Chiba University, Graduate School of Advanced Integration Science, Matsudo 271-8510, Chiba, Japan.
Beilstein J Org Chem. 2012;8:629-39. doi: 10.3762/bjoc.8.70. Epub 2012 Apr 24.
Mycoplasma fermentans possesses unique α-glycolipid antigens (GGPL-I and GGPL-III) at the cytoplasm membrane, which carry a phosphocholine group at the sugar primary (6-OH) position. This paper describes a practical synthetic pathway to a GGPL-I homologue (C(16:0)) and its diastereomer, in which our one-pot α-glycosylation method was effectively applied. The synthetic GGPL-I isomers were characterized with (1)H NMR spectroscopy to determine the equilibrium among the three conformers (gg, gt, tg) at the acyclic glycerol moiety. The natural GGPL-I isomer was found to prefer gt (54%) and gg (39%) conformers around the lipid tail, while adopting all of the three conformers with equal probability around the sugar position. This property was very close to what we have observed with respect to the conformation of phosphatidylcholine (DPPC), suggesting that the Mycoplasma glycolipids GGPLs may constitute the cytoplasm fluid membrane together with ubiquitous phospholipids, without inducing stereochemical stress.
发酵支原体拥有独特的细胞质膜α-糖脂抗原(GGPL-I 和 GGPL-III),其在糖基的伯位(6-OH)带有一个磷酸胆碱基团。本文描述了一种实用的 GGPL-I 同系物(C(16:0))及其非对映异构体的合成途径,其中我们的一锅法α-糖苷化方法得到了有效应用。通过(1)H NMR 光谱对合成的 GGPL-I 异构体进行了表征,以确定非环甘油部分中三种构象(gg、gt、tg)之间的平衡。天然 GGPL-I 异构体在脂质尾部周围优先采用 gt(54%)和 gg(39%)构象,而在糖基位置则以相等的概率采用所有三种构象。这种性质与我们在磷脂酰胆碱(DPPC)构象方面观察到的非常相似,表明支原体糖脂 GGPL 可能与普遍存在的磷脂一起构成细胞质流动膜,而不会引起立体化学应激。