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使用化学交联剂稳定的融合α螺旋连接两种蛋白质。

Connecting two proteins using a fusion alpha helix stabilized by a chemical cross linker.

作者信息

Jeong Woo Hyeon, Lee Haerim, Song Dong Hyun, Eom Jae-Hoon, Kim Sun Chang, Lee Hee-Seung, Lee Hayyoung, Lee Jie-Oh

机构信息

Department of Chemistry, KAIST, Daejeon 34141, Korea.

Department of Biological Sciences, KAIST, Daejeon 34141, Korea.

出版信息

Nat Commun. 2016 Mar 16;7:11031. doi: 10.1038/ncomms11031.

Abstract

Building a sophisticated protein nano-assembly requires a method for linking protein components in a predictable and stable structure. Most of the cross linkers available have flexible spacers. Because of this, the linked hybrids have significant structural flexibility and the relative structure between their two components is largely unpredictable. Here we describe a method of connecting two proteins via a 'fusion α helix' formed by joining two pre-existing helices into a single extended helix. Because simple ligation of two helices does not guarantee the formation of a continuous helix, we used EY-CBS, a synthetic cross linker that has been shown to react selectively with cysteines in α-helices, to stabilize the connecting helix. Formation and stabilization of the fusion helix was confirmed by determining the crystal structures of the fusion proteins with and without bound EY-CBS. Our method should be widely applicable for linking protein building blocks to generate predictable structures.

摘要

构建复杂的蛋白质纳米组装体需要一种方法,以可预测且稳定的结构连接蛋白质组件。现有的大多数交联剂都有柔性间隔区。因此,连接的杂合体具有显著的结构灵活性,其两个组件之间的相对结构在很大程度上是不可预测的。在此,我们描述了一种通过“融合α螺旋”连接两种蛋白质的方法,该融合α螺旋是由将两个预先存在的螺旋连接成一个单一的延伸螺旋形成的。由于两个螺旋的简单连接并不能保证形成连续的螺旋,我们使用了EY-CBS,一种已被证明能与α螺旋中的半胱氨酸选择性反应的合成交联剂,来稳定连接螺旋。通过测定结合和未结合EY-CBS的融合蛋白的晶体结构,证实了融合螺旋的形成和稳定性。我们的方法应该广泛适用于连接蛋白质构建模块以生成可预测的结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/748e/4799363/acb2140098bf/ncomms11031-f1.jpg

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