Atta-Asafo-Adjei E, Daldal F
Department of Biology, University of Pennsylvania, Philadelphia 19104-6019.
Proc Natl Acad Sci U S A. 1991 Jan 15;88(2):492-6. doi: 10.1073/pnas.88.2.492.
The nonphotosynthetic mutant R126 of Rhodobacter capsulatus has a cytochrome (cyt) bc1 complex (EC 1.10.2.2) with a defective quinol oxidation Qz(o,p) site but a functional quinone reduction Qc(i,n) site. Genetic analyses of this mutant have indicated that a single-base-pair change has replaced Gly-158 of cyt b with Asp. In this work, Gly-158 was changed by oligonucleotide-mediated mutagenesis to several other amino acids to define its role on quinol oxidation catalyzed by the cyt bc1 complex. The effects of the mutations were analyzed by measuring the photosynthetic growth rate of mutants and the activity of their cyt bc1 complexes. The mutants overproduced the cyt bc1 complex, assembled its subunits, and incorporated its prosthetic groups as shown by immunoblotting and optical difference spectroscopy. Of 14 amino acid residues tested at position 158 of cyt b all but alanine and serine resulted in a marked decrease of cyt bc1 activity and failed to support photosynthetic growth of R. capsulatus. The photosynthesis-competent mutants, Gly-158----Ala and Gly-158----Ser, had lower cyt bc1 complex activities that were resistant to myxothiazol, but not to stigmatellin, quinol oxidation inhibitors. These findings indicated that the specific role of Gly-158 of cyt b on quinol oxidation and myxothiazol binding may be related to the small size of its side chain and are discussed in terms of the structure and function of the quinol oxidation site of the cyt bc1 complex.
荚膜红细菌的非光合突变体R126具有一种细胞色素(cyt)bc1复合物(EC 1.10.2.2),其喹啉氧化Qz(o,p)位点存在缺陷,但醌还原Qc(i,n)位点功能正常。对该突变体的遗传分析表明,单个碱基对的改变已将细胞色素b的甘氨酸-158替换为天冬氨酸。在这项研究中,通过寡核苷酸介导的诱变将甘氨酸-158替换为其他几种氨基酸,以确定其在细胞色素bc1复合物催化的喹啉氧化中的作用。通过测量突变体的光合生长速率及其细胞色素bc1复合物的活性来分析突变的影响。如免疫印迹和光差光谱所示,突变体过量产生细胞色素bc1复合物,组装其亚基并掺入其辅基。在细胞色素b的第158位测试的14个氨基酸残基中,除丙氨酸和丝氨酸外,其他所有氨基酸均导致细胞色素bc1活性显著降低,并且不能支持荚膜红细菌的光合生长。具有光合能力的突变体,即甘氨酸-158→丙氨酸和甘氨酸-158→丝氨酸,其细胞色素bc1复合物活性较低,对粘噻唑有抗性,但对抑制喹啉氧化的抑霉唑没有抗性。这些发现表明,细胞色素b的甘氨酸-158在喹啉氧化和粘噻唑结合上的特定作用可能与其侧链的小尺寸有关,并根据细胞色素bc1复合物喹啉氧化位点的结构和功能进行了讨论。