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Metabolic initiation of differentiation and secondary metabolism by Streptomyces griseus: significance of the stringent response (ppGpp) and GTP content in relation to A factor.

机译:链霉菌的分化和次级代谢的代谢启动:严格应答(ppGpp)和GTP含量与A因子相关的意义。

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摘要

I investigated the significance of the intracellular accumulation of guanosine 5'-diphosphate 3'-diphosphate (ppGpp) and of the coordinated decrease in the GTP pool for initiating morphological and physiological differentiation of Streptomyces griseus, a streptomycin-producing strain. In solid cultures, aerial mycelium formation was severely suppressed by the presence of excess nutrients. However, decoyinine, a specific inhibitor of GMP synthetase, enabled the cells to develop aerial mycelia in the suppressed cultures at concentrations which only partially inhibited growth. A factor (2S-isocapryloyl-3S-hydroxymethyl-gamma-butyrolactone) added exogenously had no such effect. Decoyinine was also effective in initiating the formation of submerged spores in liquid culture. The ability to produce streptomycin did not increase but decreased drastically on the addition of decoyinine. This sharp decrease in streptomycin production was accompanied by a decrease in intracellular accumulation of ppGpp. A relaxed (rel) mutant was found among 25 thiopeptin-resistant isolates which developed spontaneously. The rel mutant had a severely reduced ability to accumulate ppGpp during a nutritional shift-down and also during postexponential growth and showed a less extensive decrease in the GTP pool than that in the rel+ parental strain. The rel mutant failed to induce the enzymes amidinotransferase and streptomycin kinase, which are essential for the biosynthesis of streptomycin. The abilities to form aerial mycelia and submerged spores were still retained, but the amounts were less, and for both the onset of development was markedly delayed. The decreased ability to produced submerged spores was largely restored by the addition of decoyinine. This was accompanied by an extensive GTP pool decrease. The rel mutant produced A factor normally, indicating that synthesis of A factor is controlled neither by ppGpp nor by GTP. Conversely, a mutant defective in A-factor synthesis accumulated as much ppGpp as did the parental strain. It was concluded that morphological differentiation of S. griseus results from a decrease in the pool of GTP, whereas physiological differentiation results from a more direct function of the rel gene product (ppGpp). It is also suggested that A factor may render the cell sensitive to receive and respond to the specified signal molecules, presumably ppGpp (for physiological differentiation) or GTP (for morphological differentiation).
机译:我研究了鸟苷5'-二磷酸3'-二磷酸(ppGpp)的细胞内积累的意义以及GTP池中协调性下降对于启动链霉素生产菌株格里链霉菌的形态和生理分化的重要性。在固体培养物中,过量养分的存在会严重抑制气生菌丝的形成。然而,癸氨酸,一种GMP合成酶的特异抑制剂,使细胞能够在抑制的培养物中以仅部分抑制生长的浓度发展气生菌丝体。外源添加的因子(2S-异辛酰基-3S-羟甲基-γ-丁内酯)没有这种作用。 Decoyinine还可以有效地引发液体培养中沉没孢子的形成。添加辅嘌呤后,链霉素的生产能力没有增加,但急剧下降。链霉素产量的急剧下降伴随着ppGpp细胞内积累的减少。在自发形成的25个对硫肽素耐药的分离株中发现了一个轻松的(rel)突变体。 rel突变体在营养转移期间以及指数增长后的过程中积累ppGpp的能力大大降低,并且与rel +亲本菌株相比,GTP池的下降幅度较小。 rel突变体无法诱导酰胺链转移酶和链霉素激酶,这对于链霉素的生物合成至关重要。形成气生菌丝体和淹没孢子的能力仍然保留,但数量较少,而且两者的发育都明显延迟。产生的淹没孢子能力的下降在很大程度上通过添加辅嘌呤而得以恢复。这伴随着广泛的GTP池减少。 rel突变体正常产生A因子,表明A因子的合成不受ppGpp或GTP的控制。相反,在A因子合成中有缺陷的突变体积累的ppGpp与亲本菌株一样多。可以得出结论,灰葡萄链球菌的形态学分化是由于GTP库的减少而引起的,而生理学分化是由rel基因产物(ppGpp)的更直接的功能引起的。还建议A因子可能使细胞敏感于接收和响应指定的信号分子,大概是ppGpp(用于生理分化)或GTP(用于形态分化)。

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    Ochi, K;

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  • 年度 1987
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  • 原文格式 PDF
  • 正文语种 en
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