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Maria Teresa Marques Novo-mansur - One of the best experts on this subject based on the ideXlab platform.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp. citri Proteins and proteomics
    Biochimica et Biophysica Acta, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp citri
    Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Abstract Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

Leandro Seiji Goto - One of the best experts on this subject based on the ideXlab platform.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp. citri Proteins and proteomics
    Biochimica et Biophysica Acta, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp citri
    Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Abstract Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

Humberto D'muniz Pereira - One of the best experts on this subject based on the ideXlab platform.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp. citri Proteins and proteomics
    Biochimica et Biophysica Acta, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp citri
    Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Abstract Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

Carla Silva Martins - One of the best experts on this subject based on the ideXlab platform.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp. citri Proteins and proteomics
    Biochimica et Biophysica Acta, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp citri
    Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Abstract Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

Camila Malvessi Pereira - One of the best experts on this subject based on the ideXlab platform.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp. citri Proteins and proteomics
    Biochimica et Biophysica Acta, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.

  • Structural and functional characterization of the Phosphoglucomutase from Xanthomonas citri subsp citri
    Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics, 2016
    Co-Authors: Leandro Seiji Goto, André Vessoni Alexandrino, Camila Malvessi Pereira, Carla Silva Martins, Humberto D'muniz Pereira, José Brandão-neto, Maria Teresa Marques Novo-mansur
    Abstract:

    Abstract Citrus canker, caused by bacteria Xanthomonas citri subsp. citri, can affect all economically important varieties of citrus. Studying Xanthomonas genes related to the invasive capacity may improve the knowledge on how this works and ultimately use the information to avoid the disease. Some annotated genes from Xanthomonas citri subsp. citri published genome are addressed to an interesting class of genes named “pathogenicity, virulence and adaptation”. One of them is xanA, which encodes a predicted Phosphoglucomutase. Phosphoglucomutases are ubiquitous enzymes among the living kingdoms that play roles in carbohydrate metabolism, catalyzing the reversible conversion of 1- to 6-phosphoglucose. In Xanthomonas, Phosphoglucomutase activity is required to synthesize precursors of the pathogenesis-related polysaccharide xanthan. In this work, a characterization of this gene product is presented by structural and functional studies. Molecular cloning was used for heterologous expression and deletion of xanA. A Michaelis-Menten kinetics model was obtained using the recombinant protein. The protein structure was also determined by X-ray diffraction on the recombinant enzyme substrate-free, bound to glucose-1,6-biphosphate and to glucose-1-phosphate. Deletion of xanA was done with a suicide plasmid construct and the obtained mutant was tested for pathogenic capacity. This study is the first describing the properties of the Xanthomonas citri subsp. citri Phosphoglucomutase.