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蓝刺头(菊科)中一种高DP果聚糖:果聚糖1-果糖基转移酶的克隆与功能分析:天然酶与重组酶的比较

Cloning and functional analysis of a high DP fructan:fructan 1-fructosyl transferase from Echinops ritro (Asteraceae): comparison of the native and recombinant enzymes.

作者信息

Van den Ende Wim, Clerens Stefan, Vergauwen Rudy, Boogaerts David, Le Roy Katrien, Arckens Lutgarde, Van Laere André

机构信息

KU Leuven, Laboratory of Molecular Plant Physiology, Kasteelpark Arenberg 31, B-3001 Leuven, Belgium.

出版信息

J Exp Bot. 2006;57(4):775-89. doi: 10.1093/jxb/erj065. Epub 2006 Jan 31.

Abstract

Inulin-type fructans are the simplest and most studied fructans and have become increasingly popular as prebiotic health-improving compounds. A natural variation in the degree of polymerization (DP) of inulins is observed within the family of the Asteraceae. Globe thistle (Echinops ritro), artichoke (Cynara scolymus), and Viguiera discolor biosynthesize fructans with a considerably higher DP than Cichorium intybus (chicory), Helianthus tuberosus (Jerusalem artichoke), and Dahlia variabilis. The higher DP in some species can be explained by the presence of special fructan:fructan 1-fructosyl transferases (high DP 1-FFTs), different from the classical low DP 1-FFTs. Here, the RT-PCR-based cloning of a high DP 1-FFT cDNA from Echinops ritro is described, starting from peptide sequence information derived from the purified native high DP 1-FFT enzyme. The cDNA was successfully expressed in Pichia pastoris. A comparison is made between the mass fingerprints of the native, heterodimeric enzyme and its recombinant, monomeric counterpart (mass fingerprints and kinetical analysis) showing that they have very similar properties. The recombinant enzyme is a functional 1-FFT lacking invertase and 1-SST activities, but shows a small intrinsic 1-FEH activity. The enzyme is capable of producing a high DP inulin pattern in vitro, similar to the one observed in vivo. Depending on conditions, the enzyme is able to produce fructo-oligosaccharides (FOS) as well. Therefore, the enzyme might be suitable for both FOS and high DP inulin production in bioreactors. Alternatively, introduction of the high DP 1-FFT gene in chicory, a crop widely used for inulin extraction, could lead to an increase in DP which is useful for a number of specific industrial applications. 1-FFT expression analysis correlates well with high DP fructan accumulation in vivo, suggesting that the enzyme is responsible for high DP fructan formation in planta.

摘要

菊糖型果聚糖是最简单且研究最多的果聚糖,作为益生元健康改善化合物越来越受欢迎。菊科植物中观察到菊糖聚合度(DP)存在自然变异。蓝刺头(Echinops ritro)、菊芋(Cynara scolymus)和变色牛膝菊(Viguiera discolor)生物合成的果聚糖DP比菊苣(Cichorium intybus)、菊芋(Helianthus tuberosus)和大丽花(Dahlia variabilis)高得多。某些物种中较高的DP可归因于存在特殊的果聚糖:果聚糖1-果糖基转移酶(高DP 1-FFT),不同于经典的低DP 1-FFT。本文描述了基于RT-PCR从蓝刺头中克隆高DP 1-FFT cDNA的过程,该过程始于从纯化的天然高DP 1-FFT酶获得的肽序列信息。该cDNA在毕赤酵母中成功表达。对天然异二聚体酶及其重组单体对应物的质量指纹图谱进行了比较(质量指纹图谱和动力学分析),结果表明它们具有非常相似的性质。重组酶是一种功能性1-FFT,缺乏转化酶和1-SST活性,但具有较小的内在1-FEH活性。该酶能够在体外产生高DP菊糖模式,类似于体内观察到的模式。根据条件,该酶也能够产生低聚果糖(FOS)。因此,该酶可能适用于生物反应器中FOS和高DP菊糖的生产。或者,将高DP 1-FFT基因导入广泛用于菊糖提取的作物菊苣中可能会导致DP增加,这对许多特定工业应用有用。1-FFT表达分析与体内高DP果聚糖积累密切相关,表明该酶负责植物中高DP果聚糖的形成。

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