BCRC Strain Collection Catalog & Shopping Cart

  Home / BCRC Content / 16336 / 

Return

  Research Article

The information shown in this page was generated using the cross-referenced linkage within public domain database between their strains and BCRC related strains. Usually the information provided from public domain databases varies with different confidences and errors, BCRC provides the related information here at best effort, but BCRC doesn't take the responsibility about the correctness of the information provided here.

1. Yasutake  Y, Imoto  N, Fujii  Y, Fujii  T, Arisawa  A, Tamura  T,     ( 2007 )

Crystal structure of cytochrome P450 MoxA from Nonomuraea recticatena (CYP105).

Biochemical and biophysical research communications 361 (4)
PMID : 17679139  :   DOI  :   10.1016/j.bbrc.2007.07.062    
Abstract >>
Cytochrome P450 MoxA (P450moxA) from a rare actinomycete Nonomuraea recticatena belongs to the CYP105 family and exhibits remarkably broad substrate specificity. Here, we demonstrate that P450moxA acts on several luciferin derivatives, which were originally identified as substrates of the human microsomal P450s. We also describe the crystal structure of P450moxA in substrate-free form. Structural comparison with various bacterial and human microsomal P450s reveals that the P450moxA structure is most closely related to that of the fungal nitric oxide reductase P450nor (CYP55A1). Final refined model of P450moxA comprises almost all the residues, including the "BC-loop" and "FG-loop" regions pivotal for substrate recognition, and the current structure thus defines a well-ordered substrate-binding pocket. Clear electron density map reveals that the MES molecule is bound to the substrate-binding site, and the sixth coordination position of the heme iron is not occupied by a water molecule, probably due to the presence of MES molecule in the vicinity of the heme. The unexpected binding of the MES molecule might reflect the ability of P450moxA to accommodate a broad range of structurally diverse compounds.
KeywordMeSH Terms
Models, Molecular
2. Agematu  H, Matsumoto  N, Fujii  Y, Kabumoto  H, Doi  S, Machida  K, Ishikawa  J, Arisawa  A,     ( 2006 )

Hydroxylation of testosterone by bacterial cytochromes P450 using the Escherichia coli expression system.

Bioscience, biotechnology, and biochemistry 70 (1)
PMID : 16428858  :   DOI  :   10.1271/bbb.70.307    
Abstract >>
Two hundred thirteen cytochrome P450 (P450) genes were collected from bacteria and expressed based on an Escherichia coli expression system to test their hydroxylation ability to testosterone. Twenty-four P450s stereoselectively monohydroxylated testosterone at the 2alpha-, 2beta-, 6beta-, 7beta-, 11beta-, 12beta-, 15beta-, 16alpha-, and 17-positions (17-hydroxylation yields 17-ketoproduct). The hydroxylation site usage of the P450s is not the same as that of human P450s, while the 2alpha-, 2beta-, 6beta-, 11beta-, 15beta-, 16alpha-, and 17-hydroxylation are reactions common to both human and bacterial P450s. Most of the testosterone hydroxylation catalyzed by bacterial P450s is on the beta face.
KeywordMeSH Terms
3. Meyers  PR,     ( 2015 )

Analysis of recombinase A (recA/RecA) in the actinobacterial family Streptosporangiaceae and identification of molecular signatures.

Systematic and applied microbiology 38 (8)
PMID : 26507967  :   DOI  :   10.1016/j.syapm.2015.10.001    
Abstract >>
The family Streptosporangiaceae (suborder Streptosporangineae) comprises 13 genera and 100 species with validly published names. In a recent study, gyrB gene sequences were obtained for members of the family Streptosporangiaceae and the GyrB amino acid sequences were analysed for molecular signatures. In this study, recA gene sequences (895nt) were determined for the type strains of members of the family Streptosporangiaceae. The sequences used represent 81% of the full-length recA gene of Streptosporangium roseum DSM 43021(T). The recA gene sequences were used for phylogenetic analyses and the trees were compared to the corresponding 16S-rRNA and gyrB gene trees. RecA amino acid alignments (298 amino acids) were generated and inspected for unique amino acid signatures to distinguish the genera in the family from each other. As was observed for the gyrB gene trees, the recA gene trees generally supported the division of the members of the family Streptosporangiaceae into 13 genera. The genus Nonomuraea was not monophyletic in any of the recA gene trees, while the genera Planomonospora and Streptosporangium were not monophyletic in the maximum likelihood and maximum parsimony trees. The gyrB-recA concatenated-gene tree was more robust than the recA gene tree, with 63 nodes in the gyrB-recA tree having bootstrap values ?95%. The only insertions in the recA gene sequences were inteins identified in the type strains of Acrocarpospora phusangensis, Acrocarpospora pleiomorpha and Microbispora mesophila. Examination of the RecA sequence alignments for genus-specific amino acid sequences showed that the genera Herbidospora, Planobispora, Planomonospora and Streptosporangium contain unique amino acid sequences that distinguish these genera from all other genera in the family Streptosporangiaceae. The results of this investigation extend the results of the GyrB study and will be useful in future taxonomic studies in the family Streptosporangiaceae by providing additional genus-specific molecular signatures.
KeywordMeSH Terms
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Recombinase A
Streptosporangiaceae
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Inteins
Molecular signatures
Recombinase A
Streptosporangiaceae
Streptosporangineae
recA
Genetic Variation
4. Meyers  PR,     ( 2014 )

Gyrase subunit B amino acid signatures for the actinobacterial family Streptosporangiaceae.

Systematic and applied microbiology 37 (4)
PMID : 24423454  :   DOI  :   10.1016/j.syapm.2013.12.002    
Abstract >>
Higher order taxonomic assignments (family level and above) in the phylum Actinobacteria are currently based only on 16S-rRNA gene sequence analyses. Additional molecular markers need to be identified to increase the number of reference points for defining actinobacterial families and other higher taxa. Furthermore, since most novel actinobacterial taxa are defined at the level of species and genera, it is necessary to define molecular signatures at the genus level to enhance the robustness of genus descriptions. The current use of chemotaxonomic markers to define genera could be improved by the identification of genus-specific molecular signatures. In this study, GyrB amino acid sequences for members of the family Streptosporangiaceae were analysed for molecular signatures. Phylogenetic analyses showed that the gyrB gene tree supported the composition of the currently recognised genera in this family. The catalytically important amino acids were identified in the GyrB sequences, as were the GHKL superfamily motifs. Examination of GyrB protein sequence alignments revealed that there are genus-specific sequences for most of the multi-species genera and genus-defining amino acid insertions for the genera Herbidospora and Microbispora. Furthermore, there are GyrB signature amino acids which distinguish the family Streptosporangiaceae from the family Nocardiopsaceae.
KeywordMeSH Terms
Streptosporangiaceae
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
GHKL superfamily
Gyrase subunit B
Molecular signatures
Nocardiopsaceae
Streptosporangiaceae
Streptosporangineae
gyrB
Amino Acid Sequence

331, Shih-Pin Rd., Hsinchu 30062, Taiwan

Phone: +886-3-5223191

E-mail: bcrcweb@firdi.org.tw

web maintainance: +886-3-5223191 ext 593

Copyright © 2018.BCRC All rights reserved.The duplication or use of information and data such as texts or images or any linkage the website at the "bcrc.firdi.org.tw" is only permitted with the indication of the source or with prior approval by the BCRC(Bioresource Collection and Research Center).