Department of Microbiology and Parasitology, University of Santiago de Compostela, Santiago de Compostela, Spain.
Mol Biotechnol. 2013 Jun;54(2):304-11. doi: 10.1007/s12033-012-9573-0.
The minor extracellular protease (Epr) is secreted into the culture medium during Bacillus licheniformis, strain USC13, stationary phase of growth. Whereas, B. subtilis Epr has been reported to be involved in swarming; the B. licheniformis protease is also involved in milk-clotting as shown by the curd forming ability of culture broths expressing this protein. The objectives of this study are the characterization of recombinant B. licheniformis Epr (minor extracellular protease) and the determination of its calcium-dependent activation process. In this work, we have cloned and expressed B. licheniformis Epr in Escherichia coli. We were also able to construct a tridimensional model for Epr based on its homology to Thermococcus kodakarensis pro-tk-subtilisin 2e1p, fervidolysin from Fervidobacterium pennivorans 1rv6, and B. lentus 1GCI subtilisin. Recombinant Epr was accumulated into inclusion bodies; after protein renaturation, Epr undergoes an in vitro calcium-dependent activation, similar to that described for tk protease. The recombinant Epr is capable of producing milk curds with the same clotting activity previously described for the native B. licheniformis Epr enzyme although further rheological and industrial studies should be carried out to confirm its real applicability. This work represents for the first time that Epr may be successfully expressed in a non-bacilli microorganism.
在芽孢杆菌licheniformis 菌株 USC13 的静止生长期,少量细胞外蛋白酶(Epr)分泌到培养基中。而枯草芽孢杆菌 Epr 已被报道参与了群集运动;如通过表达该蛋白的培养物的凝乳能力所示,芽孢杆菌licheniformis 蛋白酶也参与了牛奶凝结。本研究的目的是对重组芽孢杆菌licheniformis Epr(少量细胞外蛋白酶)进行表征,并确定其钙依赖性激活过程。在这项工作中,我们已经在大肠杆菌中克隆和表达了芽孢杆菌licheniformis Epr。我们还能够基于其与Thermococcus kodakarensis pro-tk-subtilisin 2e1p、来自 Fervidobacterium pennivorans 1rv6 的 fervidolysin 和 B. lentus 1GCI subtilisin 的同源性,构建 Epr 的三维模型。重组 Epr 积累为包涵体;在蛋白质复性后,Epr 经历体外钙依赖性激活,类似于 tk 蛋白酶所描述的那样。重组 Epr 能够产生与天然芽孢杆菌licheniformis Epr 酶相同的凝乳活性的牛奶凝乳,尽管应进行进一步的流变学和工业研究来确认其实际适用性。这项工作首次表明,Epr 可以在非芽孢杆菌微生物中成功表达。