Your browser doesn't support javascript.
loading
Mostrar: 20 | 50 | 100
Resultados 1 - 12 de 12
Filtrar
Mais filtros

Base de dados
País/Região como assunto
Tipo de documento
Intervalo de ano de publicação
1.
Curr Microbiol ; 77(3): 500-508, 2020 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-31893298

RESUMO

A novel polyhydroxyalkanoate (PHA)-producing bacterium, Jeongeupia sp. USM3 (JCM 19920) was isolated from the limestone soil at Gua Tempurung, Perak, Malaysia. This is the first report on the complete genome sequence for the genus Jeongeupia. This genome consists of a circular chromosome with a size of 3,788,814 bp and contains 3557 genes. Two PHA synthase (phaC) genes encoding for the key enzyme in the polymerization of PHA monomers and other PHA-associated genes were identified from the genome. Phylogenetic analysis of the PhaC protein sequences has revealed that both PhaC1 and PhaC2 of Jeongeupia sp. USM3 are categorized as Class I PHA synthases with 56% similarity to each other. Both of the PHA synthase genes of this isolate were cloned and heterologously expressed in a PHA mutant strain Cupriavidus necator PHB-4. The ability of the transformants to accumulate PHA showed that both PhaC1 and PhaC2 were functional.


Assuntos
Aciltransferases/metabolismo , Betaproteobacteria/enzimologia , Betaproteobacteria/genética , Genoma Bacteriano , Poli-Hidroxialcanoatos/biossíntese , Microbiologia do Solo , Aciltransferases/genética , Cupriavidus necator/genética , Malásia , Filogenia , Sequenciamento Completo do Genoma
2.
Int J Mol Sci ; 21(22)2020 Nov 16.
Artigo em Inglês | MEDLINE | ID: mdl-33207642

RESUMO

Use of photosynthetic organisms is one of the sustainable ways to produce high-value products. Marine purple photosynthetic bacteria are one of the research focuses as microbial production hosts. Genetic transformation is indispensable as a biotechnology technique. However, only conjugation has been determined to be an applicable method for the transformation of marine purple photosynthetic bacteria so far. In this study, for the first time, a dual peptide-based transformation method combining cell penetrating peptide (CPP), cationic peptide and Tat-derived peptide (dTat-Sar-EED) (containing D-amino acids of Tat and endosomal escape domain (EED) connected by sarcosine linkers) successfully delivered plasmid DNA into Rhodovulum sulfidophilum, a marine purple photosynthetic bacterium. The plasmid delivery efficiency was greatly improved by dTat-Sar-EED. The concentrations of dTat-Sar-EED, cell growth stage and recovery duration affected the efficiency of plasmid DNA delivery. The delivery was inhibited at 4 °C and by A22, which is an inhibitor of the actin homolog MreB. This suggests that the plasmid DNA delivery occurred via MreB-mediated energy dependent process. Additionally, this peptide-mediated delivery method was also applicable for E. coli cells. Thus, a wide range of bacteria could be genetically transformed by using this novel peptide-based transformation method.


Assuntos
Organismos Aquáticos/genética , Peptídeos Penetradores de Células/química , Técnicas de Transferência de Genes , Plasmídeos/química , Rhodobacteraceae/genética , Organismos Aquáticos/metabolismo , Escherichia coli/genética , Escherichia coli/metabolismo , Plasmídeos/genética , Rhodobacteraceae/metabolismo
3.
BMC Microbiol ; 14: 318, 2014 Dec 24.
Artigo em Inglês | MEDLINE | ID: mdl-25539583

RESUMO

BACKGROUND: Special features of the Japanese ocean include its ranges of latitude and depth. This study is the first to examine the diversity of Class I and II PHA synthases (PhaC) in DNA samples from pelagic seawater taken from the Japan Trench and Nankai Trough from a range of depths from 24 m to 5373 m. PhaC is the key enzyme in microorganisms that determines the types of monomer units that are polymerized into polyhydroxyalkanoate (PHA) and thus affects the physicochemical properties of this thermoplastic polymer. Complete putative PhaC sequences were determined via genome walking, and the activities of newly discovered PhaCs were evaluated in a heterologous host. RESULTS: A total of 76 putative phaC PCR fragments were amplified from the whole genome amplified seawater DNA. Of these 55 clones contained conserved PhaC domains and were classified into 20 genetic groups depending on their sequence similarity. Eleven genetic groups have undisclosed PhaC activity based on their distinct phylogenetic lineages from known PHA producers. Three complete DNA coding sequences were determined by IAN-PCR, and one PhaC was able to produce poly(3-hydroxybutyrate) in recombinant Cupriavidus necator PHB-4 (PHB-negative mutant). CONCLUSIONS: A new functional PhaC that has close identity to Marinobacter sp. was discovered in this study. Phylogenetic classification for all the phaC genes isolated from uncultured bacteria has revealed that seawater and other environmental resources harbor a great diversity of PhaCs with activities that have not yet been investigated. Functional evaluation of these in silico-based PhaCs via genome walking has provided new insights into the polymerizing ability of these enzymes.


