首页> 美国卫生研究院文献>Journal of Bacteriology >Stringent response of Bacillus stearothermophilus: evidence for the existence of two distinct guanosine 35-polyphosphate synthetases.
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Stringent response of Bacillus stearothermophilus: evidence for the existence of two distinct guanosine 35-polyphosphate synthetases.

机译:嗜热脂肪芽孢杆菌的严格反应:存在两种不同的鸟苷35-聚磷酸盐合成酶的证据。

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摘要

Bacillus stearothermophilus reacted to pseudomonic acid-induced inhibition of isoleucine-transfer ribonucleic acid (RNA) acylation and to energy downshift caused by alpha-methylglucoside addition with accumulation of guanosine 3',5'-polyphosphates [(p)ppGpp] and restriction of RNA synthesis. In vitro studies indicated that (p)ppGpp was synthesized by two different enzymes. One enzyme, (p)ppGpp synthetase I, was present in the ribosomal fraction, required the addition of a ribosome-messenger RNA-transfer RNA complex for activation, and was inhibited by tetracycline and thiostrepton. It is suggested that (p)ppGpp synthetase I is comparable to the relA gene product from Escherichia coli and is responsible for (p)ppGpp accumulation during amino acid starvation. The other enzyme, (p)ppGpp synthetase II, was found in the high-speed supernatant fraction (S100). It functioned independently of ribosomes, transfer RNA, and messenger RNA and was not inhibited by the above-mentioned antibiotics. (p)ppGpp synthetase II is thought to be responsible for (p)ppGpp accumulation during carbon source downshift. The two enzymes differ in their Km values for adenosine triphosphate (ATP):2mM ATP for synthetase I and 0.05 mM ATP for synthetase II. They also have different molecular weights: apparent Mr of 86,000 (+/- 5,000) for synthetase I and 74,000 (+/- 5,000) for synthetase II.
机译:嗜热脂肪芽孢杆菌对假单酸诱导的对异亮氨酸转移核糖核酸(RNA)酰化的抑制作用以及由α-甲基葡糖苷添加引起的能量下降,以及鸟苷3',5'-聚磷酸盐[[p] ppGpp]的积累和对RNA的限制合成。体外研究表明(p)ppGpp是由两种不同的酶合成的。核糖体级分中存在一种酶(p)ppGpp合成酶I,需要添加核糖体信使RNA转移RNA复合物才能激活,并被四环素和硫代链霉菌素抑制。建议(p)ppGpp合成酶I与大肠杆菌的relA基因产物相当,并负责氨基酸饥饿期间的(p)ppGpp积累。在高速上清液中发现了另一种酶(p)ppGpp合成酶II(S100)。它的功能独立于核糖体,转移RNA和信使RNA,并且不受上述抗生素的抑制。 (p)ppGpp合成酶II被认为是碳源降档期间(p)ppGpp积累的原因。两种酶的三磷酸腺苷(ATP)Km值不同:合成酶I的Km值为2mM ATP,合成酶II的Km值为0.05 mM ATP。它们也具有不同的分子量:合成酶I的表观先生为86,000(+/- 5,000),合成酶II的表观先生为74,000(+/- 5,000)。

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