Polyamine transport in parasites: A potential target for new antiparasitic drug development

被引:61
作者
Reguera, RM
Tekwani, BL
Balana-Fouce, R
机构
[1] Univ Leon, Dept Pharmacol & Toxicol, INTOXCAL, E-24071 Leon, Spain
[2] Univ Mississippi, Sch Pharm, Natl Ctr Nat Prod Res, University, MS 38677 USA
来源
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY C-TOXICOLOGY & PHARMACOLOGY | 2005年 / 140卷 / 02期
关键词
ornithine decarboxylase; polyamine inhibitors; sleeping sickness; Chagas disease; trypanosoma; Leishmania; Trichomonas; adenosyl methionine;
D O I
10.1016/j.cca.2005.02.006
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
The metabolism of the naturally occurring polyamines-putrescine, spermidine and spermine-is a highly integrated system involving biosynthesis, uptake, degradation and interconversion. Metabolic differences in polyamine metabolism have long been considered to be a potential target to arrest proliferative processes ranging from cancer to microbial and parasitic diseases. Despite the early success of polyamine inhibitors such as alpha-difluoromethylomithine (DFMO) in treating the latter stages of African sleeping sickness, in which the central nervous system is affected, they proved to be ineffective in checking other major diseases caused by parasitic protozoa, such as Chagas' disease, leishmaniasis or malaria. In the use and design of new polyamine-based inhibitors, account must be taken of the presence of up-regulated polyamine transporters in the plasma membrane of the infectious agent that are able to circumvent the effect of the drug by providing the parasite with polyamines from the host. This review contains information on the polyamine requirements and molecular, biochemical and genetic characterization of different transport mechanisms in the parasitic agents responsible for a number of the deadly diseases that afflict underdeveloped and developing countries. (c) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:151 / 164
页数:14
相关论文
共 132 条
[1]   Localization and function of the yeast multidrug transporter Tpo1p [J].
Albertsen, M ;
Bellahn, I ;
Krämer, R ;
Waffenschmidt, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (15) :12820-12825
[2]   Transcriptional inhibition of the operon for the spermidine uptake system by the substrate-binding protein PotD [J].
Antognoni, F ;
Del Duca, S ;
Kuraishi, A ;
Kawabe, E ;
Fukuchi-Shimogori, T ;
Kashiwagi, K ;
Igarashi, K .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (04) :1942-1948
[3]   Diamine auxotrophy may be a universal feature of Trypanosoma cruzi epimastigotes [J].
Ariyanayagam, MR ;
Fairlamb, AH .
MOLECULAR AND BIOCHEMICAL PARASITOLOGY, 1997, 84 (01) :111-121
[4]   POLYAMINE LEVELS AND THE ACTIVITY OF THEIR BIOSYNTHETIC-ENZYMES IN HUMAN-ERYTHROCYTES INFECTED WITH THE MALARIAL PARASITE, PLASMODIUM-FALCIPARUM [J].
ASSARAF, YG ;
GOLENSER, J ;
SPIRA, DT ;
BACHRACH, U .
BIOCHEMICAL JOURNAL, 1984, 222 (03) :815-819
[5]   Polyamine Metabolism as Chemotherapeutic Target in Protozoan Parasites [J].
Bacchi, C. J. ;
Yarlett, N. .
MINI-REVIEWS IN MEDICINAL CHEMISTRY, 2002, 2 (06) :553-563
[6]   POLYAMINE METABOLISM - A POTENTIAL THERAPEUTIC TARGET IN TRYPANOSOMES [J].
BACCHI, CJ ;
NATHAN, HC ;
HUTNER, SH .
SCIENCE, 1980, 210 (4467) :332-334
[7]  
Bacchi CJ, 2001, J EUKARYOT MICROBIOL, p201S
[8]   EFFECTS OF ANTAGONISTS OF POLYAMINE METABOLISM ON AFRICAN TRYPANOSOMES [J].
BACCHI, CJ ;
YARLETT, N .
ACTA TROPICA, 1993, 54 (3-4) :225-236
[9]   PUTRESCINE TRANSPORT-SYSTEM IN LEISHMANIA-INFANTUM PROMASTIGOTES [J].
BALANAFOUCE, R ;
ORDONEZ, D ;
ALUNDA, JM .
MOLECULAR AND BIOCHEMICAL PARASITOLOGY, 1989, 35 (01) :43-50
[10]   LEISHMANIA-INFANTUM - POLYAMINE BIOSYNTHESIS AND LEVELS DURING THE GROWTH OF PROMASTIGOTES [J].
BALANAFOUCE, R ;
ESCRIBANO, MI ;
ALUNDA, JM .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY, 1991, 23 (11) :1213-1217