Assuntos
Aciltransferases/genética , Aciltransferases/isolamento & purificação , Metagenômica , Água do Mar/microbiologia , Aciltransferases/metabolismo , Clonagem Molecular , Análise por Conglomerados , Cupriavidus necator/genética , Cupriavidus necator/metabolismo , Expressão Gênica , Variação Genética , Hidroxibutiratos/metabolismo , Japão , Marinobacter/genética , Dados de Sequência Molecular , Filogenia , Poliésteres/metabolismo , Análise de Sequência de DNA , Homologia de Sequência
4.
ACS Synth Biol ; 11(2): 909-920, 2022 02 18.
Artigo em Inglês | MEDLINE | ID: mdl-35061943

RESUMO

Polyhydroxyalkanoates (PHAs) are green and sustainable bioplastics that could replace petrochemical synthetic plastics without posing environmental threats to living organisms. In addition, sustainable PHA production could be achieved using marine photosynthetic purple nonsulfur bacteria (PNSBs) that utilize natural seawater, sunlight, carbon dioxide gas, and nitrogen gas for growth. However, PHA production using marine photosynthetic PNSBs has not been economically feasible yet due to its high cost and low productivity. In this work, strain improvement, using genome-wide mutagenesis coupled with high-throughput screening via fluorescence-activated cell sorting, we were able to create Rhodovulum sulfidophilum mutants with enhanced volumetric PHA productivity, with an up to 1.7-fold increase. The best selected mutants (E6 and E6M4) reached the stationary growth phase 1 day faster and accumulated the maximum PHA content 2 days faster than the wild type. Maximizing volumetric PHA productivity before the stationary growth phase is indeed an additional advantage for R. sulfidophilum as a growth-associated PHA producer.


Assuntos
Poli-Hidroxialcanoatos , Fotossíntese/genética , Poli-Hidroxialcanoatos/metabolismo , Proteobactérias
5.
Microbiol Resour Announc ; 10(30): e0043821, 2021 Jul 29.
Artigo em Inglês | MEDLINE | ID: mdl-34323610

RESUMO

Bacteria of the genus Bacillus have been investigated due to the ability that many species have of accumulating polyhydroxyalkanoates (PHA) via a wide variety of raw materials as their carbon source. Herein, we report the draft whole-genome sequence of the putative PHA-accumulating strain Bacillus paramycoides LB_RP2, isolated from an Amazonian river.

6.
Commun Biol ; 3(1): 357, 2020 07 08.
Artigo em Inglês | MEDLINE | ID: mdl-32641733

RESUMO

Photosynthetic microorganisms such as cyanobacteria, purple bacteria and microalgae have attracted great interest as promising platforms for economical and sustainable production of bioenergy, biochemicals, and biopolymers. Here, we demonstrate heterotrophic production of spider dragline silk proteins, major ampullate spidroins (MaSp), in a marine photosynthetic purple bacterium, Rhodovulum sulfidophilum, under both photoheterotrophic and photoautotrophic growth conditions. Spider silk is a biodegradable and biocompatible material with remarkable mechanical properties. R. sulfidophilum grow by utilizing abundant and renewable nonfood bioresources such as seawater, sunlight, and gaseous CO2 and N2, thus making this photosynthetic microbial cell factory a promising green and sustainable production platform for proteins and biopolymers, including spider silks.


Assuntos
Reatores Biológicos , Fibroínas/biossíntese , Rhodovulum/metabolismo , Animais , Reatores Biológicos/microbiologia , Fibroínas/genética , Fibroínas/isolamento & purificação , Fibroínas/ultraestrutura , Microrganismos Geneticamente Modificados/genética , Microrganismos Geneticamente Modificados/metabolismo , Microscopia Eletrônica de Varredura , Fotossíntese , Rhodovulum/genética , Aranhas
7.
Int J Biol Macromol ; 159: 250-257, 2020 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-32417540

