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Lewis A聚糖存在于参与细胞壁生物合成的蛋白质上,并且在自然种质中呈现出进化上的保守性。

Lewis A Glycans Are Present on Proteins Involved in Cell Wall Biosynthesis and Appear Evolutionarily Conserved Among Natural Accessions.

作者信息

Beihammer Gernot, Maresch Daniel, Altmann Friedrich, Van Damme Els J M, Strasser Richard

机构信息

Department of Applied Genetics and Cell Biology, Institute of Plant Biotechnology and Cell Biology, University of Natural Resources and Life Sciences, Vienna, Austria.

Division of Biochemistry, Department of Chemistry, University of Natural Resources and Life Sciences, Vienna, Austria.

出版信息

Front Plant Sci. 2021 Mar 11;12:630891. doi: 10.3389/fpls.2021.630891. eCollection 2021.

Abstract

N-glycosylation is a highly abundant protein modification present in all domains of life. Terminal sugar residues on complex-type N-glycans mediate various crucial biological processes in mammals such as cell-cell recognition or protein-ligand interactions. In plants, the Lewis A trisaccharide constitutes the only known outer-chain elongation of complex N-glycans. Lewis A containing complex N-glycans appear evolutionary conserved, having been identified in all plant species analyzed so far. Despite their ubiquitous occurrence, the biological function of this complex N-glycan modification is currently unknown. Here, we report the identification of Lewis A bearing glycoproteins from three different plant species: , and . Affinity purification via the JIM84 antibody, directed against Lewis A structures on complex plant N-glycans, was used to enrich Lewis A bearing glycoproteins, which were subsequently identified via nano-LC-MS. Selected identified proteins were recombinantly expressed and the presence of Lewis A confirmed via immunoblotting and site-specific N-glycan analysis. While the proteins identified in are associated with diverse functions, proteins from and are mainly involved in cell wall biosynthesis. However, a Lewis A-deficient mutant line of showed no change in abundance of cell wall constituents such as cellulose or lignin. Furthermore, we investigated the presence of Lewis A structures in selected accessions from the 1001 genome database containing amino acid variations in the enzymes required for Lewis A biosynthesis. Besides one relict line showing no detectable levels of Lewis A, the modification was present in all other tested accessions. The data provided here comprises the so far first attempt at identifying Lewis A bearing glycoproteins across different species and will help to shed more light on the role of Lewis A structures in plants.

摘要

N-糖基化是一种在所有生命领域中都高度丰富的蛋白质修饰。复合型N-聚糖上的末端糖残基介导哺乳动物体内各种关键的生物学过程,如细胞间识别或蛋白质-配体相互作用。在植物中,Lewis A三糖是已知的唯一复合型N-聚糖外链延伸形式。含有Lewis A的复合型N-聚糖在进化上似乎是保守的,在目前分析的所有植物物种中都已被鉴定出来。尽管它们普遍存在,但这种复合型N-聚糖修饰的生物学功能目前尚不清楚。在此,我们报告了从三种不同植物物种中鉴定出带有Lewis A的糖蛋白: 、 和 。通过针对植物复合型N-聚糖上Lewis A结构的JIM84抗体进行亲和纯化,以富集带有Lewis A的糖蛋白,随后通过纳升液相色谱-质谱联用技术对其进行鉴定。对选定的已鉴定蛋白质进行重组表达,并通过免疫印迹和位点特异性N-聚糖分析确认Lewis A的存在。虽然在 中鉴定出的蛋白质具有多种功能,但来自 和 的蛋白质主要参与细胞壁生物合成。然而, 的一个Lewis A缺陷突变系在细胞壁成分如纤维素或木质素的丰度上没有变化。此外,我们研究了1001基因组数据库中选定种质中Lewis A结构的存在情况,这些种质在Lewis A生物合成所需的酶中存在氨基酸变异。除了一个未检测到Lewis A水平的残留系外,在所有其他测试种质中都存在这种修饰。本文提供的数据是迄今为止首次尝试跨不同物种鉴定带有Lewis A的糖蛋白,将有助于更深入地了解Lewis A结构在植物中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5203/7991798/55fc6edc67ac/fpls-12-630891-g0001.jpg

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