Yoon Jongchul, Kang Yup, Kim Kyunggon, Park Jungeun, Kim Youngsoo
Division of Molecular Genomic Medicine, College of Medicine, Seoul National University, Yongon-Dong, Seoul 110-799, Korea.
Protein Expr Purif. 2005 Nov;44(1):1-9. doi: 10.1016/j.pep.2005.04.020.
The mitotic checkpoint complex (MCC) ensures the fidelity of chromosomal segregation, by delaying the onset of anaphase until all sister chromatids have been properly attached to the mitotic spindle. In essence, this MCC-induced delay is achieved via the inhibition of the anaphase-promoting complex (APC). Among the components of the MCC, BubR1 plays two major roles in the functions of the mitotic checkpoint. First, BubR1 is able to inhibit APC activity, either by itself or as a component of the MCC, by sequestering a APC coactivator, known as Cdc20. Second, BubR1 activates mitotic checkpoint signaling cascades by binding to the centromere-associated protein E, a microtubule motor protein. Obtaining highly soluble BubR1 is a prerequisite for the study of its structure. BubR1 is a multi-domain protein, which includes a KEN box motif, a mad3-like region, a Bub3 binding domain, and a kinase domain. We obtained a soluble BubR1 construct using a three-step expression strategy. First, we obtained two constructs from BLAST sequence homology searches, both of which were expressed abundantly in the inclusion bodies. We then adjusted the lengths of the two constructs by secondary structure prediction, thereby generating partially soluble constructs. Third, we optimized the solubility of the two constructs by either chopping or adding a few residues at the C-terminus. Finally, we obtained a highly soluble BubR1 construct via the Escherichia coli expression system, which allowed for a yield of 10.8 mg/L culture. This report may provide insight into the design of highly soluble constructs of insoluble multi-domain proteins.
有丝分裂检查点复合物(MCC)通过延迟后期开始,直到所有姐妹染色单体都正确附着到有丝分裂纺锤体上,确保染色体分离的准确性。本质上,这种由MCC诱导的延迟是通过抑制后期促进复合物(APC)来实现的。在MCC的组分中,BubR1在有丝分裂检查点功能中发挥两个主要作用。首先,BubR1能够通过自身或作为MCC的组分抑制APC活性,其方式是隔离一种称为Cdc20的APC共激活因子。其次,BubR1通过与着丝粒相关蛋白E(一种微管运动蛋白)结合来激活有丝分裂检查点信号级联反应。获得高度可溶的BubR1是研究其结构的前提条件。BubR1是一种多结构域蛋白,包括一个KEN框基序、一个mad3样区域、一个Bub3结合结构域和一个激酶结构域。我们使用三步表达策略获得了一种可溶的BubR1构建体。首先,我们通过BLAST序列同源性搜索获得了两个构建体,它们在包涵体中均大量表达。然后,我们通过二级结构预测调整了这两个构建体的长度,从而产生了部分可溶的构建体。第三,我们通过在C末端切割或添加几个残基来优化这两个构建体的溶解性。最后,我们通过大肠杆菌表达系统获得了一种高度可溶的BubR1构建体,其产量为每升培养物10.8毫克。本报告可能为不溶性多结构域蛋白的高度可溶构建体的设计提供见解。