RESUMO

Among the various types of polyhydroxyalkanoate (PHA), poly[(R)-3-hydroxybutyrate-co-(R)-3-hydroxyhexanoate] [P(3HB-co-3HHx)] has a high potential to serve as commercial bioplastic due to its striking resemblance to petroleum-based plastics. In this study, five different genotypes of Cupriavidusnecator transformants harbouring the phaCBP-M-CPF4 gene (including PHB¯4/pBBR1-CBP-M-CPF4) were developed to evaluate the efficiency of 3HHx monomer incorporation. The fraction of 3-hydroxyhexanoate (3HHx) monomer that was incorporated into the PHA synthesized by these C. necator transformants using palm oil as the sole carbon source, was examined. Overall, co-expression of enoyl-CoA hydratase gene (phaJ1) from Pseudomonas aeruginosa, along with PHA synthase (PhaC), increased the 3HHx composition in the PHA copolymer. The differences in the enzyme activities of ß-ketothiolase (PhaACn) and NADPH-dependent acetoacetyl-CoA reductase (PhaBCn) of the C. necator mutant hosts used in this study, were observed to alter the 3HHx composition and molecular weight of the PHA copolymer produced. The 3HHx fractions in the P(3HB-co-3HHx) produced by these C. necator transformants ranged between 1 and 18 mol%, while the weight-average molecular weight ranged from 0.7 × 106 to 1.8 × 106 Da. PhaCBP-M-CPF4 displayed a typical initial lag-phase and a relatively low synthase activity in the in vitro enzyme assay, which is thought to be the reason for the higher molecular weights of PHA obtained in this study.


Assuntos
Ácido 3-Hidroxibutírico/biossíntese , Aciltransferases/metabolismo , Cupriavidus necator/metabolismo , Fermentação , Óleos de Plantas/metabolismo , Ácido 3-Hidroxibutírico/isolamento & purificação , Caproatos/isolamento & purificação , Ativação Enzimática , Peso Molecular , Oxirredução , Óleo de Palmeira/metabolismo , Plasmídeos/química , Poli-Hidroxialcanoatos/biossíntese , Polímeros/metabolismo , Transformação Bacteriana
8.
J Biotechnol ; 313: 18-28, 2020 Apr 10.
Artigo em Inglês | MEDLINE | ID: mdl-32171790

RESUMO

The polyhydroxyalkanoate (PHA) producing capability of four bacterial strains isolated from Antarctica was reported in a previous study. This study analyzed the PHA synthase genes and the PHA-associated gene clusters from the two antarctic Pseudomonas isolates (UMAB-08 and UMAB-40) and the two antarctic Janthinobacterium isolates (UMAB-56 and UMAB-60) through whole-genome sequence analysis. The Pseudomonas isolates were found to carry PHA synthase genes which fall into two different PHA gene clusters, namely Class I and Class II, which are involved in the biosynthesis of short-chain-length-PHA (SCL-PHA) and medium-chain-length-PHA (MCL-PHA), respectively. On the other hand, the Janthinobacterium isolates carry a Class I and an uncharacterized putative PHA synthase genes. No other gene involved in PHA synthesis was detected in close proximity to the uncharacterized putative PHA synthase gene in the Janthinobacterium isolates, therefore it falls into a separate clade from the ordinary Class I, II, III and IV clades of PHA synthase (PhaC) phylogenetic tree. Multiple sequence alignment showed that the uncharacterized putative PHA synthase gene contains all the highly conserved amino acid residues and the proposed catalytic triad of PHA synthase. PHA biosynthesis and in vitro PhaC enzymatic assay results showed that this uncharacterized putative PHA synthase from Janthinobacterium sp. UMAB-60 is funtional. This report adds new knowledge to the PHA synthase database as we describe scarce information of PHA synthase genes and PHA-associated gene clusters from the antarctic bacterial isolates (extreme and geographically isolated environment) and comparing with those from non-antarctic PHA-producing bacteria.


Assuntos
Aciltransferases/genética , Genoma Bacteriano/genética , Família Multigênica , Oxalobacteraceae/enzimologia , Poli-Hidroxialcanoatos/metabolismo , Pseudomonas/enzimologia , Regiões Antárticas , Oxalobacteraceae/genética , Filogenia , Pseudomonas/genética , Alinhamento de Sequência , Sequenciamento Completo do Genoma
9.
PLoS One ; 14(4): e0212654, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-31034524

