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复合物形成过程的控制与抑制分析

Control and inhibition analysis of complex formation processes.

作者信息

Saitou Takashi, Itano Keiko, Hoshino Daisuke, Koshikawa Naohiko, Seiki Motoharu, Ichikawa Kazuhisa, Suzuki Takashi

机构信息

Division of Mathematical Science, Department of Systems Innovation, Graduate School of Engineering Science, Osaka University, Toyonaka, Japan.

出版信息

Theor Biol Med Model. 2012 Aug 3;9:33. doi: 10.1186/1742-4682-9-33.

Abstract

BACKGROUND

Proteolytic degradation of the extracellular matrix (ECM) is a key event in tumour metastasis and invasion. Matrix metalloproteinases (MMPs) are a family of endopeptidases that degrade most of the components of the ECM. Several broad-spectrum MMP inhibitors (MMPIs) have been developed, but have had little success due to side effects. Thus, it is important to develop mathematical methods to provide new drug treatment strategies. Matrix metalloproteinase 2 (MMP2) activation occurs via a mechanism involving complex formation that consists of membrane type 1 MMP (MT1-MMP), tissue inhibitor of matrix metalloproteinase 2 (TIMP2) and MMP2. Here, we focus on developing a method for analysing the complex formation process.

RESULTS

We used control analysis to investigate inhibitor responses in complex formation processes. The essence of the analysis is to define the response coefficient which measures the inhibitory efficiency, a small fractional change of concentration of a targeting molecule in response to a small fractional change of concentration of an inhibitor. First, by using the response coefficient, we investigated models for general classes of complex formation processes: chain reaction systems composed of ordered steps, and chain reaction systems and site-binding reaction systems composed of unordered multi-branched steps. By analysing the ordered step models, we showed that parameter-independent inequalities between the response coefficients held. For the unordered multi-branched step models, we showed that independence of the response coefficients with respect to equilibrium constants held. As an application of our analysis, we discuss a mathematical model for the MMP2 activation process. By putting the experimentally derived parameter values into the model, we were able to conclude that the TIMP2 and MMP2 interaction is the most efficient interaction to consider in selecting inhibitors.

CONCLUSIONS

Our result identifies a new drug target in the process of the MMP2 activation. Thus, our analysis will provide new insight into the design of more efficient drug strategies for cancer treatment.

摘要

背景

细胞外基质(ECM)的蛋白水解降解是肿瘤转移和侵袭的关键事件。基质金属蛋白酶(MMPs)是一类可降解ECM大部分成分的内肽酶。已经开发了几种广谱MMP抑制剂(MMPIs),但由于副作用而成效甚微。因此,开发数学方法以提供新的药物治疗策略很重要。基质金属蛋白酶2(MMP2)的激活通过一种机制发生,该机制涉及由膜型1 MMP(MT1-MMP)、基质金属蛋白酶2组织抑制剂(TIMP2)和MMP2组成的复合物形成。在此,我们专注于开发一种分析复合物形成过程的方法。

结果

我们使用控制分析来研究复合物形成过程中的抑制剂反应。该分析的本质是定义响应系数,该系数衡量抑制效率,即靶向分子浓度的小分数变化对抑制剂浓度小分数变化的响应。首先,通过使用响应系数,我们研究了一般类型的复合物形成过程模型:由有序步骤组成的链式反应系统,以及由无序多分支步骤组成的链式反应系统和位点结合反应系统。通过分析有序步骤模型,我们表明响应系数之间存在与参数无关的不等式。对于无序多分支步骤模型,我们表明响应系数相对于平衡常数具有独立性。作为我们分析的应用,我们讨论了MMP2激活过程的数学模型。通过将实验得出的参数值代入模型,我们能够得出结论,在选择抑制剂时,TIMP2和MMP2之间的相互作用是最值得考虑的有效相互作用。

结论

我们的结果确定了MMP2激活过程中的一个新的药物靶点。因此,我们的分析将为设计更有效的癌症治疗药物策略提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ba6/3512525/555e6c9279eb/1742-4682-9-33-1.jpg

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