首页> 美国卫生研究院文献>Journal of Bacteriology >Role of glutamine synthetase adenylylation in the self-protection of Pseudomonas syringae subsp. tabaci from its toxin tabtoxinine-beta-lactam.
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Role of glutamine synthetase adenylylation in the self-protection of Pseudomonas syringae subsp. tabaci from its toxin tabtoxinine-beta-lactam.

机译:谷氨酰胺合成酶腺苷酸化在丁香假单胞菌亚种的自我保护中的作用。 塔巴奇来自其毒素塔波毒素-β-内酰胺。

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摘要

Selected pathovars of Pseudomonas syringae produce an extracellular phytotoxin, tabtoxinine-beta-lactam, that irreversibly inhibits its known physiological target, glutamine synthetase (GS). Pseudomonas syringae subsp. "tabaci" retains significant amounts of glutamine synthetase activity during toxin production in culture. As part of our investigation of the self-protection mechanism(s) used by these pathovars, we have determined that GS becomes adenylylated after toxin production is initiated and that the serine released from the zinc-activated hydrolysis of tabtoxin is a factor in the initiation of this adenylylation. The adenylylation state of this GS was estimated to range from E5.0-7.5. The irreversible inactivation by tabtoxinine-beta-lactam of unadenylylated and adenylylated glutamine synthetase purified from P. syringae subsp. "tabaci" was investigated. Adenylylated GS was inactivated by tabtoxinine-beta-lactam at a slower rate than was unadenylylated enzyme. Adenylylated GS (E7.5-10.5) was significantly protected from this inactivation in the presence of the enzyme effectors, AMP, Ala, Gly, His, and Ser. Thus, the combination of the adenylylation of GS after toxin production is initiated and the presence of the enzyme effectors in vivo could provide part of the self-protection mechanism used by subsp. "tabaci".
机译:丁香假单胞菌的特定病原体产生细胞外植物毒素,塔波毒素-β-内酰胺,其不可逆地抑制其已知的生理靶标谷氨酰胺合成酶(GS)。丁香假单胞菌亚种。 “ tabaci”在培养物中产生毒素期间保留了大量的谷氨酰胺合成酶活性。作为我们对这些病原菌使用的自我保护机制的研究的一部分,我们确定了开始产生毒素后GS会被腺苷酸化,并且从锌激活的毒素分解水解中释放的丝氨酸是引发过程的一个因素。的醛化反应该GS的腺苷酸化状态估计为E5.0-7.5。从丁香假单胞菌亚种纯化的未腺苷酸化和腺苷酰化的谷氨酰胺合成酶的塔宾毒素-β-内酰胺不可逆失活。对“ tabaci”进行了调查。腺苷酸化的GS被毒毒素β-内酰胺失活的速率比非腺苷酸化的酶慢。在酶效应物AMP,Ala,Gly,His和Ser的存在下,腺苷酸化的GS(E7.5-10.5)得到了显着的保护,可防止这种失活。因此,开始产生毒素后GS的腺苷酸化的结合和体内酶效应物的存在可提供亚种使用的部分自我保护机制。 “塔巴奇”。

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