Yersinia pestis YopK Inhibits Bacterial Adhesion to Host Cells by Binding to the Extracellular Matrix Adaptor Protein Matrilin-2.
Yafang TanWanbing LiuQingwen ZhangShiyang CaoHaihong ZhaoTong WangZhizhen QiYanping HanYa-Jun SongXiaoyi WangRuifu YangZongmin DuPublished in: Infection and immunity (2017)
Pathogenic yersiniae harbor a type III secretion system (T3SS) that injects Yersinia outer protein (Yop) into host cells. YopK has been shown to control Yop translocation and prevent inflammasome recognition of the T3SS by the innate immune system. Here, we demonstrate that YopK inhibits bacterial adherence to host cells by binding to the extracellular matrix adaptor protein matrilin-2 (MATN2). YopK binds to MATN2, and deleting amino acids 91 to 124 disrupts binding of YopK to MATN2. A yopK null mutant exhibits a hyperadhesive phenotype, which could be responsible for the established Yop hypertranslocation phenotype of yopK mutants. Expression of YopK, but not YopKΔ91-124, in a yopK mutant restored the wild-type phenotypes of adhesion and Yop translocation, suggesting that binding to MATN2 might be essential for YopK to inhibit bacterial adhesion and negatively regulate Yop translocation. A green fluorescent protein (GFP)-YopK fusion specifically binds to the endogenous MATN2 on the surface of HeLa cells, whereas GFP-YopKΔ91-124 cannot. Addition of purified YopK protein during infection decreased adhesion of Y. pestis to HeLa cells, while YopKΔ91-124 protein showed no effect. Taking these results together, we propose a model that the T3SS-secreted YopK hinders bacterial adhesion to HeLa cells by binding to MATN2, which is ubiquitously exposed on eukaryotic cells.
Keyphrases
- induced apoptosis
- cell cycle arrest
- extracellular matrix
- amino acid
- cell death
- signaling pathway
- escherichia coli
- oxidative stress
- pseudomonas aeruginosa
- wild type
- biofilm formation
- pi k akt
- immune response
- adipose tissue
- staphylococcus aureus
- type iii
- weight loss
- insulin resistance
- cell migration
- quantum dots
- transcription factor
- long non coding rna