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对在共表达重组弗林蛋白酶的转化CHO细胞的工业规模发酵中产生的重组血管性血友病因子进行结构分析。

Structural analysis of recombinant von Willebrand factor produced at industrial scale fermentation of transformed CHO cells co-expressing recombinant furin.

作者信息

Fischer B E, Schlokat U, Mitterer A, Reiter M, Mundt W, Turecek P L, Schwarz H P, Dorner F

机构信息

IMMUNO AG, Biomedical Research Center, Orth/Donau, Austria.

出版信息

FEBS Lett. 1995 Nov 20;375(3):259-62. doi: 10.1016/0014-5793(95)01218-4.

Abstract

Thorough analysis of multimer composition and molecular structure of recombinant von Willebrand factor (r-vWF) produced by recombinant CHO cells demonstrated r-vWF to be more intact and less proteolytically degraded than plasma-derived vWF (pd-vWF) [B. Fischer et al. (1994) FEBS Lett. 351, 345-348]. In contrast to pd-vWF, r-vWF preparations consisted of pro-vWF (vWF containing covalently attached propeptide) as well as mature vWF subunits forming homo- and hetero-multimers. In order to ensure complete propeptide processing, a r-vWF-producing CHO cell clone was transfected with the cDNA of the human propeptide processing enzyme Furin. A r-vWF/r-Furin co-expressing cell clone was cultivated at industrial scale in high cell density perfusion fermenters. r-vWF obtained from these cells was fully processed. Analysis of r-vWF by multimer analysis revealed a multimer pattern equal in number of high molecular weight multimer to pd-vWF, but absence of satellite bands. Two-dimensional electrophoretic analysis of both the primary dimer and the complete multimer pattern of r-vWF showed that the recombinant coagulation factor was composed exclusively of intact and mature subunits. Since the triplet structure typical to pd-vWF is known to reflect proteolytic degradation, r-vWF thus exhibits an integrity far superior compared to pd-vWF.

摘要

对重组CHO细胞产生的重组血管性血友病因子(r-vWF)的多聚体组成和分子结构进行深入分析表明,与血浆来源的vWF(pd-vWF)相比,r-vWF更完整,蛋白水解降解程度更低[B. Fischer等人(1994年),《欧洲生物化学学会联合会快报》351卷,345 - 348页]。与pd-vWF不同,r-vWF制剂由前体vWF(含有共价连接的前肽的vWF)以及形成同型和异型多聚体的成熟vWF亚基组成。为了确保前肽的完全加工,用人类前肽加工酶弗林蛋白酶(Furin)的cDNA转染了一个产生r-vWF的CHO细胞克隆。一个共表达r-vWF/r-Furin的细胞克隆在工业规模的高细胞密度灌注发酵罐中培养。从这些细胞中获得的r-vWF得到了充分加工。通过多聚体分析对r-vWF进行分析发现,其多聚体模式在高分子量多聚体数量上与pd-vWF相当,但没有卫星带。对r-vWF的初级二聚体和完整多聚体模式进行二维电泳分析表明,这种重组凝血因子完全由完整和成熟的亚基组成。由于已知pd-vWF典型的三联体结构反映了蛋白水解降解,因此r-vWF的完整性远优于pd-vWF。

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