Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorum
Background: Azospirillum baldaniorum Sp245 produces poly-β-hydroxybutyrate, a biodegradable polymer with characteristics similar to synthetic thermoplastics, including polypropylene. In the synthesis pathway, the poly-β-hydroxybutyrate synthase enzyme uses thioesters of 3-hydroxy butyryl-CoA as a su...
| Published in: | Journal of Genetic Engineering and Biotechnology |
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| Main Authors: | , , , |
| Format: | Article |
| Language: | English |
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Elsevier
2024-09-01
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| Online Access: | http://www.sciencedirect.com/science/article/pii/S1687157X24001069 |
| _version_ | 1849994018705899520 |
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| author | Doris del Carmen Fuentes Lucía Soto-Urzua Lino Javier Martínez-Soto Luis Javier Martínez-Morales |
| author_facet | Doris del Carmen Fuentes Lucía Soto-Urzua Lino Javier Martínez-Soto Luis Javier Martínez-Morales |
| author_sort | Doris del Carmen Fuentes |
| collection | DOAJ |
| container_title | Journal of Genetic Engineering and Biotechnology |
| description | Background: Azospirillum baldaniorum Sp245 produces poly-β-hydroxybutyrate, a biodegradable polymer with characteristics similar to synthetic thermoplastics, including polypropylene. In the synthesis pathway, the poly-β-hydroxybutyrate synthase enzyme uses thioesters of 3-hydroxy butyryl-CoA as a substrate and catalyzes their polymerization with HS-CoA release. Methods: A study was conducted using in silico analysis of the two phbC genes of A. baldaniorum Sp245. One was selected for amplification and cloning into the pEXP5- CT/TOPO® vector, which was analysed by restriction pattern, polymerase chain reaction, and sequencing. SDS-PAGE analysis determined the molecular weight of the PhbC1 protein from Azospirillum baldaniorum (AbPhbC1). The presence of the protein was confirmed by Western blotting using anti-polyhistidine monoclonal antibodies. The enzymatic activity in the crude extract of AbPhbC1 was determined by measuring the concentration of sulfhydryl groups using the Ellman method. A UV–Vis assay was performed. To confirm the presence of the poly-β-hydroxybutyrate product, an NMR assay was performed. Results: In silico analyses, it is revealed that AbPhbC1 and the PhbC2 protein from Azospirillum baldaniorum (AbPhbC2) retain the poly-β-hydroxybutyrate polymerase and α/β hydrolase domain. The Cys-His-Asp catalytic triad is highly conserved in all four polyβ-hydroxyalkanoate synthases in the central subdomain, structurally similar to the reported crystallized proteins. The dimerization subdomain is different; in AbPhbC1, it is in the closed form; in AbPhbC2, it is in the open form; and in AbPhbC2, it lacks the EC region as class III and IV poly-β-hydroxyalcanoate synthases. In vitro, the molecular weight of AbPhbC1 was 68 kDa. The polymerization of PHB by AbPhbC1 was detected by the release of HS-CoA from the quantification of SH. The UV–Vis scan showed a characteristic peak at 264 nm. A comparison of the NMR spectra of the bacterial and commercial poly-β-hydroxybutyrate samples suggested their presence. Conclusion: In silico analyses suggested that AbPhbC1 and AbPhbC2 are structurally functional, except that AbPhbC2 might require the PhaR subunit for its activity; this strongly suggests that it could be a class IV poly-β-hydroxyalcanoate synthase. UV–Vis scanning and NMR spectroscopy revealed the synthesis of poly-β-hydroxybutyrate by the A. baldaniorum enzyme AbPhbC1, indicating that the enzyme is functional. |
| format | Article |
| id | doaj-art-77cfc82a7bac475dad616ea4285d87f3 |
| institution | Directory of Open Access Journals |
| issn | 1687-157X |
| language | English |
| publishDate | 2024-09-01 |
| publisher | Elsevier |
| record_format | Article |
