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Orthogonal Synthetic Zippersas Protein Scaffolds

机译:正交合成拉链作为蛋白质支架

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摘要

Protein scaffolds have proven useful for co-localization of enzymes, providing control over stoichiometry and leading to higher local enzyme concentrations, which have led to improved product formation. To broaden their usefulness, it is necessary to have a wide choice of building blocks to mix and match for scaffold generation. Ideally, the scaffold building blocks should function at any location within the scaffold and have high affinity interactions with their binding partners. We examined the utility of orthogonal synthetic coiled coils (zippers) as scaffold components. The orthogonal zippers are coiled coil domains that form heterodimers only with their specific partner and not with other zipper domains. Focusing on two orthogonal zipper pairs, we demonstrated that they are able to function on either end or in the middle of a multiblock assembly. Surface plasmon resonance was employed to assess the binding kinetics of zipper pairs placed at the start, middle, or end of a construct. Size-exclusion chromatography was used to demonstrate the ability of a scaffold with two zipper domains to bind their partnerssimultaneously. We then expanded the study to examine the bindingkinetics and cross-reactivities of three additional zipper pairs.By validating the affinities and specificities of synthetic zipperpairs, we demonstrated the potential for zipper domains to providean expanded library of scaffolding parts for tethering enzymes incomplex pathways for synthetic biology applications.
机译:已证明蛋白支架可用于酶的共定位,控制化学计量并导致较高的局部酶浓度,从而改善了产品的形成。为了扩大其用途,有必要选择多种构建基块进行混合和匹配以产生支架。理想地,支架构件应在支架内的任何位置起作用,并与其结合伴侣具有高亲和力相互作用。我们检查了正交合成线圈(拉链)作为脚手架组件的实用性。正交拉链是卷曲的线圈结构域,仅与它们的特定配偶体形成异二聚体,而与其他拉链结构域不形成异二聚体。着眼于两个正交拉链对,我们证明了它们能够在多块组件的两端或中间起作用。使用表面等离子体激元共振来评估置于构建体的开始,中间或末端的拉链对的结合动力学。使用尺寸排阻色谱法来证明具有两个拉链结构域的支架结合其伴侣的能力同时。然后,我们扩大了研究范围,以研究具有约束力的另外三个拉链对的动力学和交叉反应性。通过验证合成拉链的亲和力和特殊性对,我们展示了拉链域提供的潜力一个扩展的脚手架部件文库,用于束缚酶合成生物学应用的复杂途径。

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