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来自卡内弗拉咖啡种子的具有α-淀粉酶抑制特性的新型脂质转移蛋白(LTP)的纯化、生化特性及抗真菌活性

Purification, biochemical characterization and antifungal activity of a new lipid transfer protein (LTP) from Coffea canephora seeds with α-amylase inhibitor properties.

作者信息

Zottich Umberto, Da Cunha Maura, Carvalho André O, Dias Germana B, Silva Nádia C M, Santos Izabela S, do Nacimento Viviane V, Miguel Emílio C, Machado Olga L T, Gomes Valdirene M

机构信息

Universidade Estadual do Norte Fluminense, Laboratório de Fisiologia e Bioquímica de Microrganismos, Campos dos Goytacazes, 28013-602, RJ, Brazil.

出版信息

Biochim Biophys Acta. 2011 Apr;1810(4):375-83. doi: 10.1016/j.bbagen.2010.12.002. Epub 2010 Dec 16.

Abstract

BACKGROUND

A growing number of cysteine-rich antimicrobial peptides (AMPs) have been isolated from plants and particularly from seeds. It has become increasingly clear that these peptides, which include lipid transfer proteins (LTPs), play an important role in the protection of plants against microbial infection.

METHODS

Peptides from Coffea canephora seeds were extracted in Tris-HCl buffer (pH 8.0), and chromatographic purification of LTP was performed by DEAE and reverse-phase HPLC. The purified peptide was submitted to amino acid sequence, antimicrobial activity and mammalian α-amylase inhibitory analyses.

RESULTS

The purified peptide of 9kDa had homology to LTPs isolated from different plants. Bidimensional electrophoresis of the 9kDa band showed the presence of two isoforms with pIs of 8.0 and 8.5. Cc-LTP(1) exhibited strong antifungal activity, against Candida albicans, and also promoted morphological changes including the formation of pseudohyphae on Candida tropicalis, as revealed by electron micrograph. Our results show that Cc-LTP(1) interfered in a dose-dependent manner with glucose-stimulated, H(+)-ATPase-dependent acidification of yeast medium and that the peptide permeabilized yeast plasma membranes to the dye SYTOX green, as verified by fluorescence microscopy. Interestingly, we also showed for the first time that the well characterized LTP(1) family, represented here by Cc-LTP(1), was also able to inhibit mammalian α-amylase activity in vitro.

CONCLUSIONS AND GENERAL SIGNIFICANCE

In this work we purified, characterized and evaluated the in vitro effect on yeast of a new peptide from coffee, named Cc-LPT1, which we also showed, for the first time, the ability to inhibit mammalian α-amylase activity.

摘要

背景

越来越多富含半胱氨酸的抗菌肽(AMPs)已从植物尤其是种子中分离出来。越来越清楚的是,这些包括脂质转移蛋白(LTPs)在内的肽在保护植物免受微生物感染方面发挥着重要作用。

方法

从咖啡种子中提取的肽在Tris-HCl缓冲液(pH 8.0)中进行提取,LTP的色谱纯化通过DEAE和反相HPLC进行。对纯化后的肽进行氨基酸序列、抗菌活性和哺乳动物α-淀粉酶抑制分析。

结果

纯化后的9kDa肽与从不同植物中分离出的LTPs具有同源性。9kDa条带的二维电泳显示存在两种等电点分别为8.0和8.5的异构体。Cc-LTP(1)对白色念珠菌表现出强烈的抗真菌活性,并且还促进了形态变化,包括热带念珠菌上假菌丝的形成,电子显微镜图像显示了这一点。我们的结果表明,Cc-LTP(1)以剂量依赖的方式干扰了葡萄糖刺激的、H(+)-ATP酶依赖的酵母培养基酸化,并且该肽使酵母质膜对染料SYTOX green具有通透性,荧光显微镜验证了这一点。有趣的是,我们还首次表明,以Cc-LTP(1)为代表的特征明确的LTP(1)家族在体外也能够抑制哺乳动物α-淀粉酶活性。

结论及一般意义

在这项工作中,我们纯化、表征并评估了一种来自咖啡的名为Cc-LPT1的新肽对酵母的体外作用,我们还首次展示了其抑制哺乳动物α-淀粉酶活性的能力。

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