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Modular assembly of a protein nanotriangle using orthogonally interacting coiled coils

机译:使用正交相互作用的卷曲螺旋的蛋白质纳米颗粒的模块化组装

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摘要

Synthetic protein assemblies that adopt programmed shapes would support many applications in nanotechnology. We used a rational design approach that exploits the modularity of orthogonally interacting coiled coils to create a self-assembled protein nanotriangle. Coiled coils have frequently been used to construct nanoassemblies and materials, but rarely with successful prior specification of the resulting structure. We designed a heterotrimer from three pairs of heterodimeric coiled coils that mediate specific interactions while avoiding undesired crosstalk. Non-associating pairs of coiled-coil units were strategically fused to generate three chains that were predicted to preferentially form the heterotrimer, and a rational annealing proc ess led to the desired oligomer. Extensive biophysical characterization and modeling support the formation of a molecular triangle, which is a shape distinct from naturally occurring supramolecular nanostructures. Our approach can be extended to design more complex nanostructures using additional coiled-coil modules, other protein parts, or templated surfaces.
机译:采用程序化形状的合成蛋白质装配体将支持纳米技术中的许多应用。我们使用了一种合理的设计方法,该方法利用了正交相互作用的卷曲螺旋的模块性来创建自组装的蛋白质纳米三角形。盘绕线圈经常被用于构造纳米组件和材料,但是很少有成功的预先规范所形成的结构。我们从三对异二聚体螺旋线圈中设计了一个异源三聚体,这些异源三聚体在避免特定串扰的同时介导了特定的相互作用。策略性地融合了非缔合的盘绕线圈单元对,以生成预计优先形成异三聚体的三条链,并且合理的退火过程导致了所需的低聚物。广泛的生物物理表征和建模支持分子三角形的形成,该分子三角形的形状不同于天然存在的超分子纳米结构。我们的方法可以扩展为使用其他卷曲螺旋模块,其他蛋白质部分或模板化表面来设计更复杂的纳米结构。

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