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On the predictability of the orientation of protein domains joined by a spanning alpha-helical linker

机译:关于跨度α-螺旋接头连接的蛋白质结构域方向的可预测性

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摘要

Connecting proteins together in prescribed geometric arrangements is an important element in new areas of biomolecular design. In this study, we characterize the degree of three-dimensional orientational control that can be achieved when two protein domains that have alpha-helical termini are joined using an alpha-helical linker. A fusion between naturally oligomeric protein domains was designed in this fashion with the intent of creating a self-assembling 12-subunit tetrahedral protein cage. While the designed fusion protein failed to assemble into a tetrahedral cage in high yield, a series of crystal structures showed that the two fused components were indeed bridged by an intact alpha helix, although the fusion protein was distorted from the intended ideal configuration by bending of the helix, ranging from 7 to 35 degrees. That range of deviation in orientation creates challenges for designing large, perfectly symmetric protein assemblies, although it should offer useful outcomes for other less geometrically demanding applications in synthetic biology.
机译:以规定的几何排列将蛋白质连接在一起是生物分子设计新领域的重要元素。在这项研究中,我们表征了当使用α-螺旋接头连接两个具有α-螺旋末端的蛋白质结构域时可以实现的三维定向控制的程度。以这种方式设计了天然寡聚蛋白结构域之间的融合,目的是创建一个自组装的12亚基四面体蛋白笼。尽管设计的融合蛋白未能以高产量组装到四面体笼中,但一系列晶体结构显示这两个融合成分确实被完整的α螺旋桥接,尽管融合蛋白因弯曲而从预期的理想构型变形。螺旋线,范围从7到35度。方向上的偏差范围为设计大型,完美对称的蛋白质装配体带来了挑战,尽管它应该为合成生物学中其他对几何要求不高的应用提供有用的结果。

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