Laboratory of Structural Immunology, CAS Key Laboratory of Innate Immunity and Chronic Diseases, CAS Center for Excellence in Molecular Cell Sciences, School of Life Sciences and Medical Center, University of Science and Technology of China, Hefei 230027 China.
Laboratory of Immunology, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892 USA.
Sci Rep. 2017 Jan 23;7:40991. doi: 10.1038/srep40991.
Crystallization chaperones have been used to facilitate the crystallization of challenging proteins. Even though the maltose-binding protein (MBP) is one of the most commonly used crystallization chaperones, the design of optimal expression constructs for crystallization of MBP fusion proteins remains a challenge. To increase the success rate of MBP-facilitated crystallization, a series of expression vectors have been designed with either a short flexible linker or a set of rigid helical linkers. Seven death domain superfamily members were tested for crystallization with this set of vectors, six of which had never been crystallized before. All of the seven targets were crystallized, and their structures were determined using at least one of the vectors. Our successful crystallization of all of the targets demonstrates the validity of our approach and expands the arsenal of the crystallization chaperone toolkit, which may be applicable to crystallization of other difficult protein targets, as well as to other crystallization chaperones.
结晶伴侣已被用于促进具有挑战性的蛋白质的结晶。尽管麦芽糖结合蛋白(MBP)是最常用的结晶伴侣之一,但设计用于 MBP 融合蛋白结晶的最佳表达构建体仍然是一个挑战。为了提高 MBP 促进结晶的成功率,已经设计了一系列带有短柔性接头或一组刚性螺旋接头的表达载体。使用这组载体测试了七种死亡域超家族成员的结晶,其中六个以前从未结晶过。这七个靶标都被结晶了,并且使用至少一个载体确定了它们的结构。我们成功地对所有靶标进行结晶,证明了我们方法的有效性,并扩展了结晶伴侣工具包的武器库,该工具包可能适用于其他困难的蛋白质靶标以及其他结晶伴侣的结晶。