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Lectin genes and their mature proteins: Still an exciting matter, as revealed by biochemistry and bioinformatics analyses of newly reported proteins

机译:凝集素基因及其成熟蛋白质:仍然是令人兴奋的事情,正如对新报道的蛋白质的生物化学和生物信息学分析所揭示的那样

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Two new lectins were purified through affinity chromatography after crude extract preparation under high ionic strength. The hemagglutinating activity of these lectins from the seeds of the legumes Dioclea bicolor (DBL) and Deguelia scandens (DSL) was inhibited by galactose and glucose, respectively, and the molecular masses were estimated at 24 and 22 kDa (via SDS-PAGE), respectively. The alignment of internal peptides of DBL (MS/MS) with known protein sequences revealed similarity to other legume lectins. The N-terminal amino acid sequence of DSL also aligned with legume lectins. Cross-similarities among the two studied lectins were observed only after sequence permutation. More than a dozen lectins have been reported for the genus Diodea but none that recognize galactose. DSL is the first lectin reported for the Deguelia genus in the tribe Millettieae. With the aid of bioinformatics tools and searches for genome/transcriptome information about closely related sequences, new lectin members of Millettieae were also identified. Electrophoresis profiling and amino acid sequence analysis suggested that DBL-Gal and DSL do not undergo post-transcriptional ConA-like circular permutation. Molecular modeling of the deduced amino acid sequences of the Millettieae lectins suggested that the overall folding of the monomeric structures of legume lectins is conserved. This and other recent studies highlight native plants of the Amazon as renewed sources of lectins. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在高离子强度下制备粗提物后,通过亲和色谱纯化了两种新的凝集素。这些半乳糖和葡萄糖分别抑制了豆科植物Dioclea bicolor(DBL)和Deguelia scandens(DSL)种子中的这些凝集素的血凝活性,其分子质量估计为24和22 kDa(通过SDS-PAGE),分别。 DBL内部肽(MS / MS)与已知蛋白质序列的比对揭示了与其他豆类凝集素的相似性。 DSL的N末端氨基酸序列也与豆科植物凝集素比对。仅在序列置换后才观察到两个研究的凝集素之间的交叉相似性。已经报道了十二指肠属的十二种凝集素,但没有一种能识别半乳糖。 DSL是Millettieae部落中为Deguelia属报道的第一种凝集素。借助生物信息学工具并搜索有关紧密相关序列的基因组/转录组信息,还鉴定了千足莲的新凝集素成员。电泳分析和氨基酸序列分析表明,DBL-Gal和DSL不会经历转录后ConA样的环状置换。千层凝集素的推导氨基酸序列的分子模型表明,豆科植物凝集素的单体结构的整体折叠是保守的。这项研究和其他最近的研究强调了亚马逊河的天然植物是凝集素的新来源。 (C)2015 Elsevier Ltd.保留所有权利。

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