首页> 外文OA文献 >Recombinant soluble human tissue factor secreted by Saccharomyces cerevisiae and refolded from Escherichia coli inclusion bodies: glycosylation of mutants, activity and physical characterization.
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Recombinant soluble human tissue factor secreted by Saccharomyces cerevisiae and refolded from Escherichia coli inclusion bodies: glycosylation of mutants, activity and physical characterization.

机译:由啤酒酵母分泌并从大肠杆菌包涵体中折叠的重组可溶性人类组织因子:突变体的糖基化,活性和物理特征。

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摘要

Tissue factor (TF) is the cell-surface transmembrane receptor that initiates both the extrinsic and intrinsic blood coagulation cascades. The abilities of TF to associate with Factor VIIa and Factor X in a ternary complex and to enable proteolytic activation of Factor X by Factor VIIa reside in the extracellular domain of TF. We describe the expression of the surface domain of TF (truncated TF, tTF) in both Saccharomyces cerevisiae and Escherichia coli and the biochemical and physical characterization of the recombinant proteins. Wild-type tTF and several glycosylation-site mutants were secreted efficiently by S. cerevisiae under the control of the yeast prepro-alpha-signal sequence; the T13A,N137D double mutant was the most homogeneous variant expressed in milligram quantities. Wild-type tTF was expressed in a non-native state in E. coli inclusion bodies as a fusion protein with a poly(His) leader. The fusion protein could be fully renatured and the leader removed by proteolysis with thrombin; the correct molecular mass (24,729 Da) of the purified protein was confirmed by electrospray mass spectrometry. Recombinant tTFs from yeast, E. coli and Chinese hamster ovary cells were identical in their abilities to bind Factor VIIa, to enhance the catalytic activity of Factor VIIa and to enhance the proteolytic activation of Factor X by Factor VIIa. Furthermore, CD, fluorescence emission and NMR spectra of the yeast and E. coli proteins indicated that these proteins are essentially identical structurally.
机译:组织因子(TF)是细胞表面跨膜受体,可启动外在和内在的凝血级联反应。 TF与三元复合物中的因子VIIa和因子X缔合并通过因子VIIa进行因子X的蛋白水解激活的能力存在于TF的细胞外结构域中。我们描述了在酿酒酵母和大肠杆菌中TF(截短的TF,tTF)的表面结构域的表达以及重组蛋白的生化和物理特性。在酵母前原α信号序列的控制下,酿酒酵母有效地分泌了野生型tTF和一些糖基化位点突变体。 T13A,N137D双突变体是最均一的变异体,以毫克表示。野生型tTF以与poly(His)前导序列的融合蛋白在大肠杆菌包涵体中以非天然状态表达。融合蛋白可以完全变性,并可以通过凝血酶进行蛋白水解去除前导蛋白;通过电喷雾质谱法确认了纯化蛋白的正确分子量(24,729 Da)。来自酵母,大肠杆菌和中国仓鼠卵巢细胞的重组tTF在结合因子VIIa,增强因子VIIa的催化活性以及增强因子VIIa对蛋白X的蛋白水解活化方面具有相同的能力。此外,酵母和大肠杆菌蛋白的CD,荧光发射和NMR光谱表明,这些蛋白在结构上基本相同。

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