Helicobacter pylori CagA induces Ras-independent morphogenetic response through SHP-2 recruitment and activation
Hideaki Higashi1, Akihiro Nakaya, Ryouhei Tsutsumi
1Division of Molecular Oncology, Institute for Genetic Medicine, Hokkaido University, Kita-15, Nishi-7, Kita-ku, Sapporo 060-0815, Japan.
Abstract:
The CagA protein of Helicobacter pylori, which is injected from the bacteria into bacteria-attached gastric epithelial cells, is associated with gastric carcinoma. CagA is tyrosine-phosphorylated by Src family kinases, binds the SH2 domain-containing SHP-2 phosphatase in a tyrosine phosphorylation-dependent manner, and deregulates its enzymatic activity. We established AGS human gastric epithelial cells that inducibly express wild-type or a phosphorylation-resistant CagA, in which tyrosine residues constituting the EPIYA motifs were substituted with alanines. Upon induction, wild-type CagA, but not the mutant CagA, elicited strong elongation of cell shape, termed the "hummingbird" phenotype. Time-lapse video microscopic analysis revealed that the CagA-expressing cells exhibited a marked increase in cell motility with successive rounds of elongation-contraction processes. Inhibition of CagA phosphorylation by an Src kinase inhibitor, PP2, or knockdown of SHP-2 expression by small interference RNA (siRNA) abolished the CagA-mediated hummingbird phenotype. The morphogenetic activity of CagA also required Erk MAPK but was independent of Ras or Grb2. In AGS cells, CagA prolonged duration of Erk activation in response to serum stimulation. Conversely, inhibition of SHP-2 expression by siRNA abolished the sustained Erk activation. Thus, SHP-2 acts as a positive regulator of Erk activity in AGS cells. These results indicate that SHP-2 is involved in the Ras-independent modification of Erk signals that is necessary for the morphogenetic activity of CagA. Our work therefore suggests a key role of SHP-2 in the pathological activity of H. pylori virulence factor CagA.
Insights
Helicobacter pylori CagA protein induces a "hummingbird" cell shape and motility by activating SHP-2 phosphatase and Erk MAPK signaling. This highlights SHP-2
Area of Science:
- Cell Biology
- Microbiology
- Molecular Biology
Background:
- Helicobacter pylori CagA protein is a key virulence factor linked to gastric carcinoma.
- CagA is tyrosine-phosphorylated by Src kinases and interacts with SHP-2 phosphatase, affecting its activity.
- Gastric epithelial cells are the target of CagA injection, leading to cellular changes.
Purpose of the Study:
- To investigate the role of CagA in cellular morphology and motility.
- To elucidate the signaling pathways involved in CagA-mediated cellular effects, particularly the involvement of SHP-2 and Erk MAPK.
- To understand the mechanism by which CagA contributes to gastric pathogenesis.
Main Methods:
- Establishment of AGS human gastric epithelial cells inducibly expressing wild-type or mutant CagA (EPIYA-to-alanine substitutions).
- Time-lapse video microscopy to analyze cell shape changes ('hummingbird' phenotype) and motility.
- Inhibition of CagA phosphorylation (Src kinase inhibitor PP2) and SHP-2 expression (siRNA); assessment of Erk MAPK activation.
Main Results:
- Wild-type CagA induced a 'hummingbird' phenotype and increased cell motility, unlike mutant CagA.
- Inhibition of CagA phosphorylation or SHP-2 expression abolished the hummingbird phenotype.
- CagA-mediated morphogenetic activity required Erk MAPK but not Ras or Grb2, and involved sustained Erk activation via SHP-2.
Conclusions:
- SHP-2 phosphatase is a positive regulator of Erk activity in gastric epithelial cells.
- SHP-2 mediates Ras-independent Erk signaling essential for CagA's morphogenetic activity.
- SHP-2 plays a critical role in the pathological effects of H. pylori CagA virulence factor.
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