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1,2-氮杂硼烷的合成及其与T4溶菌酶突变体的蛋白质复合物的制备

Synthesis of 1,2-Azaborines and the Preparation of Their Protein Complexes with T4 Lysozyme Mutants.

作者信息

Lee Hyelee, Liu Shih-Yuan

机构信息

Department of Chemistry, Boston College;

Department of Chemistry, Boston College.

出版信息

J Vis Exp. 2017 Mar 25(121):55154. doi: 10.3791/55154.

Abstract

We describe a general synthesis of 1,2-azaborines using standard air-free techniques and protein complex preparation with T4 lysozyme mutants by vapor diffusion. Oxygen- and moisture-sensitive compounds are prepared and isolated under an inert atmosphere (N2) using either a vacuum gas manifold or a glove box. As an example of azaborine synthesis, we demonstrate the synthesis and purification of the volatile N-H-B-ethyl-1,2-azaborine by a five-step sequence involving distillation and column chromatography for the isolation of products. T4 lysozyme mutants L99A and L99A/M102Q are expressed with Escherichia coli RR1 strain. Standard protocols for chemical cell lysis followed by purification using carboxymethyl ion exchange column affords protein of sufficiently high purity for crystallization. Protein crystallization is performed in various concentrations of precipitant at different pH ranges using the hanging drop vapor diffusion method. Complex preparation with the small molecules is carried out by vapor diffusion method under an inert atmosphere. X-ray diffraction analysis of the crystal complex provides unambiguous structural evidence of binding interactions between the protein binding site and 1,2-azaborines.

摘要

我们描述了一种使用标准无空气技术合成1,2-氮杂硼烷的方法,以及通过气相扩散法制备与T4溶菌酶突变体的蛋白质复合物。对氧和湿气敏感的化合物在惰性气氛(N2)下使用真空气体歧管或手套箱进行制备和分离。作为氮杂硼烷合成的一个例子,我们展示了通过五步序列合成和纯化挥发性N-H-B-乙基-1,2-氮杂硼烷,该序列包括蒸馏和柱色谱法以分离产物。T4溶菌酶突变体L99A和L99A/M102Q用大肠杆菌RR1菌株表达。采用化学细胞裂解的标准方案,随后使用羧甲基离子交换柱进行纯化,可得到纯度足够高的蛋白质用于结晶。使用悬滴气相扩散法在不同pH范围内的各种沉淀剂浓度下进行蛋白质结晶。在惰性气氛下通过气相扩散法进行与小分子的复合物制备。晶体复合物的X射线衍射分析提供了蛋白质结合位点与1,2-氮杂硼烷之间结合相互作用的明确结构证据。

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