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血红素结合谷胱甘肽 S-转移酶的分子克隆、生化特性及其部分保护性免疫研究:来自美洲钩虫 Necator americanus 的人源虫体。

Molecular cloning, biochemical characterization, and partial protective immunity of the heme-binding glutathione S-transferases from the human hookworm Necator americanus.

机构信息

Department of Microbiology and Tropical Medicine, The George Washington University and Sabin Vaccine Institute, Ross Hall 736, 2300 Eye St NW, Washington, DC 20037, USA.

出版信息

Infect Immun. 2010 Apr;78(4):1552-63. doi: 10.1128/IAI.00848-09. Epub 2010 Feb 9.

Abstract

Hookworm glutathione S-transferases (GSTs) are critical for parasite blood feeding and survival and represent potential targets for vaccination. Three cDNAs, each encoding a full-length GST protein from the human hookworm Necator americanus (and designated Na-GST-1, Na-GST-2, and Na-GST-3, respectively) were isolated from cDNA based on their sequence similarity to Ac-GST-1, a GST from the dog hookworm Ancylostoma caninum. The open reading frames of the three N. americanus GSTs each contain 206 amino acids with 51% to 69% sequence identity between each other and Ac-GST-1. Sequence alignment with GSTs from other organisms shows that the three Na-GSTs belong to a nematode-specific nu-class GST family. All three Na-GSTs, when expressed in Pichia pastoris, exhibited low lipid peroxidase and glutathione-conjugating enzymatic activities but high heme-binding capacities, and they may be involved in the detoxification and/or transport of heme. In two separate vaccine trials, recombinant Na-GST-1 formulated with Alhydrogel elicited 32 and 39% reductions in adult hookworm burdens (P < 0.05) following N. americanus larval challenge relative to the results for a group immunized with Alhydrogel alone. In contrast, no protection was observed in vaccine trials with Na-GST-2 or Na-GST-3. On the basis of these and other preclinical data, Na-GST-1 is under possible consideration for further vaccine development.

摘要

钩虫谷胱甘肽 S-转移酶 (GSTs) 对寄生虫的血液摄取和生存至关重要,是疫苗接种的潜在靶点。从 cDNA 中分离出三种 cDNA,分别编码来自人类钩虫 Necator americanus 的全长 GST 蛋白(分别命名为 Na-GST-1、Na-GST-2 和 Na-GST-3),这些 cDNA 是基于与犬钩虫 Ancylostoma caninum 的 GST Ac-GST-1 的序列相似性而鉴定的。这三种 N. americanus GST 的开放阅读框均包含 206 个氨基酸,彼此之间的序列同一性为 51%至 69%,与 Ac-GST-1 相同。与来自其他生物体的 GST 进行序列比对表明,这三种 Na-GST 属于线虫特异性 nu 类 GST 家族。当在毕赤酵母中表达时,所有三种 Na-GST 均表现出低脂质过氧化物酶和谷胱甘肽结合酶活性,但具有高血红素结合能力,它们可能参与血红素的解毒和/或转运。在两项单独的疫苗试验中,与单独使用 Alhydrogel 免疫的组相比,用 Alhydrogel 配制的重组 Na-GST-1 对 N. americanus 幼虫攻击后,成年钩虫负担分别降低了 32%和 39%(P<0.05)。相比之下,在使用 Na-GST-2 或 Na-GST-3 的疫苗试验中未观察到保护作用。基于这些和其他临床前数据,Na-GST-1 可能被考虑进一步开发疫苗。

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