Related Experiment Video
Updated: Jul 6, 2026

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Murine cytomegalovirus m38.5 protein inhibits Bax-mediated cell death
Igor Jurak1, Uwe Schumacher, Hrvoje Simic
1Division of Viral Infections, Robert Koch Institute, Nordufer 20, 13353 Berlin, Germany.
Abstract:
Many viruses encode proteins that inhibit the induction of programmed cell death at the mitochondrial checkpoint. Murine cytomegalovirus (MCMV) encodes the m38.5 protein, which localizes to mitochondria and protects human HeLa cells and fibroblasts from apoptosis triggered by proteasome inhibitors but not from Fas-induced apoptosis. However, the ability of this protein to suppress the apoptosis of murine cells and its role during MCMV infection have not been investigated previously. Here we show that m38.5 is expressed at early time points during MCMV infection. Cells infected with MCMVs lacking m38.5 showed increased sensitivity to cell death induced by staurosporine, MG132, or the viral infection itself compared to the sensitivity of cells infected with wild-type MCMV. This defect was eliminated when an m38.5 or Bcl-X(L) gene was inserted into the genome of a deletion mutant. Using fibroblasts deficient in the proapoptotic Bcl-2 family proteins Bak and/or Bax, we further demonstrated that m38.5 protected from Bax- but not Bak-mediated apoptosis and interacted with Bax in infected cells. These results consolidate the role of m38.5 as a viral mitochondrion-localized inhibitor of apoptosis and its functional similarity to the human cytomegalovirus UL37x1 gene product. Although the m38.5 gene is not homologous to the UL37x1 gene at the sequence level, m38.5 is conserved among rodent cytomegaloviruses. Moreover, the fact that MCMV-infected cells are protected from both Bak- and Bax-mediated cell death suggests that MCMV possesses an additional, as-yet-unidentified mechanism to block Bak-mediated apoptosis.
Insights
Murine cytomegalovirus m38.5 protein inhibits programmed cell death by targeting mitochondria. This viral protein protects cells from apoptosis during infection, functioning similarly to human cytomegalovirus proteins.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Viruses often encode proteins to evade host apoptosis.
- Murine cytomegalovirus (MCMV) has the m38.5 protein, known to inhibit apoptosis in human cells.
- The role of m38.5 in murine cells and during MCMV infection was previously unknown.
Purpose of the Study:
- To investigate the function of the MCMV m38.5 protein in murine cells.
- To determine the role of m38.5 during MCMV infection.
- To elucidate the mechanism by which m38.5 inhibits apoptosis.
Main Methods:
- Generated MCMV mutants lacking the m38.5 gene.
- Infected murine fibroblasts with wild-type and mutant MCMV.
- Assessed apoptosis sensitivity using various inducers (staurosporine, MG132).
- Utilized fibroblasts deficient in Bak and Bax proteins.
- Performed co-immunoprecipitation to detect protein interactions.
Main Results:
- m38.5 is expressed early during MCMV infection.
- MCMV lacking m38.5 showed increased cell death sensitivity.
- Reintroduction of m38.5 or Bcl-X(L) restored resistance to apoptosis.
- m38.5 protected against Bax-mediated apoptosis but not Bak-mediated apoptosis.
- m38.5 interacted with Bax in infected cells.
Conclusions:
- m38.5 is a viral inhibitor of apoptosis localized to mitochondria.
- m38.5 shares functional similarity with human cytomegalovirus UL37x1.
- MCMV likely employs additional mechanisms to inhibit Bak-mediated apoptosis.
Related Concept Videos
The Intrinsic Apoptotic Pathway
Cellular Injury V: Apoptosis and Autophagy
The Extrinsic Apoptotic Pathway
Abnormal Proliferation
