Leinamycin E1 acting as an anticancer prodrug activated by reactive oxygen species

被引:42
作者
Huang, Sheng-Xiong [1 ]
Yun, Bong-Sik [2 ]
Ma, Ming [1 ]
Basu, Hirak S. [3 ]
Church, Dawn R. [3 ]
Ingenhorst, Gudrun [2 ]
Huang, Yong [2 ]
Yang, Dong [1 ]
Lohman, Jeremy R. [1 ]
Tang, Gong-Li [2 ]
Ju, Jianhua [2 ]
Liu, Tao [2 ]
Wilding, George [3 ,4 ]
Shen, Ben [1 ,2 ,5 ,6 ]
机构
[1] Scripps Res Inst, Dept Chem, Jupiter, FL 33458 USA
[2] Univ Wisconsin, Div Pharmaceut Sci, Madison, WI 53705 USA
[3] Univ Wisconsin, Carbone Canc Ctr, Madison, WI 53705 USA
[4] Univ Wisconsin, Dept Med, Madison, WI 53705 USA
[5] Scripps Res Inst, Dept Mol Therapeut, Jupiter, FL 33458 USA
[6] Scripps Res Inst, Nat Prod Lib Initiat, Jupiter, FL 33458 USA
关键词
cancer targeting; drug discovery; natural product; pathway engineering; sulfur metabolism; ANTITUMOR ANTIBIOTIC LEINAMYCIN; BIFUNCTIONAL ACYLTRANSFERASE/DECARBOXYLASE LNMK; POLYAMINE CATABOLISM; POLYKETIDE SYNTHASE; DNA ALKYLATION; STREPTOMYCES; BIOSYNTHESIS; DISCRETE; CLEAVAGE; DAMAGE;
D O I
10.1073/pnas.1506761112
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Leinamycin (LNM) is a potent antitumor antibiotic produced by Streptomyces atroolivaceus S-140, featuring an unusual 1,3-dioxo-1,2-dithiolane moiety that is spiro-fused to a thiazole-containing 18-membered lactam ring. Upon reductive activation in the presence of cellular thiols, LNM exerts its antitumor activity by an episulfonium ion-mediated DNA alkylation. Previously, we have cloned the lnm gene cluster from S. atroolivaceus S-140 and characterized the biosynthetic machinery responsible for the 18-membered lactam backbone and the alkyl branch at C3 of LNM. We now report the isolation and characterization of leinamycin E1 (LNM E1) from S. atroolivacues SB3033, a Delta lnmE mutant strain of S. atroolivaceus S-140. Complementary to the reductive activation of LNM by cellular thiols, LNM E1 can be oxidatively activated by cellular reactive oxygen species (ROS) to generate a similar episulfonium ion intermediate, thereby alkylating DNA and leading to eventual cell death. The feasibility of exploiting LNM E1 as an anticancer prodrug activated by ROS was demonstrated in two prostate cancer cell lines, LNCaP and DU-145. Because many cancer cells are under higher cellular oxidative stress with increased levels of ROS than normal cells, these findings support the idea of exploiting ROS as a means to target cancer cells and highlight LNM E1 as a novel lead for the development of anticancer prodrugs activated by ROS. The structure of LNM E1 also reveals critical new insights into LNM biosynthesis, setting the stage to investigate sulfur incorporation, as well as the tailoring steps that convert the nascent hybrid peptide-polyketide biosynthetic intermediate into LNM.
引用
收藏
页码:8278 / 8283
页数:6
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