Elucidation of strict structural requirements of brefeldin A as an inducer of differentiation and apoptosis

被引:63
作者
Zhu, JW
Nagasawa, H
Nagura, F
Mohamad, SB
Uto, Y
Ohkura, K
Hori, H
机构
[1] Univ Tokushima, Fac Engn, Dept Biol Sci & Technol, Tokushima 7708506, Japan
[2] Univ Tokushima, Fac Pharmaceut Sci, Tokushima 7708505, Japan
[3] Nagoya Univ, Fac Agr Sci, Dept Appl Biol Sci, Aichi 4648601, Japan
关键词
brefeldin A; brefeldin A derivatives; structural requirements; apoptosis; cytotoxicity;
D O I
10.1016/S0968-0896(99)00297-7
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Brefeldin A (BFA) can induce a wide variety of human cancer cells to differentiation and apoptosis and is in development as an anticancer agent. To elucidate structural requirements for cytotoxicity and induction of differentiation and apoptosis, BFA was structurally modified into various derivatives including 4-epi-BFA in this study. Their inducing activities of apoptosis were evaluated with their cytotoxicities, DNA fragmentation and morphological changes in human colon cancer cell HCT 116. The cytotoxicity of 4-epi-BFA (TX-1923) (IC50 = 60 mu M) was 300 times lower than that of BFA (IC50 = 0.2 mu M). Furthermore, 4-epi-BFA induced DNA fragmentation and apoptotic morphological changes at much higher concentrations (70 and 50 mu M, respectively) than BFA (0.11 and 0.36 mu M, respectively). These results indicated that the configuration of 4-hydroxyl group of brefeldin A plays a key role in the cytotoxicity and induction of apoptosis. On the other hand, 7-O-acetyl-BFA, 4-O-acetyl-BFA, and 4,7-di-O-acetyl-BFA exhibited potential activities in cytotoxicity and inducibility of apoptosis. We suggested that the structural determinants for BFA include the moiety of the Michael acceptor, the conformational rigidity of the 13-membered ring, and the configuration of 4-hydroxyl group. (C) 2000 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:455 / 463
页数:9
相关论文
共 35 条
[1]   Highly efficient diastereoselective Michael addition of various thiols to (+)-brefeldin A [J].
Argade, AB ;
Haugwitz, RD ;
Devraj, R ;
Kozlowski, J ;
Fanwick, PE ;
Cushman, M .
JOURNAL OF ORGANIC CHEMISTRY, 1998, 63 (02) :273-278
[2]   Design and synthesis of brefeldin A sulfide derivatives as prodrug candidates with enhanced aqueous solubilities [J].
Argade, AB ;
Devraj, R ;
Vroman, JA ;
Haugwitz, RD ;
Hollingshead, M ;
Cushman, M .
JOURNAL OF MEDICINAL CHEMISTRY, 1998, 41 (18) :3337-3346
[3]   TOTAL SYNTHESIS OF BREFELDIN-A [J].
BARTLETT, PA ;
GREEN, FR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1978, 100 (15) :4858-4865
[4]   CYANEIN, A NEW ANTIBIOTIC FROM PENICILLIUM-CYANEUM [J].
BETINA, V ;
BARATH, Z ;
NEMEC, P ;
DOBIAS, J .
FOLIA BIOLOGICA, 1962, 7 (06) :353-&
[5]   SYNTHESIS OF (+)-BREFELDIN-A [J].
CARNELL, AJ ;
CASY, G ;
GORINS, G ;
KOMPANYSAEID, A ;
MCCAGUE, R ;
OLIVO, HF ;
ROBERTS, SM ;
WILLETTS, AJ .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 1, 1994, (23) :3431-3439
[6]   COMPARTMENTATION OF THE GOLGI-COMPLEX - BREFELDIN-A DISTINGUISHES TRANS-GOLGI CISTERNAE FROM THE TRANS-GOLGI NETWORK [J].
CHEGE, NW ;
PFEFFER, SR .
JOURNAL OF CELL BIOLOGY, 1990, 111 (03) :893-899
[7]  
COREY EJ, 1976, TETRAHEDRON LETT, P4701
[8]  
COREY EJ, 1976, TETRAHEDRON LETT, P4705
[9]   BREFELDIN-A REDISTRIBUTES RESIDENT AND ITINERANT GOLGI PROTEINS TO THE ENDOPLASMIC-RETICULUM [J].
DOMS, RW ;
RUSS, G ;
YEWDELL, JW .
JOURNAL OF CELL BIOLOGY, 1989, 109 (01) :61-72
[10]  
FUJIWARA T, 1988, J BIOL CHEM, V263, P18545