Siebers Bettina, Tjaden Britta, Michalke Klaus, Dörr Christine, Ahmed Hatim, Zaparty Melanie, Gordon Paul, Sensen Christoph W, Zibat Arne, Klenk Hans-Peter, Schuster Stephan C, Hensel Reinhard
Department of Microbiology, Universität Duisburg-Essen, 45117 Essen, Germany.
J Bacteriol. 2004 Apr;186(7):2179-94. doi: 10.1128/JB.186.7.2179-2194.2004.
The hyperthermophilic, facultatively heterotrophic crenarchaeum Thermoproteus tenax was analyzed using a low-coverage shotgun-sequencing approach. A total of 1.81 Mbp (representing 98.5% of the total genome), with an average gap size of 100 bp and 5.3-fold coverage, are reported, giving insights into the genome of T. tenax. Genome analysis and biochemical studies enabled us to reconstruct its central carbohydrate metabolism. T. tenax uses a variant of the reversible Embden-Meyerhof-Parnas (EMP) pathway and two different variants of the Entner-Doudoroff (ED) pathway (a nonphosphorylative variant and a semiphosphorylative variant) for carbohydrate catabolism. For the EMP pathway some new, unexpected enzymes were identified. The semiphosphorylative ED pathway, hitherto supposed to be active only in halophiles, is found in T. tenax. No evidence for a functional pentose phosphate pathway, which is essential for the generation of pentoses and NADPH for anabolic purposes in bacteria and eucarya, is found in T. tenax. Most genes involved in the reversible citric acid cycle were identified, suggesting the presence of a functional oxidative cycle under heterotrophic growth conditions and a reductive cycle for CO2 fixation under autotrophic growth conditions. Almost all genes necessary for glycogen and trehalose metabolism were identified in the T. tenax genome.
利用低覆盖度鸟枪法测序方法对嗜热兼性异养的泉古菌嗜热栖热菌进行了分析。报道了总共181万个碱基对(占基因组总量的98.5%),平均缺口大小为100个碱基对,覆盖度为5.3倍,从而深入了解了嗜热栖热菌的基因组。基因组分析和生化研究使我们能够重建其中心碳水化合物代谢。嗜热栖热菌利用可逆的糖酵解途径(EMP途径)的一个变体以及Entner-Doudoroff(ED)途径的两种不同变体(一种非磷酸化变体和一种半磷酸化变体)进行碳水化合物分解代谢。对于EMP途径,鉴定出了一些新的、意想不到的酶。迄今认为仅在嗜盐菌中活跃的半磷酸化ED途径在嗜热栖热菌中被发现。在嗜热栖热菌中未发现功能性磷酸戊糖途径的证据,而该途径对于细菌和真核生物合成代谢中戊糖和NADPH的生成至关重要。鉴定出了参与可逆柠檬酸循环的大多数基因,这表明在异养生长条件下存在功能性氧化循环,在自养生长条件下存在用于固定CO₂的还原循环。在嗜热栖热菌基因组中鉴定出了糖原和海藻糖代谢所需的几乎所有基因。