首页> 美国卫生研究院文献>BioMed Research International >Secretion of Biologically Active Heterologous Oxalate Decarboxylase (OxdC) in Lactobacillus plantarum WCFS1 Using Homologous Signal Peptides
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Secretion of Biologically Active Heterologous Oxalate Decarboxylase (OxdC) in Lactobacillus plantarum WCFS1 Using Homologous Signal Peptides

机译:使用同源信号肽在植物乳杆菌WCFS1中分泌生物活性异草酸脱羧酶(OxdC)

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摘要

Current treatment options for patients with hyperoxaluria and calcium oxalate stone diseases are limited and do not always lead to sufficient reduction in urinary oxalate excretion. Oxalate degrading bacteria have been suggested for degrading intestinal oxalate for the prevention of calcium oxalate stone. Here, we reported a recombinant Lactobacillus plantarum WCFS1 (L. plantarum) secreting heterologous oxalate decarboxylase (OxdC) that may provide possible therapeutic approach by degrading intestinal oxalate. The results showed secretion and functional expression of OxdC protein in L. plantarum driven by signal peptides Lp_0373 and Lp_3050. Supernatant of the recombinant strain containing pLp_0373sOxdC and pLp_3050sOxdC showed OxdC activity of 0.05 U/mg and 0.02 U/mg protein, while the purified OxdC from the supernatant showed specific activity of 18.3 U/mg and 17.5 U/mg protein, respectively. The concentration of OxdC protein in the supernatant was 8–12 μg/mL. The recombinant strain showed up to 50% oxalate reduction in medium containing 10 mM oxalate. In conclusion, the recombinant L. plantarum harboring pLp_0373sOxdC and pLp_3050sOxdC can express and secrete functional OxdC and degrade oxalate up to 50% and 30%, respectively.
机译:对于患有高草酸尿症和草酸钙结石疾病的患者,当前的治疗选择是有限的,并不总是能够导致尿草酸排泄的充分减少。草酸盐降解细菌已被建议用于降解肠草酸盐以预防草酸钙结石。在这里,我们报道了一种重组植物乳杆菌WCFS1(L. plantarum),其分泌异源草酸脱羧酶(OxdC),可能通过降解肠草酸酯提供可能的治疗方法。结果显示,信号肽Lp_0373和Lp_3050驱动OxdC蛋白在植物乳杆菌中的分泌和功能表达。含有pLp_0373sOxdC和pLp_3050sOxdC的重组菌株的上清液显示OxdC活性为0.05 U / mg和0.02 andU / mg蛋白,而从上清液中纯化的OxdC的比活性分别为18.3 U / mg和17.5 U / mg蛋白。上清液中OxdC蛋白的浓度为8–12μg / mL。重组菌株在含10 mM草酸盐的培养基中草酸盐减少高达50%。总之,带有pLp_0373sOxdC和pLp_3050sOxdC的重组植物乳杆菌可以表达和分泌功能性OxdC,并分别降解草酸盐达50%和30%。

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