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Improved secretion of human Fas ligand extracellular domain by N-terminal part truncation in Pichia pastoris and preparation of the N-linked carbohydrate chain trimmed derivative

机译:巴斯德毕赤酵母中N末端部分的截短改善了人类Fas配体胞外域的分泌,并制备了N连接的碳水化合物链修饰的衍生物

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Human Fas ligand is a medically important transmembrane glycoprotein directing the induction of apoptosis. The influence of N-terminal part (Q103-P138) truncation of human Fas ligand extracellular domain (hFasLECD) on the expression of N-terminal FLAG-(Gly)(5)-tagged hFasLECD (NFG5-hFasLECD) with partial N-glycosylation-sites deletion in Pichia pastoris was investigated. The N-terminal part truncation significantly improved the secretion level of both singly (N184Q) and doubly (N184Q, N250Q) N-glycosylation-sites deleted NFG5-hFasLECD. The highly purified N-terminal truncated NFG5-hFasLECD with the double N-glycosylation-sites deletion mutation was obtained using single-step cation-exchange chromatography. The isolation yield was about 24mg from one liter culture supernatant, which amounted to approximately five times higher than that of the previously reported non-truncated NFG5-hFasLECD with N184Q mutation. The remaining N-linked carbohydrate chain in the purified product was digested with a high-mannose type glycochain specific endoglycosidase, Endo Hf, under non-denatured condition. The N-linked carbohydrate chain trimmed product was purified through Con A-agarose column fractionation and another cation-exchange chromatography from the reaction mixture. The final product showed the molecular weight exact to that of NFG5-hFasLECD-[Delta A(103-138), N250Q] mutant with single N-acetyl-glucosamine residue in MALDI-TOF mass-spectrometric analysis, and existed as a trimer in solution. The N-terminal truncated product either with or without N-linked carbohydrate chain exhibited the specific binding activity toward soluble human Fas receptor extracellular domain-human IgG(1)-Fc domain fusion protein, which revealed that the presence of N-linked carbohydrate chain was not essential for the functional activity of hFasLECD. The sample preparation system developed here may be applicable to the structural analysis of hFasLECD. (c) 2008 Elsevier Inc. All rights reserved.
机译:人Fas配体是医学上重要的跨膜糖蛋白,指导细胞凋亡的诱导。人类Fas配体胞外域(hFasLECD)的N末端部分(Q103-P138)截短对N末端糖基化的N末端FLAG-(Gly)(5)标记的hFasLECD(NFG5-hFasLECD)表达的影响对巴斯德毕赤酵母中的位点缺失进行了研究。 N末端部分的截短显着提高了单个(N184Q)和双重(N184Q,N250Q)N-糖基化位点缺失NFG5-hFasLECD的分泌水平。使用一步阳离子交换色谱获得具有双N-糖基化位点缺失突变的高度纯化的N-末端截短的NFG5-hFasLECD。从一升培养上清液中分离出的产量约为24mg,比先前报道的具有N184Q突变的未截短的NFG5-hFasLECD的产量高约五倍。在非变性条件下,用高甘露糖型糖链特异性内切糖苷酶Endo Hf消化纯化产物中剩余的N-连接的碳水化合物链。通过Con A-琼脂糖柱分级分离和另一种阳离子交换色谱法从反应混合物中纯化N-连接的碳水化合物链修饰的产物。最终产物在MALDI-TOF质谱分析中显示的分子量与带有单个N-乙酰氨基葡萄糖残基的NFG5-hFasLECD-ΔA(103-138),N250Q]突变体的分子量完全相同,并在三聚体中作为三聚体存在。解。带有或不带有N-连接的碳水化合物链的N末端截短产物对可溶性人Fas受体胞外域-人IgG(1)-Fc结构域融合蛋白表现出特异性结合活性,这表明存在N-连接的碳水化合物链对于hFasLECD的功能活性不是必需的。这里开发的样品制备系统可能适用于hFasLECD的结构分析。 (c)2008 Elsevier Inc.保留所有权利。

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