Plattner Stephan, Gruber Clemens, Altmann Friedrich, Bohlmann Holger
Division of Plant Protection, Department of Crop Sciences, University of Natural Resources and Life Sciences, Vienna, Austria.
Department of Chemistry, University of Natural Resources and Life Sciences, Vienna, Austria.
Protein Expr Purif. 2014 Sep;101:76-83. doi: 10.1016/j.pep.2014.05.014. Epub 2014 Jun 11.
The barley protease BAJ93208 belongs to the subtilase family of serine proteases. We have expressed BAJ93208 in the cytoplasm of the Escherichiacoli strain SHuffle C3030 using a rhamnose-inducible promoter. The expression construct included a (His)6-tag at the N-terminus and a strep-tag at the C-terminus. Western blot analysis revealed that the protein was processed at the N- and C-terminus. To exclude that this processing was due to contaminating E. coli proteases, a mutated BAJ93208 protease was constructed. This inactive mutant was not processed, demonstrating that the processing was an autocatalytic process. To define the exact cleavage sites mass spectrometry was used which detected four differently processed versions of the protease. At the N-terminus, the self-processing removed the internal inhibitor and an additional 19 amino acids. At the C-terminus there was a cleavage site after Ala(765) which also removed the strep-tag. This explained the inability to detect the purified (His)6-BAJ93208-strep protease with an anti-strep-tag antibody. Finally, an additional alanine was removed either at the N-terminus (Ala(119)) or at the C-terminus (Ala(764)).
大麦蛋白酶BAJ93208属于丝氨酸蛋白酶的枯草杆菌蛋白酶家族。我们使用鼠李糖诱导型启动子在大肠杆菌菌株SHuffle C3030的细胞质中表达了BAJ93208。表达构建体在N端包含一个(His)6标签,在C端包含一个链霉亲和素标签。蛋白质印迹分析表明该蛋白质在N端和C端都进行了加工。为了排除这种加工是由于污染的大肠杆菌蛋白酶所致,构建了一个突变的BAJ93208蛋白酶。这种无活性的突变体没有被加工,这表明这种加工是一个自催化过程。为了确定确切的切割位点,使用了质谱分析,检测到了该蛋白酶的四种不同加工形式。在N端,自我加工去除了内部抑制剂和另外19个氨基酸。在C端,在丙氨酸(765)之后有一个切割位点,这也去除了链霉亲和素标签。这解释了无法用抗链霉亲和素标签抗体检测纯化的(His)6-BAJ93208-链霉蛋白酶的原因。最后,在N端(丙氨酸(119))或C端(丙氨酸(764))额外去除了一个丙氨酸。