首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Inorganic polyphosphate in Bacillus cereus: motility, biofilm formation, and sporulation.
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Inorganic polyphosphate in Bacillus cereus: motility, biofilm formation, and sporulation.

机译:蜡状芽孢杆菌中的无机多磷酸盐:运动性,生物膜形成和孢子形成。

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摘要

Chains of inorganic polyphosphate (poly-P) with hundreds of P(i) residues linked by phosphoanhydride bonds, as in ATP, are found in every bacterial, fungal, plant, and animal cell, in which they perform various functions. In the spore-forming Bacillus cereus, we have identified three principal enzymes and genes involved in the metabolism of poly-P, namely, (i) poly-P kinase (PPK), which synthesizes poly-P reversibly from ATP, (ii) exopolyphosphatase (PPX), which hydrolyzes poly-P to P(i), and (iii) poly-P/AMP phosphotransferase (PAP), which uses poly-P as a donor to convert AMP to ADP, reversibly. In the null mutant of ppk, poly-P levels are reduced to <5% of the WT; in the ppx mutant, the PPK activity is elevated 10-fold, and the accumulation of poly-P is elevated approximately 1,000-fold. All of the null mutants of ppk, ppx, and pap showed defects in motility and biofilm formation, but sporulation efficiency was impaired only in the ppx mutant. These enzymes and genes in B. cereus are nearly identical to those in the very closely related pathogen Bacillus anthracis, and, thus, they may provide attractive targets for the treatment of anthrax.
机译:像在ATP中一样,在每个细菌,真菌,植物和动物细胞中都可以找到具有数百个通过磷酸酐键连接的P(i)残基的无机多磷酸盐(poly-P)链,它们在其中执行各种功能。在形成芽孢的蜡状芽孢杆菌中,我们鉴定了参与poly-P代谢的三种主要酶和基因,即(i)poly-P激酶(PPK),它可从ATP可逆地合成poly-P,(ii)外聚磷酸酶(PPX)可逆地将poly-P水解为P(i),(iii)poly-P / AMP磷酸转移酶(PAP)使用poly-P作为供体将AMP转化为ADP。在ppk的无效突变体中,poly-P水平降低至WT的5%以下;在ppx突变体中,PPK活性提高了10倍,而poly-P的积累提高了约1,000倍。 ppk,ppx和pap的所有无效突变体均显示出运动性和生物膜形成缺陷,但仅在ppx突变体中降低了孢子形成效率。蜡状芽孢杆菌中的这些酶和基因与密切相关的病原体炭疽杆菌中的酶和基因几乎相同,因此,它们可能为炭疽的治疗提供有吸引力的靶标。

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