Stressler Timo, Ewert Jacob, Merz Michael, Funk Joshua, Claaßen Wolfgang, Lutz-Wahl Sabine, Schmidt Herbert, Kuhn Andreas, Fischer Lutz
Department of Biotechnology and Enzyme Science, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany.
Department of Food Microbiology and Hygiene, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany.
PLoS One. 2016 Mar 22;11(3):e0152139. doi: 10.1371/journal.pone.0152139. eCollection 2016.
Lactic acid bacteria (LAB) are auxotrophic for a number of amino acids. Thus, LAB have one of the strongest proteolytic systems to acquit their amino acid requirements. One of the intracellular exopeptidases present in LAB is the glutamyl (aspartyl) specific aminopeptidase (PepA; EC 3.4.11.7). Most of the PepA enzymes characterized yet, belonged to Lactococcus lactis sp., but no PepA from a Lactobacillus sp. has been characterized so far. In this study, we cloned a putative pepA gene from Lb. delbrueckii ssp. lactis DSM 20072 and characterized it after purification. For comparison, we also cloned, purified and characterized PepA from Lc. lactis ssp. lactis DSM 20481. Due to the low homology between both enzymes (30%), differences between the biochemical characteristics were very likely. This was confirmed, for example, by the more acidic optimum pH value of 6.0 for Lb-PepA compared to pH 8.0 for Lc-PepA. In addition, although the optimum temperature is quite similar for both enzymes (Lb-PepA: 60°C; Lc-PepA: 65°C), the temperature stability after three days, 20°C below the optimum temperature, was higher for Lb-PepA (60% residual activity) than for Lc-PepA (2% residual activity). EDTA inhibited both enzymes and the strongest activation was found for CoCl2, indicating that both enzymes are metallopeptidases. In contrast to Lc-PepA, disulfide bond-reducing agents such as dithiothreitol did not inhibit Lb-PepA. Finally, Lb-PepA was not product-inhibited by L-Glu, whereas Lc-PepA showed an inhibition.
乳酸菌(LAB)对多种氨基酸营养缺陷。因此,乳酸菌拥有最强的蛋白水解系统之一来满足其氨基酸需求。乳酸菌中存在的一种细胞内肽链外切酶是谷氨酰(天冬氨酰)特异性氨肽酶(PepA;EC 3.4.11.7)。目前已鉴定的大多数PepA酶属于乳酸乳球菌属,但迄今为止尚未鉴定出来自乳酸杆菌属的PepA。在本研究中,我们从德氏乳杆菌乳酸亚种DSM 20072中克隆了一个假定的pepA基因,并在纯化后对其进行了鉴定。为了进行比较,我们还从乳酸乳球菌乳酸亚种DSM 20481中克隆、纯化并鉴定了PepA。由于这两种酶之间的同源性较低(30%),它们的生化特性很可能存在差异。例如,Lb - PepA的最适pH值为更酸性的6.0,而Lc - PepA的最适pH值为8.0,这证实了这一点。此外,尽管两种酶的最适温度相当相似(Lb - PepA:60°C;Lc - PepA:65°C),但在比最适温度低20°C的温度下放置三天后,Lb - PepA的温度稳定性(残留活性60%)高于Lc - PepA(残留活性2%)。EDTA抑制这两种酶,并且发现CoCl2的激活作用最强,表明这两种酶都是金属肽酶。与Lc - PepA不同,二硫苏糖醇等二硫键还原剂不会抑制Lb - PepA。最后,Lb - PepA不受L - Glu的产物抑制,而Lc - PepA表现出抑制作用。