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1
Methionine recycling pathways and antimalarial drug design.甲硫氨酸循环途径与抗疟药物设计。
Antimicrob Agents Chemother. 1995 Nov;39(11):2511-5. doi: 10.1128/AAC.39.11.2511.
2
5'-Alkyl-substituted analogs of 5'-methylthioadenosine as trypanocides.5'-甲硫基腺苷的5'-烷基取代类似物作为杀锥虫剂
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3
Metabolic effects of a methylthioadenosine phosphorylase substrate analog on African trypanosomes.一种甲硫腺苷磷酸化酶底物类似物对非洲锥虫的代谢影响。
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4
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In vivo efficacies of 5'-methylthioadenosine analogs as trypanocides.5'-甲硫腺苷类似物作为杀锥虫剂的体内疗效。
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Selective killing of Klebsiella pneumoniae by 5-trifluoromethylthioribose. Chemotherapeutic exploitation of the enzyme 5-methylthioribose kinase.5-三氟甲基硫代核糖对肺炎克雷伯菌的选择性杀伤作用。5-甲基硫代核糖激酶的化疗应用。
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7
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8
Targeting 5'-deoxy-5'-(methylthio)adenosine phosphorylase by 5'-haloalkyl analogues of 5'-deoxy-5'-(methylthio)adenosine.通过5'-脱氧-5'-(甲硫基)腺苷的5'-卤代烷基类似物靶向5'-脱氧-5'-(甲硫基)腺苷磷酸化酶。
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9
Synthesis and antiproliferative effects of novel 5'-fluorinated analogues of 5'-deoxy-5'-(methylthio)adenosine.
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5'-deoxy-5'-methylthioadenosine phosphorylase--IV. Biological activity of 2-fluoroadenine-substituted 5'-deoxy-5'-methylthioadenosine analogs.5'-脱氧-5'-甲硫基腺苷磷酸化酶——IV. 2-氟腺嘌呤取代的5'-脱氧-5'-甲硫基腺苷类似物的生物活性
Biochem Pharmacol. 1987 Jun 15;36(12):1881-93. doi: 10.1016/0006-2952(87)90484-9.

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Biochemical and structural characterization of tyrosine aminotransferase suggests broad substrate specificity and a two-state folding mechanism in Leishmania donovani.杜氏利什曼原虫中酪氨酸转氨酶的生化与结构特征表明其具有广泛的底物特异性和双态折叠机制。
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Methionine recycling as a target for antiprotozoal drug development.甲硫氨酸循环作为抗寄生虫药物开发的靶点。
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Regulation of methylthioribose kinase by methionine in Klebsiella pneumoniae.
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Parasite lactate dehydrogenase as an assay for Plasmodium falciparum drug sensitivity.疟原虫乳酸脱氢酶作为恶性疟原虫药物敏感性的一种检测方法。
Am J Trop Med Hyg. 1993 Jun;48(6):739-41. doi: 10.4269/ajtmh.1993.48.739.
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Plasmodium falciparum: antimalarial activity in culture of sinefungin and other methylation inhibitors.恶性疟原虫:S-腺苷高半胱氨酸及其他甲基化抑制剂在培养中的抗疟活性
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Malaria parasites adopt host cell superoxide dismutase.疟原虫采用宿主细胞超氧化物歧化酶。
Science. 1983 Aug 19;221(4612):764-6. doi: 10.1126/science.6348944.
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[On the thio ether and S-oxide derivatives of adenosine].[关于腺苷的硫醚和S-氧化物衍生物]
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Platelet aggregation inhibitors. 2. Inhibition of platelet aggregation by 5'-, 2-, 6-, and 8-substituted adenosines.
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MTA phosphorylase in protozoa: a potential target for chemotherapeutic attack.
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Substrate specificities of 5'-deoxy-5'-methylthioadenosine phosphorylase from Trypanosoma brucei brucei and mammalian cells.布氏布氏锥虫和哺乳动物细胞中5'-脱氧-5'-甲硫基腺苷磷酸化酶的底物特异性
Mol Biochem Parasitol. 1988 Jan 15;27(2-3):109-18. doi: 10.1016/0166-6851(88)90030-8.
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Effect of DL-alpha-difluoromethylornithine on methionine cycle intermediates in Trypanosoma brucei brucei.DL-α-二氟甲基鸟氨酸对布氏布氏锥虫蛋氨酸循环中间体的影响。
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甲硫氨酸循环途径与抗疟药物设计。

Methionine recycling pathways and antimalarial drug design.

