首页> 外文期刊>Biochemistry >C-Terminal Truncation and Histidine-Tagging of Cytochrome c Oxidase Subunit II Reveals the Native Processing Site,Shows Involvement of the C-Terminus in Cytochrome c Binding,and Improves the Assay for Proton Pumping
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C-Terminal Truncation and Histidine-Tagging of Cytochrome c Oxidase Subunit II Reveals the Native Processing Site,Shows Involvement of the C-Terminus in Cytochrome c Binding,and Improves the Assay for Proton Pumping

机译:细胞色素c氧化酶亚基II的C末端截断和组氨酸标签揭示了天然加工位点,显示了C末端参与细胞色素c结合,并改善了质子泵浦法

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摘要

To enable metal affinity purification of cytochrome c oxidase reconstituted into phospholipid vesicles, a histidine-tag was engineered onto the C-terminal end of the Rhodobacter sphaeroides cytochrome c oxidase subunit II. Characterization of the natively processed wildtype oxidase and artificially processed forms (truncated with and without a his-tag) reveals Km values for cytochrome c that are 6—14-fold higher for the truncated and his-tagged forms than for the wildtype. This lowered ability to bind cytochrome c indicates a previously undetected role for the C-terminus in cytochrome c binding and is mimicked by reduced affinity for an FPLC anion exchange column. The elution profiles and kinetics indicate that the removal of 16 amino acids from the C-terminus, predicted from the known processing site of the Paracoccus denitrificans oxidase, does not produce the same enzyme as the native processing reaction. MALDI-TOF MS data show the true C-terminus of subunit II is at serine 290, three amino acids longer than expected. When the his-tagged form is reconstituted into lipid vesicles and further purified by metal affinity chromatography, significant improvement is observed in proton pumping analysis by the stopped-flow method. The improved kinetic results are attributed to a homogeneous, correctly oriented vesicle population with higher activity and less buffering from extraneous lipids.
机译:为了能够金属亲和纯化重构到磷脂囊泡中的细胞色素C氧化酶,将组氨酸标签工程化到球形红球菌细胞色素C氧化酶亚基II的C末端。天然加工的野生型氧化酶和人工加工的形式(带有和不带有his标签的截短形式)的表征表明,截短和带有his标签的形式的细胞色素c的Km值比野生型高6-14倍。这种降低的结合细胞色素c的能力表明了C末端在细胞色素c结合中以前未被发现的作用,并且通过降低对FPLC阴离子交换柱的亲和力得以模仿。洗脱曲线和动力学表明,从反硝化副球菌氧化酶的已知加工位点预测,从C末端去除16个氨基酸不会产生与天然加工反应相同的酶。 MALDI-TOF MS数据显示,亚基II的真实C末端位于丝氨酸290,比预期的长三个氨基酸。当将带组氨酸标签的形式重构为脂质囊泡并通过金属亲和色谱进一步纯化时,通过停流法在质子泵送分析中观察到了显着改善。改善的动力学结果归因于均一的,取向正确的囊泡群体,具有较高的活性,较少的外部脂质缓冲作用。

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