RESUMO

Polyhydroxyalkanoates (PHAs) are a group of natural biopolyesters that resemble petroleum-derived plastics in terms of physical properties but are less harmful biologically to the environment and humans. Most of the current PHA producers are heterotrophs, which require expensive feeding materials and thus contribute to the high price of PHAs. Marine photosynthetic bacteria are promising alternative microbial cell factories for cost-effective, carbon neutral and sustainable production of PHAs. In this study, Rhodovulum sulfidophilum, a marine photosynthetic purple nonsulfur bacterium with a high metabolic versatility, was evaluated for cell growth and PHA production under the influence of various media components found in previous studies. We evaluated iron, using ferric citrate, as another essential factor for cell growth and efficient PHA production and confirmed that PHA production in R. sulfidophilum was growth-associated under microaerobic and photoheterotrophic conditions. In fact, a subtle amount of iron (1 to 2 µM) was sufficient to promote rapid cell growth and biomass accumulation, as well as a high PHA volumetric productivity during the logarithmic phase. However, an excess amount of iron did not enhance the growth rate or PHA productivity. Thus, we successfully confirmed that an optimum concentration of iron, an essential nutrient, promotes cell growth in R. sulfidophilum and also enhances PHA utilization.


Assuntos
Ferro/metabolismo , Fotossíntese/genética , Poli-Hidroxialcanoatos/biossíntese , Rhodovulum/metabolismo , Proteínas de Bactérias/metabolismo , Biomassa , Carbono/metabolismo , Poli-Hidroxialcanoatos/metabolismo , Rhodovulum/crescimento & desenvolvimento
11.
J Biosci Bioeng ; 121(4): 355-64, 2016 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-26467694

RESUMO

PHA synthase (PhaC) is the key enzyme in the production of biodegradable plastics known as polyhydroxyalkanoate (PHA). Nevertheless, most of these enzymes are isolated from cultivable bacteria using traditional isolation method. Most of the microorganisms found in nature could not be successfully cultivated due to the lack of knowledge on their growth conditions. In this study, a culture-independent approach was applied. The presence of phaC genes in limestone soil was screened using primers targeting the class I and II PHA synthases. Based on the partial gene sequences, a total of 19 gene clusters have been identified and 7 clones were selected for full length amplification through genome walking. The complete phaC gene sequence of one of the clones (SC8) was obtained and it revealed 81% nucleotide identity to the PHA synthase gene of Chromobacterium violaceum ATCC 12472. This gene obtained from uncultured bacterium was successfully cloned and expressed in a Cupriavidus necator PHB(-)4 PHA-negative mutant resulting in the accumulation of significant amount of PHA. The PHA synthase activity of this transformant was 64 ± 12 U/g proteins. This paper presents a pioneering study on the discovery of phaC in a limestone area using metagenomic approach. Through this study, a new functional phaC was discovered from uncultured bacterium. Phylogenetic classification for all the phaCs isolated from this study has revealed that limestone hill harbors a great diversity of PhaCs with activities that have not yet been investigated.


Assuntos
Aciltransferases/genética , Aciltransferases/isolamento & purificação , Carbonato de Cálcio , Metagenômica , Solo/química , Chromobacterium/enzimologia , Chromobacterium/genética , Clonagem Molecular , Cupriavidus necator/genética , Primers do DNA/genética , Filogenia
12.
PLoS One ; 9(1): e86368, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24466058

RESUMO

The photosynthetic cyanobacterium, Synechocystis sp. strain 6803, is a potential platform for the production of various chemicals and biofuels. In this study, direct photosynthetic production of a biopolymer, polyhydroxyalkanoate (PHA), in genetically engineered Synechocystis sp. achieved as high as 14 wt%. This is the highest production reported in Synechocystis sp. under photoautotrophic cultivation conditions without the addition of a carbon source. The addition of acetate increased PHA accumulation to 41 wt%, and this value is comparable to the highest production obtained with cyanobacteria. Transcriptome analysis by RNA-seq coupled with real-time PCR was performed to understand the global changes in transcript levels of cells subjected to conditions suitable for photoautotrophic PHA biosynthesis. There was lower expression of most PHA synthesis-related genes in recombinant Synechocystis sp. with higher PHA accumulation suggesting that the concentration of these enzymes is not the limiting factor to achieving high PHA accumulation. In order to cope with the higher PHA production, cells may utilize enhanced photosynthesis to drive the product formation. Results from this study suggest that the total flux of carbon is the possible driving force for the biosynthesis of PHA and the polymerizing enzyme, PHA synthase, is not the only critical factor affecting PHA-synthesis. Knowledge of the regulation or control points of the biopolymer production pathways will facilitate the further use of cyanobacteria for biotechnological applications.


Assuntos
Perfilação da Expressão Gênica , Fotossíntese , Poli-Hidroxialcanoatos/biossíntese , Synechocystis/genética , Synechocystis/metabolismo , Regulação Bacteriana da Expressão Gênica , Análise de Sequência de RNA , Transcrição Gênica
SELEÇÃO DE REFERÊNCIAS
DETALHE DA PESQUISA