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NarJ的特性研究,NarJ是大肠杆菌中硝酸还原酶生物合成所需的一种系统特异性伴侣蛋白。

Characterization of NarJ, a system-specific chaperone required for nitrate reductase biogenesis in Escherichia coli.

作者信息

Liu X, DeMoss J A

机构信息

Department of Biochemistry and Molecular Biology, University of Texas Houston Medical School, Houston, Texas 77030, USA.

出版信息

J Biol Chem. 1997 Sep 26;272(39):24266-71. doi: 10.1074/jbc.272.39.24266.

DOI:10.1074/jbc.272.39.24266
PMID:9305880
Abstract

The narGHJI operon encodes the three subunits, alpha, beta, and gamma, of the respiratory nitrate reductase complex in Escherichia coli. A fourth open reading frame of the operon encodes a putative protein, NarJ, which is not present in purified nitrate reductase, but is required for biogenesis of the membrane-bound complex. NarJ was identified with a T7 expression system and was produced at significantly less than stoichiometric levels relative to the three enzyme subunits. A functional His-tagged NarJ fusion protein was overexpressed from a multicopy plasmid, purified by Ni2+ affinity chromatography, and characterized. Western blot analysis with antibodies raised against the fusion protein demonstrated that NarJ remained in the cytosol after assembly of the active membrane complex. The cytosolic alphabeta complex accumulated in a narJ insertion mutant was rapidly degraded after induction, but was stabilized by NarJ expressed from a multicopy plasmid. Overproduction of the His-tagged NarJ fusion protein in the same mutant led to the formation of an alphabeta.NarJ complex, which was resolved by Ni2+ affinity chromatography. The NarJ protein therefore has the properties of a system-specific (private) chaperone that reacts directly with and modifies the properties of the cytosolic alphabeta subunit complex, but remains in the cytoplasm after the assembly of the active alphabetagamma complex in the membrane.

摘要

narGHJI操纵子编码大肠杆菌中呼吸型硝酸还原酶复合体的三个亚基,即α、β和γ。该操纵子的第四个开放阅读框编码一种假定的蛋白质NarJ,它不存在于纯化的硝酸还原酶中,但对于膜结合复合体的生物合成是必需的。NarJ是通过T7表达系统鉴定出来的,其表达量相对于三个酶亚基显著低于化学计量水平。一种带有His标签的功能性NarJ融合蛋白从多拷贝质粒中过量表达,通过Ni2+亲和层析进行纯化并进行了表征。用针对该融合蛋白产生的抗体进行的蛋白质印迹分析表明,在活性膜复合体组装后,NarJ仍留在细胞质中。在narJ插入突变体中积累的细胞质αβ复合体在诱导后迅速降解,但通过多拷贝质粒表达的NarJ使其稳定。在同一突变体中过量表达带有His标签的NarJ融合蛋白导致形成αβ.NarJ复合体,该复合体通过Ni2+亲和层析得以分离。因此,NarJ蛋白具有系统特异性(专用)伴侣蛋白的特性,它直接与细胞质αβ亚基复合体反应并改变其特性,但在膜中活性αβγ复合体组装后仍留在细胞质中。

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