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Assessment of Synthesis Machinery of Two Antimicrobial Peptides from Paenibacillus alvei NP75

机译:Paenibacillus Alvei NP75的两种抗菌肽合成机械的评估

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Paenibacillus alvei NP75, a Gram-positive bacterium, produces two different antimicrobial peptides, paenibacillin N and P, which has potent antimicrobial activity against many clinical pathogens. The synthesis pattern of these antimicrobial peptides by P. alvei NP75 was studied extensively. The results were outstanding in a way that the paenibacillin N was synthesized irrespective of the growth of bacteria (non-ribosomal mediated), whereas paenibacillin P production was carried out by ribosomal mediated. In addition to the antimicrobial peptides, P. alvei NP75 also produces an immunogenic extracellular protease to defend itself from its own antimicrobial peptide, paenibacillin P. Furthermore, this immunogenic protease production was impaired by the addition of protease inhibitor, phenylmethylsulfonyl fluoride (PMSF). The sodium dodecyl sulfate (SDS) treated strain (mutant) failed to produce paenibacillin P, whereas the production of neither paenibacillin N nor the protease was affected by the plasmid curing. The plasmid curing studies that divulge the genes responsible for the synthesis of paenibacillin N and protease were found to be genome encoded, and paenibacillin P was plasmid encoded. We are reporting, first of its kind, the co-production of two different antimicrobial peptides from P. alvei NP75 through non-ribosomal and ribosomal pathways that could be used as effective antibiotics.
机译:Paenibacillus Alvei NP75,革兰氏阳性细菌,产生两种不同的抗菌肽,Paenibacillin N和P,其对许多临床病原体具有有效的抗微生物活性。通过P. Alvei NP75进行了这些抗微生物肽的合成模式。结果均以培养肽(非核糖体介导)的生长而合成的方式突出,而Paenibacillin P产生通过核糖体介导进行。除了抗微生物肽外,P. Alvei NP75还产生免疫原性细胞外蛋白酶,以防止自身的抗微生物肽,Paenibacillin P.此外,通过添加蛋白酶抑制剂,苯基甲基磺酰氟(PMSF)损害该免疫原性蛋白酶产生。十二烷基硫酸钠(SDS)处理的菌株(突变体)未能产生Paenibacillin P,而缺脂蛋白N也没有蛋白酶的产生受质粒固化的影响。发现质粒固化研究透过负责合成Paenibacillin N和蛋白酶的基因是组织的编码,并且Paenibacillin P被编码质粒。我们首先报道,首先,通过非核糖体和核糖体途径的来自P. Alvei NP75的两种不同抗微生物肽的共同生产。可以用作有效抗生素。

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