STRUCTURE AND FUNCTION OF A PERIPLASMIC NITRATE REDUCTASE IN ALCALIGENES-EUTROPHUS H16

被引:144
作者
SIDDIQUI, RA
WARNECKEEBERZ, U
HENGSBERGER, A
SCHNEIDER, B
KOSTKA, S
FRIEDRICH, B
机构
[1] FREIEN UNIV BERLIN,INST PFLANZENPHYSIOL & MIKROBIOL,KONIGIN LUISE STR 12-16,D-14195 BERLIN,GERMANY
[2] MAX DELBRUCK CTR,D-13125 BERLIN,GERMANY
关键词
D O I
10.1128/JB.175.18.5867-5876.1993
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Alcaligenes eutrophus H16 shows three distinct nitrate reductase activities (U. Warnecke-Eberz and B. Friedrich, Arch. Microbiol. 159:405-409, 1993). The periplasmic enzyme, designated NAP (nitrate reductase, periplasmic), has been isolated. The 80-fold-purified heterodimeric enzyme catalyzed nitrate reduction with reduced viologen dyes as electron donors. The nap genes were identified in a library of A. eutrophus H16 megaplasmid DNA by using oligonucleotide probes based on the amino-terminal polypeptide sequences of the two NAP subunits. The two structural genes, designated napA and napB, code for polypeptides of 93 and 18.9 kDa, respectively. Sequence comparisons indicate that the putative gene products are translated with signal peptides of 28 and 35 amino acids, respectively. This is compatible with the fact that NAP activity was found in the soluble fraction of cell extracts and suggests that the mature enzyme is located in the periplasm. The deduced sequence of the large subunit, NAPA, contained two conserved amino-terminal stretches of amino acids found in molybdenum-dependent proteins such as nitrate reductases and formate dehydrogenases, suggesting that NAPA contains the catalytic site. The predicted sequence of the small subunit, NAPB, revealed two potential heme c-binding sites, indicating its involvement in the transfer of electrons. An insertion in the napA gene led to a complete loss of NAP activity but did not abolish the ability of A. eutrophus to use nitrate as a nitrogen source or as an electron acceptor in anaerobic respiration. Nevertheless, the NAP-deficient mutant showed delayed growth after transition from aerobic to anaerobic respiration, suggesting a role for NAP in the adaptation to anaerobic metabolism.
引用
收藏
页码:5867 / 5876
页数:10
相关论文
共 46 条
[1]  
APPLEYARD RK, 1954, GENETICS, V39, P440
[2]   PERIPLASMIC AND MEMBRANE-BOUND RESPIRATORY NITRATE REDUCTASES IN THIOSPHAERA-PANTOTROPHA - THE PERIPLASMIC ENZYME CATALYZES THE 1ST STEP IN AEROBIC DENITRIFICATION [J].
BELL, LC ;
RICHARDSON, DJ ;
FERGUSON, SJ .
FEBS LETTERS, 1990, 265 (1-2) :85-87
[3]  
BERG BL, 1991, J BIOL CHEM, V266, P22380
[4]   TRANSPOSITION OF R-FACTOR GENES TO BACTERIOPHAGE-LAMBDA [J].
BERG, DE ;
DAVIES, J ;
ALLET, B ;
ROCHAIX, JD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1975, 72 (09) :3628-3632
[5]   NUCLEOTIDE-SEQUENCE OF THE DMSABC OPERON ENCODING THE ANAEROBIC DIMETHYLSULFOXIDE REDUCTASE OF ESCHERICHIA-COLI [J].
BILOUS, PT ;
COLE, ST ;
ANDERSON, WF ;
WEINER, JH .
MOLECULAR MICROBIOLOGY, 1988, 2 (06) :785-795
[6]   NITRATE REDUCTASE OF ESCHERICHIA-COLI - COMPLETION OF THE NUCLEOTIDE-SEQUENCE OF THE NAR OPERON AND REASSESSMENT OF THE ROLE OF THE ALPHA-SUBUNIT AND BETA-SUBUNIT IN IRON-BINDING AND ELECTRON-TRANSFER [J].
BLASCO, F ;
IOBBI, C ;
GIORDANO, G ;
CHIPPAUX, M ;
BONNEFOY, V .
MOLECULAR & GENERAL GENETICS, 1989, 218 (02) :249-256
[7]   CLONING AND NUCLEOTIDE-SEQUENCE OF THE STRUCTURAL GENES ENCODING THE FORMATE DEHYDROGENASE OF WOLINELLA-SUCCINOGENES [J].
BOKRANZ, M ;
GUTMANN, M ;
KORTNER, C ;
KOJRO, E ;
FAHRENHOLZ, F ;
LAUTERBACH, F ;
KROGER, A .
ARCHIVES OF MICROBIOLOGY, 1991, 156 (02) :119-128
[8]   PHYSIOLOGY AND BIOCHEMISTRY OF AEROBIC HYDROGEN-OXIDIZING BACTERIA [J].
BOWIEN, B ;
SCHLEGEL, HG .
ANNUAL REVIEW OF MICROBIOLOGY, 1981, 35 :405-452
[9]   STRUCTURE, FUNCTION AND EVOLUTION OF BACTERIAL FERREDOXINS [J].
BRUSCHI, M ;
GUERLESQUIN, F .
FEMS MICROBIOLOGY LETTERS, 1988, 54 (02) :155-175
[10]   THE USE OF TRANSPOSON TN5 MUTAGENESIS IN THE RAPID GENERATION OF CORRELATED PHYSICAL AND GENETIC MAPS OF DNA SEGMENTS CLONED INTO MULTICOPY PLASMIDS - A REVIEW [J].
DEBRUIJN, FJ ;
LUPSKI, JR .
GENE, 1984, 27 (02) :131-149