Crich David, Jayalath Prasanna, Hutton Thomas K
Department of Chemistry, University of Illinois at Chicago, 845 West Taylor Street, Chicago, Illinois 60607-7061, USA.
J Org Chem. 2006 Apr 14;71(8):3064-70. doi: 10.1021/jo0526789.
[reaction: see text] 2-O-Propargyl ethers are shown to be advantageous in the 4,6-O-benzylidene acetal directed beta-mannosylation reaction. The effect is most pronounced when the O3 protecting group is a bulky silyl ether or a glycosidic bond; however, even with a 3-O-benzyl ether, the use of a 2-O-propargyl ether results in a significant increase in diastereoselectivity. The beneficial effect of the propargyl ether is thought to be a combination of its minimal steric bulk, as determined by a measurement of the steric A-value and of its moderately disarming nature, as reflected in the pKa of propargyl alcohol. Conversely, the application of a 3-O-propargyl ether in the benzylidene acetal directed mannosylation has a detrimental effect on stereoselectivity, for which no explanation is at present available. Deprotection is achieved by base-catalyzed isomerization of the propargyl ether group to the corresponding allenyl ether, followed by oxidative cleavage with N-methylmorpholine N-oxide and catalytic osmium tetroxide.
[反应:见正文] 2-O-炔丙基醚在4,6-O-亚苄基缩醛导向的β-甘露糖基化反应中显示出优势。当O3保护基是庞大的硅烷基醚或糖苷键时,这种效果最为明显;然而,即使使用3-O-苄基醚,2-O-炔丙基醚的使用也会导致非对映选择性显著提高。炔丙基醚的有益效果被认为是其最小空间位阻(通过空间A值测量确定)和适度钝化性质(如炔丙醇的pKa所反映)的综合结果。相反,3-O-炔丙基醚在亚苄基缩醛导向的甘露糖基化中的应用对立体选择性有不利影响,目前对此尚无解释。通过碱催化将炔丙基醚基团异构化为相应的联烯基醚,然后用N-甲基吗啉N-氧化物和催化量的四氧化锇进行氧化裂解来实现脱保护。