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鉴定和演化一种植物细胞壁特异糖蛋白糖基转移酶 ExAD。

Identification and evolution of a plant cell wall specific glycoprotein glycosyl transferase, ExAD.

机构信息

Department of Plant and Environmental Sciences, VKR Research Centre, University of Copenhagen, Frederiksberg C, DK-1871, Denmark.

Fundación Instituto Leloir and IIBBA-CONICET, Av. Patricia Argentinas 435, Buenos Aires, C1405BWE, Argentina.

出版信息

Sci Rep. 2017 Mar 30;7:45341. doi: 10.1038/srep45341.

Abstract

Extensins are plant cell wall glycoproteins that act as scaffolds for the deposition of the main wall carbohydrate polymers, which are interlocked into the supramolecular wall structure through intra- and inter-molecular iso-di-tyrosine crosslinks within the extensin backbone. In the conserved canonical extensin repeat, Ser-Hyp, serine and the consecutive C4-hydroxyprolines (Hyps) are substituted with an α-galactose and 1-5 β- or α-linked arabinofuranoses (Arafs), respectively. These modifications are required for correct extended structure and function of the extensin network. Here, we identified a single Arabidopsis thaliana gene, At3g57630, in clade E of the inverting Glycosyltransferase family GT47 as a candidate for the transfer of Araf to Hyp-arabinofuranotriose (Hyp-β1,4Araf-β1,2Araf-β1,2Araf) side chains in an α-linkage, to yield Hyp-Araf which is exclusively found in extensins. T-DNA knock-out mutants of At3g57630 showed a truncated root hair phenotype, as seen for mutants of all hitherto characterized extensin glycosylation enzymes; both root hair and glycan phenotypes were restored upon reintroduction of At3g57630. At3g57630 was named Extensin Arabinose Deficient transferase, ExAD, accordingly. The occurrence of ExAD orthologs within the Viridiplantae along with its' product, Hyp-Araf, point to ExAD being an evolutionary hallmark of terrestrial plants and charophyte green algae.

摘要

伸展蛋白是植物细胞壁糖蛋白,作为主要细胞壁碳水化合物聚合物沉积的支架,这些聚合物通过伸展蛋白骨架内的同分子和异分子异二酪氨酸交联而相互锁定到超分子细胞壁结构中。在保守的典型伸展蛋白重复序列 Ser-Hyp 中,丝氨酸和连续的 C4-羟脯氨酸(Hyp)分别被α-半乳糖和 1-5β-或α-连接的阿拉伯呋喃糖(Araf)取代。这些修饰对于伸展蛋白网络的正确伸展结构和功能是必需的。在这里,我们在反式糖苷基转移酶家族 GT47 的 E 族中鉴定出拟南芥 At3g57630 基因,作为将 Araf 转移到 Hyp-α-阿拉伯呋喃三糖(Hyp-β1,4Araf-β1,2Araf-β1,2Araf)侧链的候选基因,以产生仅在伸展蛋白中发现的 Hyp-Araf。At3g57630 的 T-DNA 敲除突变体表现出截短的根毛表型,就像所有迄今为止鉴定的伸展蛋白糖基化酶的突变体一样;根毛和聚糖表型在重新引入 At3g57630 后得到恢复。因此,将 At3g57630 命名为伸展蛋白阿拉伯糖缺陷转移酶 ExAD。Viridiplantae 中 ExAD 同源物的存在及其产物 Hyp-Araf 表明,ExAD 是陆地植物和轮藻绿藻的进化标志。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f5f/5371791/af2d682661b9/srep45341-f1.jpg

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