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发芽咖啡(阿拉伯咖啡)籽粒中内切-β-甘露聚糖酶的分子和生化特性

Molecular and biochemical characterization of endo-beta-mannanases from germinating coffee (Coffea arabica) grains.

作者信息

Marraccini P, Rogers W J, Allard C, André M L, Caillet V, Lacoste N, Lausanne F, Michaux S

机构信息

Department of Plant Science, Nestlé Research Centre, Tours, France.

出版信息

Planta. 2001 Jun;213(2):296-308. doi: 10.1007/s004250100541.

Abstract

The activity of endo-beta-mannanase ([1-->4]-beta-mannan endohydrolase EC 3.2.1.78) is likely to be central to the metabolism of cell wall mannans during the germination of grains of coffee (Coffea spp.). In the present paper, we report the cloning and sequencing of two endo-beta-mannanase cDNAs (manA and manB) by different strategies from Coffea arabica L.. The manA cDNA was obtained by the use of oligonucleotides homologous to published sequences of other endo-beta-mannanases and manB by the use of oligonucleotides deduced from a purified enzyme from coffee. ManA and B proteins share about 56% sequence homology and include highly conserved regions found in other mannan endohydrolases. Purification of the activity by chromatography followed by separation by two-dimensional electrophoresis and amino acid sequencing demonstrated the existence of at least seven isomers of the ManB form. The existence of multiple manB genes was also indicated by Southern analysis, whereas only one or two gene copies were detected for manA. Northern hybridizations with manA- and manB-specific probes showed that mRNA transcripts for both cDNAs were present at the same periods of bean germination with transcript peaks at 20 days after imbibition of water (DAI). Transcripts were not detected during grain maturation or in the other tissues such as roots, stems, flowers and leaves. The peak endo-beta-mannanase activity occurred at approximately 28 DAI and was not detected in grains prior to imbibition. Activity and mRNA levels appeared to be tightly co-ordinated. Tests of substrate specificity with the purified ManB enzyme showed that activity required a minimum of five mannose units to function efficiently.

摘要

内切-β-甘露聚糖酶([1→4]-β-甘露聚糖内切水解酶,EC 3.2.1.78)的活性可能在咖啡(咖啡属)种子萌发过程中细胞壁甘露聚糖的代谢中起核心作用。在本文中,我们报道了通过不同策略从阿拉伯咖啡中克隆和测序两个内切-β-甘露聚糖酶cDNA(manA和manB)的情况。manA cDNA是通过使用与其他内切-β-甘露聚糖酶已发表序列同源的寡核苷酸获得的,而manB是通过使用从咖啡纯化酶推导的寡核苷酸获得的。ManA和B蛋白具有约56%的序列同源性,并包含在其他甘露聚糖内切水解酶中发现的高度保守区域。通过色谱法纯化活性,随后通过二维电泳分离和氨基酸测序,证明了ManB形式至少存在七种异构体。Southern分析也表明存在多个manB基因,而manA仅检测到一两个基因拷贝。用manA和manB特异性探针进行的Northern杂交表明,两种cDNA的mRNA转录本在种子萌发的同一时期出现,在吸水后20天(DAI)出现转录本峰值。在种子成熟期间或在根、茎、花和叶等其他组织中未检测到转录本。内切-β-甘露聚糖酶活性峰值出现在大约28 DAI,在吸水前的种子中未检测到。活性和mRNA水平似乎紧密协调。用纯化的ManB酶进行底物特异性测试表明,活性需要至少五个甘露糖单位才能有效发挥作用。

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