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Streptomyces roseoverticillatus produces two different poly(amino acid)s: lariat-shaped γ-poly(l-glutamic acid) and ?-poly(l-lysine)

机译:Streptomyces roseverticillatus产生两种不同的聚(氨基酸):Lariat形γ-poly(L-谷氨酸)和α-poly(l-赖氨酸)

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The poly(amino acid)s γ-poly(dl-glutamic acid) (gPGA) and ?-poly(l-lysine) (ePL) are known to be natural linear poly(amino acid)s secreted by Bacillus spp. and Streptomyces spp., respectively. In this study, a Streptomyces strain producing both ePL and gPGA was identified. Mass spectrometry and other analyses revealed that the gPGA is a mixture of oligomers consisting of 10–13 l-glutamic acid residues linked by isopeptide bonds. In contrast to the known Bacillus gPGA, the glutamic acid oligomers have a cyclodehydrated structure in each molecule. We previously reported that the ePL molecules secreted by the same Streptomyces strain disperse only slightly in an agar culture plate, as though they were larger molecules. This phenomenon is explicable by the observed polyion complex formation between the glutamic acid oligomers and ePLs. The glutamic acid oligomers control the ePL's dispersion, which would also affect the spatial distribution of the ePL's antimicrobial activity. Therefore, gene clustering or common use of the gene was presumed for biosynthesis of the two poly(amino acid)s. However, no gene for biosynthesis of the glutamic acid oligomer was found in the neighbouring region of that for ePL biosynthesis, and the glutamic acid oligomer was produced by a mutant in which the ePL biosynthetic gene was inactivated by gene disruption.
机译:已知聚(氨基酸)Sγ-poly(Dl-谷氨酸)(GPGA)和α-poly(L-赖氨酸)(EPL)是由Bacillus SPP分泌的天然线性聚(氨基酸)S.和链霉菌spp。分别。在该研究中,鉴定了产生EPL和GPGA的链霉菌菌株。质谱和其他分析显示,GPGA是由Isopeptide键连接的10-13升谷氨酸残基组成的低聚物的混合物。与已知的芽孢杆菌GPGA相比,谷氨酸低聚物在每个分子中具有环氢化物结构。我们之前报道的是,通过相同的链霉菌分泌的EPL分子在琼脂培养板中仅分散在琼脂培养板中,好像它们是较大的分子。这种现象是通过观察到的谷氨酸低聚物和EPL之间的聚硫末复合物形成来解析。谷氨酸低聚物控制EPL的分散,这也会影响EPL的抗微生物活性的空间分布。因此,假定基因聚类或基因的常用使用两种聚(氨基酸)的生物合成。然而,在用于EPL生物合成的相邻区域中发现了谷氨酸低聚物的生物合成的生物合成基因,并且谷氨酸低聚物由突变体产生,其中通过基因破坏灭活EPL生物合成基因。

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