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二肌醇磷酸酯和新型尿苷二磷酸糖在超嗜热菌嗜热栖热放线菌中积累。

Di-myo-inositol phosphate and novel UDP-sugars accumulate in the extreme hyperthermophile Pyrolobus fumarii.

作者信息

Gonçalves Luís G, Lamosa Pedro, Huber Robert, Santos Helena

机构信息

Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Rua da Quinta Grande 6, Apartado 127, 2780-156 Oeiras, Portugal.

出版信息

Extremophiles. 2008 May;12(3):383-9. doi: 10.1007/s00792-008-0143-0. Epub 2008 Feb 20.

Abstract

The archaeon Pyrolobus fumarii, one of the most extreme members of hyperthermophiles known thus far, is able to grow at temperatures up to 113 degrees C. Over a decade after the description of this organism our knowledge about the structures and strategies underlying its remarkable thermal resistance remains incipient. The accumulation of a restricted number of charged organic solutes is a common response to heat stress in hyperthermophilic organisms and accordingly their role in thermoprotection has been often postulated. In this work, the organic solute pool of P. fumarii was characterized using 1H, 13C, and 31P NMR. Di-myo-inositol phosphate was the major solute (0.21 micromol/mg protein), reinforcing the correlation between the occurrence of this solute and hyperthermophily; in addition, UDP-sugars (total concentration 0.11 micromol/mg protein) were present. The structures of the two major UDP-sugars were identified as UDP-alpha-GlcNAc3NAc and UDP-alpha-GlcNAc3NAc-(4<--1)-beta-GlcpNAc3NAc. Interestingly, the latter compound appears to be derived from the first one by addition of a 2,3-N-acetylglucoronic acid unit, suggesting that these UDP-sugars are intermediates of an N-linked glycosylation pathway. To our knowledge the UDP-disaccharide has not been reported elsewhere. The physiological roles of these organic solutes are discussed.

摘要

嗜热栖热菌是迄今为止已知的最极端的嗜热微生物之一,能够在高达113摄氏度的温度下生长。在描述这种生物体十多年后,我们对其卓越耐热性背后的结构和策略的了解仍然有限。积累数量有限的带电荷有机溶质是嗜热微生物对热应激的常见反应,因此人们常常假定它们在热保护中发挥作用。在这项研究中,利用1H、13C和31P核磁共振对嗜热栖热菌的有机溶质库进行了表征。磷酸二肌醇是主要溶质(0.21微摩尔/毫克蛋白质),这进一步证明了这种溶质的存在与嗜热性之间的关联;此外,还存在UDP-糖类(总浓度为0.11微摩尔/毫克蛋白质)。两种主要UDP-糖类的结构被鉴定为UDP-α-GlcNAc3NAc和UDP-α-GlcNAc3NAc-(4<--1)-β-GlcpNAc3NAc。有趣的是,后一种化合物似乎是通过添加一个2,3-N-乙酰葡糖醛酸单元从第一种化合物衍生而来,这表明这些UDP-糖类是N-连接糖基化途径的中间体。据我们所知,这种UDP-二糖在其他地方尚未见报道。本文讨论了这些有机溶质的生理作用。

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