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TinkerCell: modular CAD tool for synthetic biology

机译:TinkerCell:用于合成生物学的模块化CAD工具

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Background Synthetic biology brings together concepts and techniques from engineering and biology. In this field, computer-aided design (CAD) is necessary in order to bridge the gap between computational modeling and biological data. Using a CAD application, it would be possible to construct models using available biological "parts" and directly generate the DNA sequence that represents the model, thus increasing the efficiency of design and construction of synthetic networks. Results An application named TinkerCell has been developed in order to serve as a CAD tool for synthetic biology. TinkerCell is a visual modeling tool that supports a hierarchy of biological parts. Each part in this hierarchy consists of a set of attributes that define the part, such as sequence or rate constants. Models that are constructed using these parts can be analyzed using various third-party C and Python programs that are hosted by TinkerCell via an extensive C and Python application programming interface (API). TinkerCell supports the notion of a module, which are networks with interfaces. Such modules can be connected to each other, forming larger modular networks. TinkerCell is a free and open-source project under the Berkeley Software Distribution license. Downloads, documentation, and tutorials are available at http://www.tinkercell.com webcite. Conclusion An ideal CAD application for engineering biological systems would provide features such as: building and simulating networks, analyzing robustness of networks, and searching databases for components that meet the design criteria. At the current state of synthetic biology, there are no established methods for measuring robustness or identifying components that fit a design. The same is true for databases of biological parts. TinkerCell's flexible modeling framework allows it to cope with changes in the field. Such changes may involve the way parts are characterized or the way synthetic networks are modeled and analyzed computationally. TinkerCell can readily accept third-party algorithms, allowing it to serve as a platform for testing different methods relevant to synthetic biology.
机译:背景技术合成生物学汇集了工程学和生物学的概念和技术。在这个领域,计算机辅助设计(CAD)是必需的,以便弥合计算建模和生物学数据之间的差距。使用CAD应用程序,可以使用可用的生物学“部分”构建模型并直接生成代表模型的DNA序列,从而提高合成网络的设计和构建效率。结果开发了名为TinkerCell的应用程序,以用作合成生物学的CAD工具。 TinkerCell是一种视觉建模工具,支持生物零件的层次结构。此层次结构中的每个部分都由定义该部分的一组属性组成,例如序列或速率常数。可以使用TinkerCell通过广泛的C和Python应用程序编程接口(API)托管的各种第三方C和Python程序来分析使用这些部分构建的模型。 TinkerCell支持模块的概念,即具有接口的网络。这样的模块可以相互连接,形成更大的模块化网络。 TinkerCell是根据Berkeley Software Distribution许可获得的免费开源项目。下载,文档和教程可在http://www.tinkercell.com网站上找到。结论对于工程生物系统而言,理想的CAD应用程序应具有以下功能:构建和模拟网络,分析网络的健壮性以及在数据库中搜索符合设计标准的组件。在合成生物学的当前状态下,尚没有成熟的方法来测量鲁棒性或识别适合设计的组件。生物部分的数据库也是如此。 TinkerCell的灵活建模框架使其能够应对现场的变化。这种变化可能涉及零件的表征方式或合成网络的建模和计算分析方式。 TinkerCell可以轻松接受第三方算法,从而使其可以用作测试与合成生物学相关的不同方法的平台。

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