Lev M
Am J Clin Nutr. 1979 Jan;32(1):179-86. doi: 10.1093/ajcn/32.1.179.
B. melaninogenicus provides a unique system for the study of the biosynthesis of an important group of lipids, the phosphosphingolipids. Sphingolipid biosynthesis can be repressed and induced by depletion and restoration of vitamin K. At least one enzyme involved in sphingolipid biosynthesis from the microorganism can be solubilized and so purified by conventional methods. Pathways involved in biosynthesis may differ from hitherto postulated pathways, for example, the incorporation of NH4+ into ethanolamine residue of ceramide phosphorylethanolamine. Moreover, the derivation of mutants defective in steps in sphingolipid biosynthesis would be of great value in these studies.
产黑素拟杆菌为研究一类重要脂质——磷酸鞘脂的生物合成提供了一个独特的系统。鞘脂生物合成可通过维生素K的耗尽和恢复来抑制和诱导。该微生物中参与鞘脂生物合成的至少一种酶可以溶解,并通过常规方法进行纯化。生物合成所涉及的途径可能与迄今推测的途径不同,例如,将NH4+掺入神经酰胺磷酸乙醇胺的乙醇胺残基中。此外,在这些研究中,获得鞘脂生物合成步骤有缺陷的突变体将具有很大价值。