Anandaraj Balaiah, Vellaichamy Adaikkalam, Kachman Maureen, Selvamanikandan Athinarayanan, Pegu Shyamanta, Murugan Vadivel
Genetic Engineering Unit, Centre for Biotechnology, Anna University, Sardar Patel Road, Guindy, Chennai 600 025, India.
Biochem Biophys Res Commun. 2009 Feb 6;379(2):179-85. doi: 10.1016/j.bbrc.2008.12.007. Epub 2008 Dec 13.
Two new peptide antibiotics were secreted by a Gram-positive bacterial strain isolated from fermented tomato fruit. Based on its 99% 16S rDNA sequence similarity with Paenibacillus alvei, the isolate was designated as P. alvei NP75. Among these two peptides, one is active against Gram-positive pathogens while the other against Gram-negative pathogens; thus these peptides were named as paenibacillin P and paenibacillin N, respectively. After the purification of those peptide antibiotics from the cell free culture supernatant by RP-HPLC, they were analyzed for their temperature sensitivity and susceptibility to proteases. Higher-temperature tolerant paenibacillin N was easily degraded by proteinase K, while the temperature sensitive paenibacillin P was not affected by any of the proteases used in this study other than a specific protease that was secreted by the same NP75 strain. Mass-spectrometry analysis of the above peptide antibiotics further confirmed their distinction among the known peptide antibiotics. We are reporting first of its kind the co-production of two different new peptide antibiotics from a single bacterial isolate of P. alvei strain.
从发酵番茄果实中分离出的一株革兰氏阳性细菌分泌出两种新型肽抗生素。基于其与蜂房芽孢杆菌99%的16S rDNA序列相似性,该分离株被命名为蜂房芽孢杆菌NP75。在这两种肽中,一种对革兰氏阳性病原体有活性,另一种对革兰氏阴性病原体有活性;因此,这些肽分别被命名为蜂房芽孢杆菌素P和蜂房芽孢杆菌素N。通过反相高效液相色谱法从无细胞培养上清液中纯化出这些肽抗生素后,对它们的温度敏感性和对蛋白酶的敏感性进行了分析。耐高温的蜂房芽孢杆菌素N很容易被蛋白酶K降解,而对温度敏感的蜂房芽孢杆菌素P除了同一NP75菌株分泌的一种特定蛋白酶外,不受本研究中使用的任何蛋白酶的影响。对上述肽抗生素的质谱分析进一步证实了它们与已知肽抗生素的差异。我们首次报道了从蜂房芽孢杆菌菌株的单个细菌分离物中共产生两种不同的新型肽抗生素。