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通过蛋白质糖基化分析监测植物钙网蛋白的内质网到高尔基体运输

Monitoring endoplasmic reticulum-to-Golgi traffic of a plant calreticulin by protein glycosylation analysis.

作者信息

Navazio Lorella, Miuzzo Manuela, Royle Louise, Baldan Barbara, Varotto Serena, Merry Anthony H, Harvey David J, Dwek Raymond A, Rudd Pauline M, Mariani Paola

机构信息

Dipartimento di Biologia, Università di Padova, Via U. Bassi 58/B, 35131 Padova, Italy.

出版信息

Biochemistry. 2002 Dec 3;41(48):14141-9. doi: 10.1021/bi0204701.

Abstract

Calreticulin is a ubiquitous and highly conserved Ca(2+)-binding protein that is involved in intracellular Ca(2+) homeostasis and molecular chaperoning in the endoplasmic reticulum (ER). Plant calreticulin, in contrast to its animal counterpart, is often glycosylated: its N-glycans have been shown so far to be of the high-mannose type, typical of ER-resident glycoproteins. During the characterization of calreticulin from vegetative and reproductive tissues of Liriodendron tulipifera L., we gained some biochemical evidence that prompted us to investigate the monosaccharide composition and primary structure of the calreticulin N-glycans isolated from the ovary of this dicotyledon tree. The structures of the components of the N-glycan pool were elucidated by HPLC analysis and exoglycosidase sequencing, and further confirmed by matrix-assisted laser desorption/ionization mass spectrometry. The 16 identified oligosaccharide structures, which consisted of both the high-mannose and complex type, are indicative of calreticulin glycan processing through the ER-to-Golgi pathway up to the medial and trans Golgi stacks. Approximately 45% of calreticulin glycan chains are of the complex type, always containing beta(1,2)-xylose, and approximately a third of these also contain alpha(1,3)-fucose in the core. The most complex glycoform harbors the Lewis-a epitope Gal(beta)1-3[Fuc(alpha)1-4]GlcNAc. Immunolocalization of calreticulin with anti-calreticulin antibodies was consistent with protein transit through the Golgi. Thus, although it contains the tetrapeptide HDEL ER retention signal, the reticuloplasmin calreticulin possesses the competence to transit from the ER compartment to the distal Golgi stacks. The final fate of the protein after its complete maturation is still obscure.

摘要

钙网蛋白是一种普遍存在且高度保守的钙结合蛋白,参与细胞内钙稳态以及内质网(ER)中的分子伴侣作用。与动物钙网蛋白不同,植物钙网蛋白通常发生糖基化:迄今为止,其N - 聚糖已被证明是高甘露糖型,这是内质网驻留糖蛋白的典型特征。在对鹅掌楸营养组织和生殖组织中的钙网蛋白进行表征的过程中,我们获得了一些生化证据,促使我们研究从这种双子叶树的卵巢中分离出的钙网蛋白N - 聚糖的单糖组成和一级结构。通过高效液相色谱分析和外切糖苷酶测序阐明了N - 聚糖池成分的结构,并通过基质辅助激光解吸/电离质谱进一步证实。鉴定出的16种寡糖结构,包括高甘露糖型和复合型,表明钙网蛋白聚糖通过内质网到高尔基体途径加工直至中间高尔基体和反式高尔基体堆叠。大约45%的钙网蛋白聚糖链是复合型,总是含有β(1,2) - 木糖,其中大约三分之一在核心中还含有α(1,3) - 岩藻糖。最复杂的糖型含有Lewis - a表位Gal(β)1 - 3[Fuc(α)1 - 4]GlcNAc。用抗钙网蛋白抗体对钙网蛋白进行免疫定位与蛋白质通过高尔基体的转运一致。因此,尽管它含有四肽HDEL内质网保留信号,但网质体钙网蛋白具有从内质网区室转运到远端高尔基体堆叠的能力。该蛋白完全成熟后的最终命运仍不清楚。

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