Pertel' S S, Kadun A L, Kakaian E S, Chirva V Ia, Krivorutchenko Iu L, Krivoshein Iu S, Bakova A A, Andronovskaia I B
Frunze State University, Simferopol, Ukraine.
Bioorg Khim. 1999 Sep;25(9):708-15.
The synthesis of anomeric butyl glycosides of muramyl dipeptide was reported. alpha-Butyl glycoside of N-acetyl-D-glucosamine was 4,6-O-benzylidenated and the benzylidene derivative was 3-O-alkylated by the Williamson reaction with sodium (S)-2-chloropropionate. The resulting protected alpha-butyl glycoside of muramic acid was then condensed with L-Ala-D-iGln-OBzl by the DCC-HOSu method. Mild acidic hydrolysis and subsequent catalytic hydrogenolysis of the resulting glycopeptide yielded the target alpha-butyl glycoside of N-acetyl-L-alanyl-D-isoglutamine. In the synthesis of beta-butyl glycoside of N-acetylmuramyl-L-alanyl-D-isoglutamine, 2-acetamido- 4,6-di-O-acetyl-2-deoxy-3-O-[(R)-1-(methoxycarbonyl)ethyl]-alpha- D-glucopyranose, a 1-OH derivative of muramic acid, was the key compound. Its interaction with the excess thionyl chloride resulted in the corresponding glycosyl halide, which was condensed with n-butanol according to Helferich. O-Deacetylation, 4,6-isopropylidenation, and subsequent alkaline hydrolysis of the resulting compound gave the protected beta-butyl glycoside of muramic acid. Its activation and condensation with L-Ala-D-iGln-OBzl and the subsequent removal of protective groups were performed in the same manner as the reactions in the synthesis of alpha-butyl glycoside of N-acetyl-L-alanyl-D-isoglutamine. The adjuvant activity of the butyl glycosides to HIV proteins rgp160 and rgp120 and their ability to affect in vitro HIV replication and the proliferation of mouse spleen T-cells were examined. The biological activity of anomeric muramyl dipeptides was shown to depend essentially on the configuration of their anomeric center.
报道了胞壁酰二肽异头丁基糖苷的合成。N-乙酰-D-葡糖胺的α-丁基糖苷进行4,6-O-亚苄基化,然后通过与(S)-2-氯丙酸钠的威廉姆森反应将亚苄基衍生物进行3-O-烷基化。所得的胞壁酸保护的α-丁基糖苷随后通过DCC-HOSu方法与L-Ala-D-iGln-OBzl缩合。对所得糖肽进行温和的酸性水解以及随后的催化氢解,得到N-乙酰-L-丙氨酰-D-异谷氨酰胺的目标α-丁基糖苷。在N-乙酰胞壁酰-L-丙氨酰-D-异谷氨酰胺的β-丁基糖苷的合成中,2-乙酰氨基-4,6-二-O-乙酰基-2-脱氧-3-O-[(R)-1-(甲氧基羰基)乙基]-α-D-吡喃葡萄糖,一种胞壁酸的1-OH衍生物,是关键化合物。它与过量的亚硫酰氯相互作用生成相应的糖基卤化物,根据赫尔弗里希法将其与正丁醇缩合。所得化合物的O-脱乙酰化、4,6-异丙叉基化以及随后的碱性水解得到胞壁酸的保护的β-丁基糖苷。其活化以及与L-Ala-D-iGln-OBzl的缩合以及随后保护基团的去除与N-乙酰-L-丙氨酰-D-异谷氨酰胺α-丁基糖苷合成中的反应以相同方式进行。研究了丁基糖苷对HIV蛋白rgp160和rgp120的佐剂活性及其在体外影响HIV复制和小鼠脾脏T细胞增殖的能力。结果表明异头胞壁酰二肽的生物活性基本上取决于其异头中心的构型。