Aguilar Lucero Romero, Pardo Juan Pablo, Lomelí Mónica Montero, Bocardo Oscar Ivan Luqueño, Juárez Oropeza Marco A, Guerra Sánchez Guadalupe
Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Ciudad De México, Mexico.
Departamento de Bioquímica, Facultad de Medicina, Universidad Nacional Autónoma de México, Ciudad De México, Mexico.
Arch Microbiol. 2017 Oct;199(8):1195-1209. doi: 10.1007/s00203-017-1388-8. Epub 2017 May 26.
In many organisms, the growth under nitrogen-deprivation or a poor nitrogen source impacts on the carbon flow distribution and causes accumulation of neutral lipids, which are stored as lipid droplets (LDs). Efforts are in progress to find the mechanism of LDs synthesis and degradation, and new organisms capable of accumulating large amounts of lipids for biotechnological applications. In this context, when Ustilago maydis was cultured in the absence of a nitrogen source, there was a large accumulation of lipid bodies containing mainly triacylglycerols. The most abundant fatty acids in lipid bodies at the stationary phase were palmitic, linoleic, and oleic acids, and they were synthesized de novo by the fatty-acid synthase. In regard to the production of NADPH for the synthesis of fatty acids, the cytosolic NADP-dependent isocitrate dehydrogenase and the glucose-6-phosphate and 6-phosphogluconate dehydrogenases couple showed the highest specific activities, with a lower activity of the malic enzyme. The ATP-citrate lyase activity was not detected in any of the culture conditions, which points to a different mechanism for the transfer of acetyl-CoA into the cytosol. Protein and RNA contents decreased when U. maydis was grown without a nitrogen source. Due to the significant accumulation of triacylglycerols and the particular composition of fatty acids, U. maydis can be considered an alternative model for biotechnological applications.
在许多生物体中,在氮缺乏或氮源不足的情况下生长会影响碳流分布,并导致中性脂质积累,这些中性脂质以脂滴(LDs)的形式储存。目前正在努力寻找脂滴合成和降解的机制,以及能够积累大量脂质用于生物技术应用的新生物体。在这种情况下,当玉米黑粉菌在无氮源条件下培养时,会大量积累主要含有三酰甘油的脂质体。静止期脂质体中最丰富的脂肪酸是棕榈酸、亚油酸和油酸,它们由脂肪酸合酶从头合成。关于脂肪酸合成所需的NADPH的产生,胞质NADP依赖的异柠檬酸脱氢酶以及葡萄糖-6-磷酸脱氢酶和6-磷酸葡萄糖酸脱氢酶偶联表现出最高的比活性,苹果酸酶的活性较低。在任何培养条件下均未检测到ATP-柠檬酸裂解酶活性,这表明乙酰辅酶A转运到胞质溶胶的机制不同。当玉米黑粉菌在无氮源条件下生长时,蛋白质和RNA含量会下降。由于三酰甘油的大量积累以及脂肪酸的特殊组成,玉米黑粉菌可被视为生物技术应用的替代模型。