The Experts below are selected from a list of 97137 Experts worldwide ranked by ideXlab platform

Yves Le Loir - One of the best experts on this subject based on the ideXlab platform.

  • corrigendum heterogeneous family of cyclomodulins smart weapons that allow bacteria to hijack the Eukaryotic Cell cycle and promote infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Martine Deplanche, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Rachid Elaouar Filho, Vasco Azevedo, Yves Le Loir
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of action of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leucocidin, phenol soluble modulins and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.

  • Heterogeneous Family of Cyclomodulins: Smart Weapons That Allow Bacteria to Hijack the Eukaryotic Cell Cycle and Promote Infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Rachid A. El-aouar Filho, Martine Deplanche, Vasco A. De Carvalho Azevedo, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Yves Le Loir, Nadia Berkova
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of actions of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leukocidin, phenol soluble modulins, and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.

Rachid Elaouar Filho - One of the best experts on this subject based on the ideXlab platform.

  • corrigendum heterogeneous family of cyclomodulins smart weapons that allow bacteria to hijack the Eukaryotic Cell cycle and promote infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Martine Deplanche, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Rachid Elaouar Filho, Vasco Azevedo, Yves Le Loir
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of action of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leucocidin, phenol soluble modulins and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.

Nadia Berkova - One of the best experts on this subject based on the ideXlab platform.

  • Heterogeneous Family of Cyclomodulins: Smart Weapons That Allow Bacteria to Hijack the Eukaryotic Cell Cycle and Promote Infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Rachid A. El-aouar Filho, Martine Deplanche, Vasco A. De Carvalho Azevedo, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Yves Le Loir, Nadia Berkova
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of actions of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leukocidin, phenol soluble modulins, and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.

Gérard Lina - One of the best experts on this subject based on the ideXlab platform.

  • corrigendum heterogeneous family of cyclomodulins smart weapons that allow bacteria to hijack the Eukaryotic Cell cycle and promote infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Martine Deplanche, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Rachid Elaouar Filho, Vasco Azevedo, Yves Le Loir
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of action of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leucocidin, phenol soluble modulins and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.

  • Heterogeneous Family of Cyclomodulins: Smart Weapons That Allow Bacteria to Hijack the Eukaryotic Cell Cycle and Promote Infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Rachid A. El-aouar Filho, Martine Deplanche, Vasco A. De Carvalho Azevedo, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Yves Le Loir, Nadia Berkova
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of actions of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leukocidin, phenol soluble modulins, and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.

Martine Deplanche - One of the best experts on this subject based on the ideXlab platform.

  • corrigendum heterogeneous family of cyclomodulins smart weapons that allow bacteria to hijack the Eukaryotic Cell cycle and promote infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Martine Deplanche, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Rachid Elaouar Filho, Vasco Azevedo, Yves Le Loir
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of action of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leucocidin, phenol soluble modulins and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.

  • Heterogeneous Family of Cyclomodulins: Smart Weapons That Allow Bacteria to Hijack the Eukaryotic Cell Cycle and Promote Infections
    Frontiers in Cellular and Infection Microbiology, 2017
    Co-Authors: Rachid A. El-aouar Filho, Martine Deplanche, Vasco A. De Carvalho Azevedo, Frederic Taieb, Pierre L Goossens, Thiago Luiz De Paula Castro, Gérard Lina, Aurélie Nicolas, Yves Le Loir, Nadia Berkova
    Abstract:

    Some bacterial pathogens modulate signaling pathways of Eukaryotic Cells in order to subvert the host response for their own benefit, leading to successful colonization and invasion. Pathogenic bacteria produce multiple compounds that generate favorable conditions to their survival and growth during infection in Eukaryotic hosts. Many bacterial toxins can alter the Cell cycle progression of host Cells, impairing essential Cellular functions and impeding host Cell division. This review summarizes current knowledge regarding cyclomodulins, a heterogeneous family of bacterial effectors that induce Eukaryotic Cell cycle alterations. We discuss the mechanisms of actions of cyclomodulins according to their biochemical properties, providing examples of various cyclomodulins such as cycle inhibiting factor, γ-glutamyltranspeptidase, cytolethal distending toxins, shiga toxin, subtilase toxin, anthrax toxin, cholera toxin, adenylate cyclase toxins, vacuolating cytotoxin, cytotoxic necrotizing factor, Panton-Valentine leukocidin, phenol soluble modulins, and mycolactone. Special attention is paid to the benefit provided by cyclomodulins to bacteria during colonization of the host.