Kennedy Andrew, Nelson Adam, Perry Alexis
School of Chemistry, Chemical Development, GlaxoSmithKline, Gunnels Wood Road, Stevenage, Hertfordshire, SG1 2NY, UK.
Beilstein J Org Chem. 2005 Aug 26;1(1):2. doi: 10.1186/1860-5397-1-2.
Many polyhydroxylated piperidines are inhibitors of the oligosaccharide processing enzymes, glycosidases and glycosyltransferases. Aza-C-linked disaccharide mimetics are compounds in which saturated polyhydroxylated nitrogen and oxygen heterocycles are linked by an all-carbon tether. The saturated oxygen heterocycle has the potential to mimic the departing sugar in a glycosidase-catalysed reaction and aza-C-linked disaccharide mimetics may, therefore, be more potent inhibitors of these enzymes.
The scope, limitations and diastereoselectivity of the dihydroxylation of stereoisomeric 2-butyl-1-(toluene-4-sulfonyl)-1,2,3,6-tetrahydro-pyridin-3-ols is discussed. In the absence of a 6-substituent on the piperidine ring, the Upjohn (cat. OsO4, NMO, acetone-water) and Donohoe (OsO4, TMEDA, CH2Cl2) conditions allow complementary diastereoselective functionalisation of the alkene of the (2R*,3R*) diastereoisomer. However, in the presence of a 6-substituent, the reaction is largely controlled by steric effects with both reagents. The most synthetically useful protocols were exploited in the two-directional synthesis of aza-C-linked disaccharide analogues. A two-directional oxidative ring expansion was used to prepare bis-enones such as (2R,6S,2'S)-6-methoxy-2-(6-methoxy-3-oxo-3,6-dihydro-2H-pyran-2-ylmethyl)-1-(toluene-4-sulfonyl)-1,6-dihydro-2H-pyridin-3-one from the corresponding difuran. Selective substitution of its N,O acetal was possible. The stereochemical outcome of a two-directional Luche reduction step was different in the two heterocyclic rings, and depended on the conformation of the ring. Finally, two-directional diastereoselective dihydroxylation yielded seven different aza-C-linked disaccharide analogues.
A two-directional approach may be exploited in the synthesis of aza-C-linked disaccharide mimetics. Unlike previous approaches to similar molecules, neither of the heterocyclic rings is directly derived from a sugar, allowing mimetics with unusual configurations to be prepared. The work demonstrates that highly unsymmetrical molecules may be prepared using a two directional approach. The deprotected compounds may have potential as inhibitors of oligosaccharide-processing enzymes and as tools in chemical genetic investigations.
许多多羟基哌啶是寡糖加工酶、糖苷酶和糖基转移酶的抑制剂。氮杂-C-连接的二糖模拟物是一类化合物,其中饱和的多羟基氮和氧杂环通过全碳链连接。饱和的氧杂环有可能在糖苷酶催化的反应中模拟离去的糖,因此氮杂-C-连接的二糖模拟物可能是这些酶更有效的抑制剂。
讨论了立体异构的2-丁基-1-(甲苯-4-磺酰基)-1,2,3,6-四氢吡啶-3-醇的二羟基化反应的范围、局限性和非对映选择性。在哌啶环上没有6-取代基的情况下,Upjohn(催化剂OsO4、NMO、丙酮-水)和Donohoe(OsO4、TMEDA、CH2Cl2)条件允许对(2R*,3R*)非对映异构体的烯烃进行互补的非对映选择性官能化。然而,在存在6-取代基的情况下,反应在很大程度上受两种试剂的空间效应控制。在氮杂-C-连接的二糖类似物的双向合成中采用了最具合成实用性的方法。使用双向氧化扩环反应从相应的双呋喃制备双烯酮,如(2R,6S,2'S)-6-甲氧基-2-(6-甲氧基-3-氧代-3,6-二氢-2H-吡喃-2-基甲基)-1-(甲苯-4-磺酰基)-1,6-二氢-2H-吡啶-3-酮。其N,O-缩醛的选择性取代是可能的。双向卢切还原步骤在两个杂环中的立体化学结果不同,并且取决于环的构象。最后,双向非对映选择性二羟基化反应产生了七种不同的氮杂-C-连接的二糖类似物。
在氮杂-C-连接的二糖模拟物的合成中可以采用双向方法。与先前合成类似分子的方法不同,两个杂环均不直接源自糖,这使得可以制备具有不寻常构型的模拟物。这项工作表明,可以使用双向方法制备高度不对称的分子。脱保护的化合物可能具有作为寡糖加工酶抑制剂和化学遗传学研究工具的潜力。