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Updated: Apr 15, 2026

Analysis of Yersinia enterocolitica Effector Translocation into Host Cells Using Beta-lactamase Effector Fusions
Published on: October 13, 2015
Current activities of the Yersinia effector protein YopM
Sabrina Höfling1, Benjamin Grabowski1, Stefanie Norkowski1
1Institute of Infectiology - Center for Molecular Biology of Inflammation (ZMBE), University of Münster, Germany.
Abstract:
Yersinia outer protein M (YopM) belongs to the group of Yop effector proteins, which are highly conserved among pathogenic Yersinia species. During infection, the effectors are delivered into the host cell cytoplasm via the type 3 secretion system to subvert the host immune response and support the survival of Yersinia. In contrast to the other Yop effectors, YopM does not possess a known enzymatic activity and its molecular mechanism(s) of action remain(s) poorly understood. However, YopM was shown to promote colonization and dissemination of Yersinia, thus being crucial for the pathogen's virulence in vivo. Moreover, YopM interacts with several host cell proteins and might utilize them to execute its anti-inflammatory activities. The results obtained so far indicate that YopM is a multifunctional protein that counteracts the host immune defense by multiple activities, which are at least partially independent of each other. Finally, its functions seem to be also influenced by differences between the specific YopM isoforms expressed by Yersinia subspecies. In this review, we focus on the global as well as more specific contribution of YopM to virulence of Yersinia during infection and point out the various extra- and intracellular molecular functions of YopM. In addition, the novel cell-penetrating ability of recombinant YopM and its potential applications as a self-delivering immunomodulatory therapeutic will be discussed.
Insights
Yersinia outer protein M (YopM) is a key virulence factor in pathogenic Yersinia, crucial for bacterial survival and immune evasion. This review explores YopM
Area of Science:
- Microbiology
- Immunology
- Molecular Biology
Background:
- Yersinia outer protein M (YopM) is a conserved effector protein in pathogenic Yersinia species.
- Delivered via type 3 secretion system, YopM subverts host immunity but its mechanism is poorly understood.
- Unlike other Yop effectors, YopM lacks known enzymatic activity, highlighting its unique role.
Purpose of the Study:
- To review the contribution of YopM to Yersinia virulence.
- To elucidate the molecular mechanisms underlying YopM's anti-inflammatory activities.
- To discuss the potential therapeutic applications of YopM.
Main Methods:
- Literature review of existing studies on YopM.
- Analysis of YopM's interactions with host cell proteins.
- Investigation of YopM's cell-penetrating properties.
Main Results:
- YopM promotes Yersinia colonization and dissemination in vivo.
- YopM exhibits multifunctional, partially independent activities against host immune defense.
- YopM isoforms influence its virulence functions.
Conclusions:
- YopM is essential for Yersinia virulence through diverse extra- and intracellular mechanisms.
- YopM's interaction with host proteins is key to its immunomodulatory effects.
- Recombinant YopM's cell-penetrating ability offers potential for immunomodulatory therapeutics.
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