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甜瓜果实碱性α-半乳糖苷酶的克隆与功能表达:与植物SIP蛋白的相似性揭示了一个新的植物糖基水解酶家族。

Cloning and functional expression of alkaline alpha-galactosidase from melon fruit: similarity to plant SIP proteins uncovers a novel family of plant glycosyl hydrolases.

作者信息

Carmi Nir, Zhang Genfa, Petreikov Marina, Gao Zhifang, Eyal Yoram, Granot David, Schaffer Arthur A

机构信息

Institute of Field and Garden Crops, ARO, the Volcani Center, Bet Dagan 50250, Israel.

出版信息

Plant J. 2003 Jan;33(1):97-106. doi: 10.1046/j.1365-313x.2003.01609.x.


DOI:10.1046/j.1365-313x.2003.01609.x
PMID:12943544
Abstract

Raffinose and stachyose are ubiquitous galactosyl-sucrose oligosaccharides in the plant kingdom which play major roles, second only to sucrose, in photoassimilate translocation and seed carbohydrate storage. These sugars are initially metabolised by alpha-galactosidases (alpha-gal). We report the cloning and functional expression of the first genes, CmAGA1 and CmAGA2, encoding for plant alpha-gals with alkaline pH optima from melon fruit (Cucumis melo L.), a raffinose and stachyose translocating species. The alkaline alpha-gal genes show very high sequence homology with a family of undefined 'seed imbibition proteins' (SIPs) which are present in a wide range of plant families. In order to confirm the function of SIP proteins, a representative SIP gene, from tomato, was expressed and shown to have alkaline alpha-gal activity. Phylogenetic analysis based on amino acid sequences shows that the family of alkaline alpha-gals shares little homology with the known prokaryotic and eukaryotic alpha-gals of glycosyl hydrolase families 27 and 36, with the exception of two cross-family conserved sequences containing aspartates which probably function in the catalytic step. This previously uncharacterised, plant-specific alpha-gal family of glycosyl hydrolases, with optimal activity at neutral-alkaline pH likely functions in key processes of galactosyl-oligosaccharide metabolism, such as during seed germination and translocation of RFO photosynthate.

摘要

棉子糖和水苏糖是植物界普遍存在的半乳糖基蔗糖寡糖,在光合产物转运和种子碳水化合物储存方面发挥着仅次于蔗糖的重要作用。这些糖类最初由α-半乳糖苷酶(α-gal)代谢。我们报道了首个编码来自甜瓜果实(甜瓜)的具有碱性最适pH值的植物α-gal的基因CmAGA1和CmAGA2的克隆及功能表达,甜瓜是一种转运棉子糖和水苏糖的物种。碱性α-gal基因与广泛存在于多个植物科的一类未明确的“种子吸胀蛋白”(SIPs)具有非常高的序列同源性。为了证实SIP蛋白的功能,来自番茄的一个代表性SIP基因被表达并显示具有碱性α-gal活性。基于氨基酸序列的系统发育分析表明,碱性α-gal家族与糖基水解酶家族27和36中已知的原核和真核α-gal几乎没有同源性,除了两个含有天冬氨酸的跨家族保守序列,它们可能在催化步骤中发挥作用。这个以前未被表征的、植物特有的糖基水解酶α-gal家族,在中性至碱性pH下具有最佳活性,可能在半乳糖基寡糖代谢的关键过程中发挥作用,例如在种子萌发和棉子糖家族寡糖光合产物转运期间。

相似文献

[1]
Cloning and functional expression of alkaline alpha-galactosidase from melon fruit: similarity to plant SIP proteins uncovers a novel family of plant glycosyl hydrolases.

Plant J. 2003-1

[2]
Cloning and expression analysis of a UDP-galactose/glucose pyrophosphorylase from melon fruit provides evidence for the major metabolic pathway of galactose metabolism in raffinose oligosaccharide metabolizing plants.

Plant Physiol. 2006-9

[3]
Characteristics and expression patterns of six α-galactosidases in cucumber (Cucumis sativus L.).

PLoS One. 2021

[4]
CsAGA1 and CsAGA2 Mediate RFO Hydrolysis in Partially Distinct Manner in Cucumber Fruits.

Int J Mol Sci. 2021-12-10

[5]
Structural insight into the hydrolase and synthase activities of an alkaline α-galactosidase from Arabidopsis from complexes with substrate/product.

Acta Crystallogr D Struct Biol. 2023-2-1

[6]
Beta-mannosidase (EC 3.2.1.25) activity during and following germination of tomato (Lycopersicon esculentum Mill.) seeds. Purification, cloning and characterization.

Planta. 2002-5

[7]
Cloning, sequence, and expression of a blood group B active recombinant alpha-D-galactosidase from pinto bean (Phaseolus vulgaris).

Biochem Mol Biol Int. 1997-7

[8]
Cloning, functional expression, and characterization of the raffinose oligosaccharide chain elongation enzyme, galactan:galactan galactosyltransferase, from common bugle leaves.

Plant Physiol. 2004-4

[9]
The cloning and characterization of alpha-galactosidase present during and following germination of tomato (Lycopersicon esculentum Mill.) seed.

J Exp Bot. 2001-6

[10]
A novel alkaline alpha-galactosidase gene is involved in rice leaf senescence.

Plant Mol Biol. 2004-5

引用本文的文献

[1]
Significance of Raffinose Family Oligosaccharides (RFOs) metabolism in plants.

Adv Biotechnol (Singap). 2024-3-19

[2]
The Relationship between the Sugar Preference of Bacterial Pathogens and Virulence on Plants.

Plant Pathol J. 2023-12

[3]
Phloem unloading in cultivated melon fruits follows an apoplasmic pathway during enlargement and ripening.

Hortic Res. 2023-7-4

[4]
Structural insight into the hydrolase and synthase activities of an alkaline α-galactosidase from Arabidopsis from complexes with substrate/product.

Acta Crystallogr D Struct Biol. 2023-2-1

[5]
Transcriptional regulation of the raffinose family oligosaccharides pathway in reveals potential roles in leaf sucrose transport and stem sucrose accumulation.

Front Plant Sci. 2022-12-9

[6]
Ectopic expression of a grapevine alkaline α-galactosidase seed imbibition protein VvSIP enhanced salinity tolerance in transgenic tobacco plants.

Funct Integr Genomics. 2022-12-22

[7]
A time-course transcriptome analysis of wax gourd fruit development reveals predominant genes regulating taste and nutrition.

Front Plant Sci. 2022-9-8

[8]
Alkaline α-galactosidase 2 (CsAGA2) plays a pivotal role in mediating source-sink communication in cucumber.

Plant Physiol. 2022-6-27

[9]
CsAGA1 and CsAGA2 Mediate RFO Hydrolysis in Partially Distinct Manner in Cucumber Fruits.

Int J Mol Sci. 2021-12-10

[10]
Mobile forms of carbon in trees: metabolism and transport.

Tree Physiol. 2022-3-9

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