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Updated: Aug 30, 2026

An Integrated Approach for Microprotein Identification and Sequence Analysis
Published on: July 12, 2022
Murine cytomegalovirus m41 open reading frame encodes a Golgi-localized antiapoptotic protein
Wolfram Brune1, Michael Nevels, Thomas Shenk
1Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544, USA. wolfram.brune@virchow.uni-wuerzburg.de
Abstract:
Viruses have evolved various strategies to prevent premature apoptosis of infected host cells. Some of the viral genes mediating antiapoptotic functions have been identified by their homology to cellular genes, but others are structurally unrelated to genes of known function. In this study, we used a random, unbiased approach to identify such genes in the murine cytomegalovirus genome. From a library of random transposon insertion mutants, a mutant virus that caused premature cell death was isolated. The transposon was inserted within open reading frame m41. An independently constructed m41 deletion mutant showed the same phenotype, whereas deletion mutants lacking the adjacent genes m40 and M42 did not. Apoptosis occurred in different cell types, could be blocked by caspase inhibitors, and did not require p53. Within the murine cytomegalovirus genome, m41, m40, and m39 form a small cluster of genes of unknown function. They are homologous to r41, r40, and r39 of rat cytomegalovirus, but lack sequence homology to UL41, UL40, and UL37 exon 1 (UL37x1) which are located at the corresponding positions of the human cytomegalovirus genome. Unlike UL37x1 of human cytomegalovirus, which encodes a mitochondrion-localized inhibitor of apoptosis that is essential for virus replication, m41 encodes a protein that localizes to the Golgi apparatus. The murine cytomegalovirus m41 product is the first example of a Golgi-localized protein that prevents premature apoptosis and thus extends the life span of infected cells.
Insights
Murine cytomegalovirus m41 gene prevents host cell death by inhibiting apoptosis. This Golgi-localized protein extends infected cell lifespan, unlike related human cytomegalovirus genes.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Viruses employ strategies to evade host cell apoptosis.
- Some viral antiapoptotic genes are homologous to cellular genes, while others are structurally novel.
Purpose of the Study:
- To identify novel antiapoptotic genes in the murine cytomegalovirus (MCMV) genome using a random mutagenesis approach.
Main Methods:
- Generated a library of random transposon insertion mutants of MCMV.
- Screened for mutants exhibiting premature host cell death.
- Constructed and analyzed deletion mutants for genes m41, m40, and M42.
Main Results:
- A transposon insertion in MCMV open reading frame m41 caused premature apoptosis.
- Deletion of m41 recapitulated this phenotype; deletions in m40 and M42 did not.
- The m41 protein localizes to the Golgi apparatus, distinct from human cytomegalovirus UL37x1.
Conclusions:
- The MCMV m41 gene product is a novel Golgi-localized protein that inhibits apoptosis.
- m41 is essential for extending the lifespan of MCMV-infected cells.
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