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烟草凝集素,Nictaba相关蛋白家族的原型。

The tobacco lectin, prototype of the family of Nictaba-related proteins.

作者信息

Delporte Annelies, Van Holle Sofie, Lannoo Nausicaa, Van Damme Els J M

机构信息

Ghent University, Department of Molecular Biotechnology, Coupure links 653, B-9000 GHENT, Belgium.

出版信息

Curr Protein Pept Sci. 2015;16(1):5-16. doi: 10.2174/1389203716666150213154107.

Abstract

In the last decade, a new class of low abundant plant l ectins was identified. These proteins are expressed after exposure of the plant to different stress factors and changing environmental conditions, and therefore are referred to as "inducible" lectins. Interestingly, these lectins accumulate in the nucleocytoplasmic compartment of plant cells. At present at least six carbohydrate recognition domains have been identified within the group of nucleocytoplasmic plant lectins. This review will focus on a group of proteins that show homology to the Nicotiana tabacum (tobacco) agglutinin or Nictaba. The tobacco lectin is a 38 kDa nucleocytoplasmic protein which is only expressed upon treatment with jasmonate-related compounds or after insect herbivory. The lectin exhibits specificity towards GlcNAc, but also reacts with N-glycan structures. Extensive searches revealed that Nictaba-related sequences are widespread in the plant kingdom. Analyses of the different transcriptome databases showed that the Nictaba domain is often part of chimeric proteins comprising one or more Nictaba domain(s) fused to unrelated N- and C-terminal domains with (un)known function. At present only few proteins of these Nictaba-related proteins have been studied and characterized for their biological properties and physiological role. Despite the sequence similarity and the conserved amino acids constituting the binding site, the Nictaba domain has a promiscuous carbohydrate binding site capable of interacting with different carbohydrate motifs, suggesting that subtle changes in the vicinity of the binding site can alter its sugar specificity.

摘要

在过去十年中,一类新的低丰度植物凝集素被鉴定出来。这些蛋白质在植物暴露于不同胁迫因子和变化的环境条件后表达,因此被称为“诱导型”凝集素。有趣的是,这些凝集素在植物细胞的核质区室中积累。目前,在核质植物凝集素组中已鉴定出至少六个碳水化合物识别结构域。本综述将聚焦于一组与烟草凝集素或Nictaba具有同源性的蛋白质。烟草凝集素是一种38 kDa的核质蛋白,仅在茉莉酸相关化合物处理后或昆虫取食后表达。该凝集素对GlcNAc具有特异性,但也与N-聚糖结构发生反应。广泛搜索发现,与Nictaba相关的序列在植物界广泛存在。对不同转录组数据库的分析表明,Nictaba结构域通常是嵌合蛋白的一部分,该嵌合蛋白包含一个或多个与具有(未知)功能的不相关N端和C端结构域融合的Nictaba结构域。目前,这些与Nictaba相关的蛋白质中只有少数几种蛋白质的生物学特性和生理作用得到过研究和表征。尽管序列相似性以及构成结合位点的保守氨基酸存在,但Nictaba结构域具有一个能够与不同碳水化合物基序相互作用的混杂碳水化合物结合位点,这表明结合位点附近的细微变化可能会改变其糖特异性。

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