| spelling | doaj-art-77cfc82a7bac475dad616ea4285d87f32025-08-20T00:51:53ZengElsevierJournal of Genetic Engineering and Biotechnology1687-157X2024-09-0122310040310.1016/j.jgeb.2024.100403Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorumDoris del Carmen Fuentes0Lucía Soto-Urzua1Lino Javier Martínez-Soto2Luis Javier Martínez-Morales3Centro de Oncología, Instituto Mexicano del Seguro Social, Campeche CP: 24000, Mexico1Centro de Investigaciones en Ciencias Microbiológicas, Benemérita Universidad Autónoma de Puebla, Puebla PC. 72570, MexicoCentro de Investigaciones en Ciencias Microbiológicas, Benemérita Universidad Autónoma de Puebla, Puebla PC. 72570, MexicoCentro de Investigaciones en Ciencias Microbiológicas, Benemérita Universidad Autónoma de Puebla, Puebla PC. 72570, Mexico; Corresponding author.Background: Azospirillum baldaniorum Sp245 produces poly-β-hydroxybutyrate, a biodegradable polymer with characteristics similar to synthetic thermoplastics, including polypropylene. In the synthesis pathway, the poly-β-hydroxybutyrate synthase enzyme uses thioesters of 3-hydroxy butyryl-CoA as a substrate and catalyzes their polymerization with HS-CoA release. Methods: A study was conducted using in silico analysis of the two phbC genes of A. baldaniorum Sp245. One was selected for amplification and cloning into the pEXP5- CT/TOPO® vector, which was analysed by restriction pattern, polymerase chain reaction, and sequencing. SDS-PAGE analysis determined the molecular weight of the PhbC1 protein from Azospirillum baldaniorum (AbPhbC1). The presence of the protein was confirmed by Western blotting using anti-polyhistidine monoclonal antibodies. The enzymatic activity in the crude extract of AbPhbC1 was determined by measuring the concentration of sulfhydryl groups using the Ellman method. A UV–Vis assay was performed. To confirm the presence of the poly-β-hydroxybutyrate product, an NMR assay was performed. Results: In silico analyses, it is revealed that AbPhbC1 and the PhbC2 protein from Azospirillum baldaniorum (AbPhbC2) retain the poly-β-hydroxybutyrate polymerase and α/β hydrolase domain. The Cys-His-Asp catalytic triad is highly conserved in all four polyβ-hydroxyalkanoate synthases in the central subdomain, structurally similar to the reported crystallized proteins. The dimerization subdomain is different; in AbPhbC1, it is in the closed form; in AbPhbC2, it is in the open form; and in AbPhbC2, it lacks the EC region as class III and IV poly-β-hydroxyalcanoate synthases. In vitro, the molecular weight of AbPhbC1 was 68 kDa. The polymerization of PHB by AbPhbC1 was detected by the release of HS-CoA from the quantification of SH. The UV–Vis scan showed a characteristic peak at 264 nm. A comparison of the NMR spectra of the bacterial and commercial poly-β-hydroxybutyrate samples suggested their presence. Conclusion: In silico analyses suggested that AbPhbC1 and AbPhbC2 are structurally functional, except that AbPhbC2 might require the PhaR subunit for its activity; this strongly suggests that it could be a class IV poly-β-hydroxyalcanoate synthase. UV–Vis scanning and NMR spectroscopy revealed the synthesis of poly-β-hydroxybutyrate by the A. baldaniorum enzyme AbPhbC1, indicating that the enzyme is functional.http://www.sciencedirect.com/science/article/pii/S1687157X24001069PHB polymeraseAzospirillum baldaniorumPhbC activityBiodegradable polymer |
| spellingShingle | Doris del Carmen Fuentes Lucía Soto-Urzua Lino Javier Martínez-Soto Luis Javier Martínez-Morales Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorum PHB polymerase Azospirillum baldaniorum PhbC activity Biodegradable polymer |
| title | Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorum |
| title_full | Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorum |
| title_fullStr | Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorum |
| title_full_unstemmed | Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorum |
| title_short | Bioinformatic and functional analysis of a PHB polymerase (PhbC) from Azospirillum baldaniorum |
| title_sort | bioinformatic and functional analysis of a phb polymerase phbc from azospirillum baldaniorum |
| topic | PHB polymerase Azospirillum baldaniorum PhbC activity Biodegradable polymer |
| url | http://www.sciencedirect.com/science/article/pii/S1687157X24001069 |
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