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Tetanus Toxin Synthesis is Under the Control of A Complex Network of Regulatory Genes in Clostridium tetani

机译:破伤风毒素合成是在Tetani梭菌中的调控基因复杂网络的控制下

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摘要

Clostridium tetani produces a potent neurotoxin, the tetanus toxin (TeNT), which is responsible for an often-fatal neurological disease (tetanus) characterized by spastic paralysis. Prevention is efficiently acquired by vaccination with the TeNT toxoid, which is obtained by C. tetani fermentation and subsequent purification and chemical inactivation. C. tetani synthesizes TeNT in a regulated manner. Indeed, the TeNT gene (tent) is mainly expressed in the late exponential and early stationary growth phases. The gene tetR (tetanus regulatory gene), located immediately upstream of tent, encodes an alternative sigma factor which was previously identified as a positive regulator of tent. In addition, the genome of C. tetani encodes more than 127 putative regulators, including 30 two-component systems (TCSs). Here, we investigated the impact of 12 regulators on TeNT synthesis which were selected based on their homology with related regulatory elements involved in toxin production in other clostridial species. Among nine TCSs tested, three of them impact TeNT production, including two positive regulators that indirectly stimulate tent and tetR transcription. One negative regulator was identified that interacts with both tent and tetR promoters. Two other TCSs showed a moderate effect: one binds to the tent promoter and weakly increases the extracellular TeNT level, and another one has a weak inverse effect. In addition, CodY (control of dciA (decoyinine induced operon) Y) but not Spo0A (sporulation stage 0) or the DNA repair protein Mfd (mutation frequency decline) positively controls TeNT synthesis by interacting with the tent promoter. Moreover, we found that inorganic phosphate and carbonate are among the environmental factors that control TeNT production. Our data show that TeNT synthesis is under the control of a complex network of regulators that are largely distinct from those involved in the control of toxin production in Clostridium botulinum or Clostridium difficile.
机译:Tetani Clostridium Tetani产生强大的神经毒素,Tetanus毒素(帐篷),其负责经常致命的神经疾病(破伤风),其特征在于痉挛性麻痹。通过用C.Tetani发酵和随后的纯化和化学灭活而获得预防术通过疫苗接种而有效地获得。 C. Tetani以规范的方式合成帐篷。实际上,帐篷基因(帐篷)主要表达于晚期指数和早期的静止生长阶段。位于帐篷上游的基因十四(破伤风调节基因)编码替代的Sigma因子,其先前被鉴定为帐篷的正调节剂。此外,C.Tetani的基因组编码了超过127个推定调节剂,包括30个双组分系统(TCSS)。在这里,我们研究了12个调节剂对帐篷合成的影响,这些患者是根据其同源性与其他梭菌生产中毒素产生的相关调节元件选择的。在九个TCS中测试,其中三种撞击帐篷生产,包括间接刺激帐篷和曲转录的两种阳性调节剂。鉴定了一种负调节剂,其与两个帐篷和四促促进剂相互作用。另外两种TCS显示出中度效果:一个与帐篷启动子结合,弱均增加细胞外帐篷水平,另一个效果较弱。此外,Cody(DCIA(DCIA)的对照(汤氨基氨基诱导的操纵子)Y)而不是Spo0a(孢子阶段0)或DNA修复蛋白MFD(突变频率下降)通过与帐篷启动子相互作用来呈正极控制帐篷合成。此外,我们发现无机磷酸盐和碳酸盐是控制帐篷生产的环境因素之一。我们的数据表明,帐篷合成是在控制梭菌肉毒杆菌或梭菌梭菌中涉及毒素生产中毒素生产中的那些较大的调节器网络的控制。

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