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首页> 外文期刊>Journal of bacteriology >The glucose effect and regulation of alpha-amylase synthesis in the hyperthermophilic archaeon Sulfolobus solfataricus.
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The glucose effect and regulation of alpha-amylase synthesis in the hyperthermophilic archaeon Sulfolobus solfataricus.

机译:嗜热古细菌Sulfolobus solfataricus的葡萄糖效应和α-淀粉酶合成的调控。

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An alpha-amylase was purified from culture supernatants of Sulfolobus solfataricus 98/2 during growth on starch as the sole carbon and energy source. The enzyme is a homodimer with a subunit mass of 120 kDa. It catalyzes the hydrolysis of starch, dextrin, and alpha-cyclodextrin with similar efficiencies. Addition of exogenous glucose represses production of alpha-amylase, demonstrating that a classical glucose effect is operative in this organism. Synthesis of [35S]-alpha-amylase protein is also subject to the glucose effect. alpha-Amylase is constitutively produced at low levels but can be induced further by starch addition. The absolute levels of alpha-amylase detected in culture supernatants varied greatly with the type of sole carbon source used to support growth. Aspartate was identified as the most repressing sole carbon source for alpha-amylase production, while glutamate was the most derepressing. The pattern of regulation of alpha-amylase production seen in this organism indicates that a catabolite repression-like system is present in a member of the archaea.
机译:在淀粉作为唯一碳和能源的生长过程中,从Sulfolobus solfataricus 98/2的培养上清液中纯化了α-淀粉酶。该酶是亚基质量为120 kDa的同型二聚体。它以相似的效率催化淀粉,糊精和α-环糊精的水解。外源葡萄糖的添加抑制了α-淀粉酶的产生,表明经典的葡萄糖作用在该生物体中起作用。 [35S]-α-淀粉酶蛋白的合成也受葡萄糖作用的影响。 α-淀粉酶低水平组成性产生,但可以通过添加淀粉进一步诱导。在培养上清液中检测到的α-淀粉酶的绝对水平随用于支持生长的唯一碳源的类型而变化很大。天冬氨酸被认为是生产α-淀粉酶最抑制的唯一碳源,而谷氨酸则是最抑制的。在这种生物中看到的α-淀粉酶产生的调节模式表明,古细菌的成员中存在分解代谢物抑制类系统。

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