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首页> 外文期刊>BMC Biotechnology >Production, purification and characterization of recombinant human R-spondin1 (RSPO1) protein stably expressed in human HEK293 cells
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Production, purification and characterization of recombinant human R-spondin1 (RSPO1) protein stably expressed in human HEK293 cells

机译:在人HEK293细胞中稳定表达的重组人R-X孔蛋白1(RSPO1)蛋白的生产,纯化和表征

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The R-Spondin proteins comprise a family of secreted proteins, known for their important roles in cell proliferation, differentiation and death, by inducing the Wnt pathway. Several studies have demonstrated the importance of RSPOs in regulation of a number of tissue-specific processes, namely: bone formation, skeletal muscle tissue development, proliferation of pancreatic β-cells and intestinal stem cells and even cancer. RSPO1 stands out among RSPOs molecules with respect to its potential therapeutic use, especially in the Regenerative Medicine field, due to its mitogenic activity in stem cells. Here, we generated a recombinant human RSPO1 (rhRSPO1) using the HEK293 cell line, obtaining a purified, characterized and biologically active protein product to be used in Cell Therapy. The hRSPO1 coding sequence was synthesized and subcloned into a mammalian cell expression vector. HEK293 cells were stably co-transfected with the recombinant expression vector containing the hRSPO1 coding sequence and a hygromycin resistance plasmid, selected for hygror and subjected to cell clones isolation. rhRSPO1 was obtained, in the absence of serum, from culture supernatants of transfected HEK293 cells and purified using a novel purification strategy, involving two sequential chromatographic steps, namely: heparin affinity chromatography, followed by a molecular exclusion chromatography, designed to yield a high purity product. The purified protein was characterized by Western blotting, mass spectrometry and in vitro (C2C12 cells) and in vivo (BALB/c mice) biological activity assays, confirming the structural integrity and biological efficacy of this human cell expression system. Furthermore, rhRSPO1 glycosylation analysis allowed us to describe, for the first time, the glycan composition of this oligosaccharide chain, confirming the presence of an N-glycosylation in residue Asn137 of the polypeptide chain, as previously described. In addition, this analysis revealing the presence of glycan structures such as terminal sialic acid, N-acetylglucosamine and/or galactose. Therefore, a stable platform for the production and purification of recombinant hRSPO1 from HEK293 cells was generated, leading to the production of a purified, fully characterized and biologically active protein product to be applied in Tissue Engineering.
机译:R-Xpondin蛋白质包含一种分泌的蛋白质,通过诱导Wnt途径来诱导细胞增殖,分化和死亡的重要作用。几项研究表明RSPOS在调节许多组织特异性过程中的重要性,即:骨形成,骨骼肌组织发育,胰腺β细胞的增殖和肠道干细胞甚至癌症。 RSPO1在RSPOS分子中脱颖而出,在其潜在的治疗用途中脱颖而出,特别是在再生医学领域,由于其干细胞的丝分裂活性。这里,我们使用HEK293细胞系产生重组人RSPO1(RHRSPO1),获得纯化的,特征和生物活性蛋白质产品以用于细胞疗法。合成HRSPO1编码序列并将其亚克隆到哺乳动物细胞表达载体中。 HEK293细胞与含有HRSPO1编码序列和潮霉素抗性质粒的重组表达载体稳定地转染,用于储存并进行细胞克隆分离。在没有血清的情况下获得rhRSPO1,从转染的HEK293细胞的培养上清液中获得并使用新的纯化策略纯化,涉及两个连续的色谱步骤,即:肝素亲和层析,然后进行分子排阻色谱,旨在产生高纯度产品。通过蛋白质印迹,质谱和体外(C2C12细胞)和体内(BALB / C小鼠)生物活性测定,纯化的蛋白质的特征在于,确认该人细胞表达系统的结构完整性和生物学效果。此外,rhRSPO1糖基化分析允许我们首次描述该低聚糖链的聚糖组合物,证实如前所述,确认在多肽链的残基ASN137中存在N-糖基化。此外,该分析揭示了聚糖结构的存在,例如末端唾液酸,N-乙酰葡糖胺和/或半乳糖。因此,产生了来自HEK293细胞的重组HRSPO1的重组HRSPO1的稳定平台,从而产生纯化的,完全表征和生物活性蛋白质产品以应用于组织工程。

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