Mooser Daniela, Maneg Oliver, Corvey Carsten, Steiner Thomas, Malatesta Francesco, Karas Michael, Soulimane Tewfik, Ludwig Bernd
Molekulare Genetik, Institut für Biochemie, Biozentrum der J. W. Goethe-Universität, Marie-Curie-Strasse 9, D-60439 Frankfurt am Main, Germany.
Biochim Biophys Acta. 2005 Jun 30;1708(2):262-74. doi: 10.1016/j.bbabio.2005.03.008. Epub 2005 Apr 8.
Several components of the respiratory chain of the eubacterium Thermus thermophilus have previously been characterized to various extent, while no conclusive evidence for a cytochrome bc(1) complex has been obtained. Here, we show that four consecutive genes encoding cytochrome bc(1) subunits are organized in an operon-like structure termed fbcCXFB. The four gene products are identified as genuine subunits of a cytochrome bc(1) complex isolated from membranes of T. thermophilus. While both the cytochrome b and the FeS subunit show typical features of canonical subunits of this respiratory complex, a further membrane-integral component (FbcX) of so far unknown function copurifies as a subunit of this complex. The cytochrome c(1) carries an extensive N-terminal hydrophilic domain, followed by a hydrophobic, presumably membrane-embedded helical region and a typical heme c binding domain. This latter sequence has been expressed in Escherichia coli, and in vitro shown to be a kinetically competent electron donor to cytochrome c(552), mediating electron transfer to the ba(3) oxidase. Identification of this cytochrome bc(1) complex bridges the gap between the previously reported NADH oxidation activities and terminal oxidases, thus, defining all components of a minimal, mitochondrial-type electron transfer chain in this evolutionary ancient thermophile.
嗜热栖热菌呼吸链的几个组分此前已在不同程度上得到了表征,但尚未获得细胞色素bc(1)复合物的确凿证据。在此,我们表明,编码细胞色素bc(1)亚基的四个连续基因以一种类操纵子结构组织在一起,称为fbcCXFB。这四个基因产物被鉴定为从嗜热栖热菌膜中分离出的细胞色素bc(1)复合物的真正亚基。虽然细胞色素b和铁硫亚基都显示出这种呼吸复合物典型亚基的特征,但另一个功能未知的膜整合组分(FbcX)作为该复合物的一个亚基共纯化。细胞色素c(1)带有一个广泛的N端亲水结构域,后面跟着一个疏水的、可能嵌入膜的螺旋区域和一个典型的血红素c结合结构域。后一个序列已在大肠杆菌中表达,并在体外显示是细胞色素c(552)的一个具有动力学活性的电子供体,介导电子传递给ba(3)氧化酶。这种细胞色素bc(1)复合物的鉴定填补了先前报道的NADH氧化活性与末端氧化酶之间的空白,从而确定了这种进化上古老的嗜热菌中线粒体类型最小电子传递链的所有组分。