作者信息

Sufrin J R, Meshnick S R, Spiess A J, Garofalo-Hannan J, Pan X Q, Bacchi C J

机构信息

Grace Cancer Drug Center, Roswell Park Cancer Institute, Buffalo, New York 14263, USA.

出版信息

Antimicrob Agents Chemother. 1995 Nov;39(11):2511-5. doi: 10.1128/AAC.39.11.2511.

DOI:10.1128/AAC.39.11.2511
PMID:8585735
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC162974/
Abstract

5'-Deoxy-5'-(methylthio)adenosine (MTA) is an S-adenosylmethionine metabolite that is generated as a by-product of polyamine biosynthesis. In mammalian cells, MTA undergoes a phosphorolytic cleavage catalyzed by MTA phosphorylase to produce adenine and 5-deoxy-5-(methylthio)ribose-1-phosphate (MTRP). Adenine is utilized in purine salvage pathways, and MTRP is subsequently recycled to methionine. Whereas some microorganisms metabolize MTA to MTRP via MTA phosphorylase, others metabolize MTA to MTRP in two steps via initial cleavage by MTA nucleosidase to adenine and 5-deoxy-5-(methylthio)ribose (MTR) followed by conversion of MTR to MTRP by MTR kinase. In order to assess the extent to which these pathways may be operative in Plasmodium falciparum, we have examined a series of 5'-alkyl-substituted analogs of MTA and the related MTR analogs and compared their abilities to inhibit in vitro growth of this malarial parasite. The MTR analogs 5-deoxy-5-(ethylthio)ribose and 5-deoxy-5-(hydroxyethylthio)ribose were inactive at concentrations up to 1 mM, and 5-deoxy-5-(monofluoroethylthio)ribose was weakly active (50% inhibitory concentration = 700 microM). In comparison, the MTA analogs, 5'-deoxy-5'-(ethylthio)adenosine,5'-deoxy-5'-(hydroxyethylthio)ade nosine (HETA), and 5'-deoxy-5'-(monofluoroethylthio)adenosine, had 50% inhibitory concentrations of 80, 46, and 61 microM, respectively. Extracts of P. falciparum were found to have substantial MTA phosphorylase activity. Coadministration of MTA with HETA partially protected the parasites against the growth-inhibitory effects of HETA. Results of this study indicate that P. falciparum has an active MTA phosphorylase that can be targeted by analogs of MTA.

摘要

5'-脱氧-5'-(甲硫基)腺苷(MTA)是一种S-腺苷甲硫氨酸代谢产物,作为多胺生物合成的副产物产生。在哺乳动物细胞中,MTA在MTA磷酸化酶催化下进行磷酸解裂解,生成腺嘌呤和5-脱氧-5-(甲硫基)核糖-1-磷酸(MTRP)。腺嘌呤用于嘌呤补救途径,随后MTRP被循环利用生成甲硫氨酸。虽然一些微生物通过MTA磷酸化酶将MTA代谢为MTRP,但其他微生物则通过MTA核苷酶先将MTA裂解为腺嘌呤和5-脱氧-5-(甲硫基)核糖(MTR),然后由MTR激酶将MTR转化为MTRP,分两步将MTA代谢为MTRP。为了评估这些途径在恶性疟原虫中可能起作用的程度,我们研究了一系列MTA的5'-烷基取代类似物以及相关的MTR类似物,并比较了它们抑制这种疟原虫体外生长的能力。MTR类似物5-脱氧-5-(乙硫基)核糖和5-脱氧-5-(羟乙硫基)核糖在浓度高达1 mM时无活性,5-脱氧-5-(单氟乙硫基)核糖活性较弱(50%抑制浓度 = 700 microM)。相比之下,MTA类似物5'-脱氧-5'-(乙硫基)腺苷、5'-脱氧-5'-(羟乙硫基)腺苷(HETA)和5'-脱氧-5'-(单氟乙硫基)腺苷的50%抑制浓度分别为80、46和61 microM。发现恶性疟原虫提取物具有大量的MTA磷酸化酶活性。MTA与HETA共同给药可部分保护寄生虫免受HETA的生长抑制作用。这项研究的结果表明,恶性疟原虫具有一种活性MTA磷酸化酶,MTA类似物可以靶向该酶。