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A novel class of polymorphic toxins in Bacteroidetes | Life Science Alliance
A novel class of polymorphic toxins in Bacteroidetes | Life Science Alliance

Schematic representation of the approach used in this study. A... |  Download Scientific Diagram
Schematic representation of the approach used in this study. A... | Download Scientific Diagram

A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted  by Bacterial Effector Proteins | PLOS ONE
A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted by Bacterial Effector Proteins | PLOS ONE

Yeast growth is inhibited by expression of seven Xanthomonas campestris...  | Download Scientific Diagram
Yeast growth is inhibited by expression of seven Xanthomonas campestris... | Download Scientific Diagram

Identification of Growth Inhibition Phenotypes Induced by Expression of  Bacterial Type III Effectors in Yeast | Protocol
Identification of Growth Inhibition Phenotypes Induced by Expression of Bacterial Type III Effectors in Yeast | Protocol

Yeast growth is inhibited by expression of seven Xanthomonas campestris...  | Download Scientific Diagram
Yeast growth is inhibited by expression of seven Xanthomonas campestris... | Download Scientific Diagram

In-vivo Single-Molecule Imaging in Yeast: Applications and Challenges -  ScienceDirect
In-vivo Single-Molecule Imaging in Yeast: Applications and Challenges - ScienceDirect

Dor Salomon (@DrDorSalomon) / Twitter
Dor Salomon (@DrDorSalomon) / Twitter

A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted  by Bacterial Effector Proteins | PLOS ONE
A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted by Bacterial Effector Proteins | PLOS ONE

Dor Salomon (@DrDorSalomon) / Twitter
Dor Salomon (@DrDorSalomon) / Twitter

The regulatory network of Vibrio parahaemolyticus type VI secretion system  1 - Ben‐Yaakov - 2019 - Environmental Microbiology - Wiley Online Library
The regulatory network of Vibrio parahaemolyticus type VI secretion system 1 - Ben‐Yaakov - 2019 - Environmental Microbiology - Wiley Online Library

Dor Salomon - Senior Lecturer - Tel Aviv University | LinkedIn
Dor Salomon - Senior Lecturer - Tel Aviv University | LinkedIn

Effectors of animal and plant pathogens use a common domain to bind host  phosphoinositides | Nature Communications
Effectors of animal and plant pathogens use a common domain to bind host phosphoinositides | Nature Communications

Schematic representation of the approach used in this study. A... |  Download Scientific Diagram
Schematic representation of the approach used in this study. A... | Download Scientific Diagram

A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted  by Bacterial Effector Proteins | PLOS ONE
A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted by Bacterial Effector Proteins | PLOS ONE

Identification of Growth Inhibition Phenotypes Induced by Expression of  Bacterial Type III Effectors in Yeast | Protocol
Identification of Growth Inhibition Phenotypes Induced by Expression of Bacterial Type III Effectors in Yeast | Protocol

Expression of Pseudomonas syringae type III effectors in yeast under stress  conditions reveals that HopX1 attenuates activation
Expression of Pseudomonas syringae type III effectors in yeast under stress conditions reveals that HopX1 attenuates activation

Marine Drugs | Free Full-Text | The Antibacterial and Anti-Eukaryotic Type  VI Secretion System MIX-Effector Repertoire in Vibrionaceae
Marine Drugs | Free Full-Text | The Antibacterial and Anti-Eukaryotic Type VI Secretion System MIX-Effector Repertoire in Vibrionaceae

Dor Salomon - Senior Lecturer - Tel Aviv University | LinkedIn
Dor Salomon - Senior Lecturer - Tel Aviv University | LinkedIn

Type VI secretion system MIX‐effectors carry both antibacterial and  anti‐eukaryotic activities | EMBO reports
Type VI secretion system MIX‐effectors carry both antibacterial and anti‐eukaryotic activities | EMBO reports

PDF) Identification of Growth Inhibition Phenotypes Induced by Expression  of Bacterial Type III Effectors in Yeast
PDF) Identification of Growth Inhibition Phenotypes Induced by Expression of Bacterial Type III Effectors in Yeast

Vibrio Type III Effector VPA1380 Is Related to the Cysteine Protease Domain  of Large Bacterial Toxins | PLOS ONE
Vibrio Type III Effector VPA1380 Is Related to the Cysteine Protease Domain of Large Bacterial Toxins | PLOS ONE

Growth Inhibition Phenotypes Induced By Bacterial Type III Effectors  Expression l Protocol Preview - YouTube
Growth Inhibition Phenotypes Induced By Bacterial Type III Effectors Expression l Protocol Preview - YouTube

A modular effector with a DNase domain and a marker for T6SS substrates |  Nature Communications
A modular effector with a DNase domain and a marker for T6SS substrates | Nature Communications

Single-Molecule Analysis Reveals Linked Cycles of RSC Chromatin Remodeling  and Ace1p Transcription Factor Binding in Yeast - ScienceDirect
Single-Molecule Analysis Reveals Linked Cycles of RSC Chromatin Remodeling and Ace1p Transcription Factor Binding in Yeast - ScienceDirect

A comparative genomics methodology reveals a widespread family of  membrane-disrupting T6SS effectors | Nature Communications
A comparative genomics methodology reveals a widespread family of membrane-disrupting T6SS effectors | Nature Communications

A modular effector with a DNase domain and a marker for T6SS substrates |  Nature Communications
A modular effector with a DNase domain and a marker for T6SS substrates | Nature Communications

A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted  by Bacterial Effector Proteins | PLOS ONE
A Simple Yeast-Based Strategy to Identify Host Cellular Processes Targeted by Bacterial Effector Proteins | PLOS ONE