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由标准生物砖部件融合产生的启动子元件。

Promoter element arising from the fusion of standard BioBrick parts.

作者信息

Yao Andrew I, Fenton Timothy A, Owsley Keegan, Seitzer Phillip, Larsen David J, Sit Holly, Lau Jennifer, Nair Arjun, Tantiongloc Justin, Tagkopoulos Ilias, Facciotti Marc T

机构信息

Department of Biomedical Engineering, University of California Davis, One Shields Avenue, Davis, CA 95616, USA.

出版信息

ACS Synth Biol. 2013 Feb 15;2(2):111-20. doi: 10.1021/sb300114d. Epub 2013 Jan 11.

Abstract

We characterize the appearance of a constitutive promoter element in the commonly used cI repressor-encoding BioBrick BBa_C0051. We have termed this promoter element pKAT. Full pKAT activity is created by the ordered assembly of sequences in BBa_C0051 downstream of the cI gene encoding the 11 amino acid LVA proteolytic degradation tag, a BioBrick standard double-TAA stop codon, a genetic barcode, and part of the RFC10 SpeI-XbaI BioBrick scar. Placing BBa_C0051 or other pKAT containing parts upstream of other functional RNA coding elements in a polycistronic context may therefore lead to the unintended transcription of the downstream elements. The frequent reuse of pKAT or pKAT-like containing basic parts in the Registry of Biological Parts has resulted in approximately 5% of registry parts encoding at least one instance of a predicted pKAT promoter located directly upstream of a ribosome binding site and ATG start codon. This example highlights that even seemingly simple modifications of a part's sequence (in this case addition of degradation tags and barcodes) may be sufficient to unexpectedly change the contextual behavior of a part and reaffirms the inherent challenge in carefully characterizing the behavior of standardized biological parts across a broad range of reasonable use scenarios.

摘要

我们对常用的编码cI阻遏蛋白的生物砖BBa_C0051中组成型启动子元件的外观进行了表征。我们将此启动子元件命名为pKAT。完整的pKAT活性是由BBa_C0051中编码11个氨基酸的LVA蛋白水解降解标签的cI基因下游的序列有序组装、一个生物砖标准双TAA终止密码子、一个遗传条形码以及RFC10 SpeI-XbaI生物砖疤痕的一部分产生的。因此,在多顺反子环境中,将BBa_C0051或其他包含pKAT的部件置于其他功能性RNA编码元件的上游可能会导致下游元件的意外转录。在生物部件注册中心中频繁重复使用包含pKAT或类pKAT的基本部件,已导致约5%的注册部件编码至少一个预测的pKAT启动子实例,该启动子直接位于核糖体结合位点和ATG起始密码子的上游。这个例子突出表明,即使是对部件序列看似简单的修改(在这种情况下是添加降解标签和条形码),也可能足以意外改变部件的上下文行为,并再次确认了在广泛合理的使用场景中仔细表征标准化生物部件行为所面临的固有挑战。

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