绿色微藻小球藻的n -糖基化谱

M. Yaman, Erdinç Aladağ, H. M. Kayili, Y. Kadioglu, B. Salih
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引用次数: 0

摘要

目前,利用微藻作为生物制药的原料已经提上了议事日程。这个想法背后的原因是微藻是细胞工厂,能够有效地利用二氧化碳来生产许多生物活性化合物。然而,利用微藻生产重组蛋白仍有几个问题有待解决。其中一个关键要求是从分泌的重组蛋白中产生生物相容的n -糖基化谱。然而,关于微藻香料的糖基化机制和n -聚糖谱的知识相当有限。在这项研究中,它的目的是表征绿色微藻,小球藻zofingiensis的n -聚糖谱。为了实现这一目标,光自养生长的小球藻(Chlorella zoofingiensis)提取物包括(glyco-)蛋白被酶解去糖基化并标记为2-氨基苯甲酸标签。释放的n -聚糖采用基于hilic的方法纯化,MALDI-TOF(/TOF)-MS分析。结果表明,zofingiensis具有寡糖型n -聚糖模式。此外,通过MALDI-MS分析,zofingiensis的n -糖基化谱显示,大多数寡糖甘醇n -聚糖被磷酸化。奥兹·古努穆兹德,微分子分子生物学家,用微分子分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家,用分子生物学家。白桦样蛋白、微果皮重组蛋白尿苷、kullanilmasi、cozulmesi等基因在白桦属植物中的应用。【关键词】基因重组蛋白;基因重组蛋白;基因重组蛋白;用微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微微。但是,在N-glikan谱图中,我们发现了一种微球藻(Chlorella zofingiensis)在氮化钾的作用。但小球藻(zoofingiensis)、小球藻(ehreleri)、小球藻(olarak)、小球藻(olarak)、小球藻(olarak)、小球藻(olarak)、小球藻(deglakozile)、小球藻(2-氨基苯甲酰基(2-氨基苯甲酰基)、小球藻(2-氨基苯甲酰基)、小球藻(2-氨基苯甲酰基)、小球藻(2-氨基苯甲酰基)、小球藻(2-氨基苯甲酰基)、小球藻。用MALDI-TOF (/TOF)-MS进行分析。低聚异丙基异丙基异丙基异丙基异丙基异丙基异丙基异丙基异丙基。李建军,李建军,李建军,等。n - glikosilason profilleri, n - glikoanlarin, n - omansidik, N-glikanlarin, N-glikanlarin, N-glikanlarin。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
N-Glycosylation Profiles of the Green Microalgae Chlorella Zofingiensis
Abstract Nowadays, the use of microalgae species as raw materials in biopharmaceutical production is on the agenda. The reason behind this idea is that microalgae are cell factories that are able to efficiently utilize carbon dioxide for the production of numerous biologically active compounds. However, there are several problems that remain to be solved in the production of recombinant protein from microalgaes. One of the critical requirements is to produce a bio-compatible N-glycosylation profile from the secreted recombinant proteins. However, the knowledge about the glycosylation machinery and N-glycan profiles of microalgae spices are quite limited. In the study, it was aimed to characterize N-glycan profiles of a green microalgae, Chlorella zofingiensis. To achieve this, photoautotrophically grown Chlorella zofingiensis extracts including (glyco-)proteins were enzymatically deglycosylated and labelled with 2-aminobenzoic acid tag. Released N-glycans were purified with a HILIC-based approach and analyzed by MALDI-TOF(/TOF)-MS. The results showed that C. zofingiensis included oligomannosidic type N-glycan patterns. In addition, N-glycosylation profiles of C. zofingiensis by MALDI-MS revealed that most of the oligomannosidic N-glycans were phosphorylated. Oz Gunumuzde, mikroalg turlerinin biyofarmasotik uretiminde hammadde olarak kullanimi konusu tartisilmaktadir. .Bu fikrin altinda yatan temel neden mikro alglerin, biyolojik olarak aktif cok sayida bilesenin uretimi icin karbon dioksiti etkin bir sekilde kullanabilen hucre fabrikalari olmasidir. Bununla birlikte, mikroalglerden rekombinant protein uretiminde kullanilmasi icin cozulmesi gereken birkac sorun mevcuttur. Kritik gereksinimlerden birisi salgilanan rekombinant proteinlerden biyo-uyumlu bir N-glikozilasyon profile uretmektir. Ancak mikroalg turlerinin glikozilasyon makineleri ve N-glikan profilleri hakkindaki bilgiler oldukca sinirlidir. Bu calismada, yesil bir mikroalg turu olan Chlorella zofingiensis ‘in N-glikan profilinin karakterize edilmesi amaclandi. Bu amacla (gliko-)proteinleri iceren fotoototrofik olarak yetistirilmis Chlorella zofingiensis ekstreleri enzimatik olarak deglikozile edildi ve 2-aminobenzoik asit etiketi ile etiketlendi. Serbest hale getirilen N-glikanlar HILIC bazli bir yaklasimla saflastirildi ve MALDI-TOF (/TOF)-MS ile analiz edildi. Sonuclar C. zofingiensis'in oligomannozidik turde N-glikan modellerini icerdigini gostermistir. Ek olarak, MALDI-MS tarafindan C. zofingiensis'in N-glikosilasyon profilleri, oligomannosidik N-glikanlarin neredeyse yarisinin fosforilenmis oldugunu ortaya koymustur.
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