首页> 外文OA文献 >Structural analysis by reductive cleavage with LiAlH4 of an allyl ether choline-phospholipid, archaetidylcholine, from the hyperthermophilic methanoarchaeon Methanopyrus kandleri
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Structural analysis by reductive cleavage with LiAlH4 of an allyl ether choline-phospholipid, archaetidylcholine, from the hyperthermophilic methanoarchaeon Methanopyrus kandleri

机译:通过用LiAlH4还原裂解来自超嗜热甲烷甲基古菌Methanopyrus kandleri的烯丙基醚胆碱磷脂,古菌胆碱的结构分析

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摘要

A choline-containing phospholipid (PL-4) in Methanopyrus kandleri cells was identified as archaetidylcholine, which has been described by Sprott et al. (1997). The PL-4 consisted of a variety of molecular species differing in hydrocarbon composition. Most of the PL-4 was acid-labile because of its allyl ether bond. The identity of PL-4 was confirmed by thin-layer chromatography (TLC) followed by positive staining with Dragendorff-reagent and fast-atom bombardment–mass spectrometry. A new method of LiAlH4 hydrogenolysis was developed to cleave allyl ether bonds and recover the corresponding hydrocarbons. We confirmed the validity of the LiAlH4 method in a study of the model compound synthetic unsaturated archaetidic acid (2,3-di-O-geranylgeranyl-sn-glycerol-1-phosphate). Saturated ether bonds were not cleaved by the LiAlH4 method. The hydrocarbons formed following LiAlH4 hydrogenolysis of PL-4 were identified by gas–liquid chromatography and mass spectrometry. Four kinds of hydrocarbons with one to four double bonds were detected: 47% of the hydrocarbons had four double bonds; 11% had three double bonds; 14% had two double bonds; 7% had one double bond; and 6% were saturated species. The molecular species composition of PL-4 was also estimated based on acid lability: 77% of the molecular species had two acid-labile hydrocarbons; 11% had one acid-labile and one acid-stable hydrocarbon; and 11% had two acid-stable hydrocarbons. To our knowledge, this is the first report of a specific chemical degradation method for the structural analysis of allyl ether phospholipid in archaea.
机译:Methanopyrus kandleri细胞中的含胆碱的磷脂(PL-4)被鉴定为古菌胆碱,Sprott等人已对此进行了描述。 (1997)。 PL-4由碳氢化合物组成不同的各种分子组成。大多数PL-4由于其烯丙基醚键而对酸不稳定。 PL-4的身份通过薄层色谱法(TLC)确认,然后用Dragendorff试剂进行正染色和快速原子轰击质谱。研究了LiAlH4氢解的新方法,以裂解烯丙基醚键并回收相应的烃。我们在模型合成的不饱和合成考古酸(2,3-二-O-香叶基香叶基-sn-甘油-1-磷酸酯)模型研究中证实了LiAlH4方法的有效性。 LiAlH4方法不会裂解饱和的醚键。 Li-4的LiAlH4氢解后形成的烃通过气相色谱和质谱法鉴定。检测到具有一到四个双键的四种烃:47%的烃具有四个双键; 11%的人有三个双键; 14%的人有两个双键; 7%有一个双键; 6%为饱和物种。 PL-4的分子种类组成也基于酸不稳定性进行估算:77%的分子种类具有两个酸不稳定的烃; 11%的人有一种对酸不稳定的物质和一种对酸稳定的烃; 11%的人有两种酸稳定的烃。据我们所知,这是用于古细菌中烯丙基醚磷脂结构分析的一种特定化学降解方法的首次报道。

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