,以确定它们对5种不同金属酶的选择性。利用该模型,我们确定了两种含氮供体化合物——2,2'-联吡啶胺(DPA)和三氮杂环壬烷(TACN)——作为开发锌金属酶抑制剂时最具选择性的ZBGs。我们还证明,该模型可以预测一些最常用MMPis已知的非特异性相互作用,也可以为新开发的MMPis提供交叉反应信息。这项工作证明了基于细胞的分析方法在新型金属酶抑制剂设计和筛选中的实用性。

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