格尔德霉素
化学
生物合成
聚酮合酶
聚酮
羟基化
立体化学
基因
生物化学
DHPS公司
酶
生物
热休克蛋白90
疟疾
热休克蛋白
恶性疟原虫
免疫学
作者
Young‐Soo Hong,Dongho Lee,Won-Cheol Kim,Jae-Kap Jeong,Chun-Gyu Kim,Jae Kyung Sohng,Jeong-Hyung Lee,Sang‐Gi Paik,Jung Joon Lee
摘要
The post-polyketide synthase modification of geldanamycin (1) biosynthesis is of interest as a means of introducing structural diversity into the compound. From the inactivation of a gene encoding carbamoyltransferase, we demonstrated that the C-17 hydroxylation and the C-21 oxidation precede O-carbamoylation and that the hypothetical progeldanamycin does not possess a double bond at C-4 and C-5. More importantly, our result revealed new intermediates 4,5-dihydro-7-O-descarbamoyl-7-hydroxygeldanamycin (3) and 4,5-dihydrogeldanamycin (5), indicating that O-carbamoylation occurs prior to the C-4,5 cis double bond formation in geldanamycin biosynthesis.
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