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Published on: August 10, 2021
Mss4 protein is a regulator of stress response and apoptosis
B M Walter1, C Nordhoff, G Varga
1Institute of Molecular Virology (IMV), Centre of Molecular Biology of Inflammation (ZMBE), Muenster University Hospital, Von-Esmarch-Str. 56, D-48149 Muenster, Germany.
Abstract:
Mss4 (mammalian suppressor of Sec4) is an evolutionarily highly conserved protein and shows high sequence and structural similarity to nucleotide exchange factors. Although Mss4 tightly binds a series of exocytic Rab GTPases, it exercises only a low catalytic activity. Therefore Mss4 was proposed to work rather as a chaperone, protecting nucleotide free Rabs from degradation than as a nucleotide exchange factor. Here we provide further evidence for chaperone-like properties of Mss4. We show that expression levels of cellular Mss4 mRNA and protein are rapidly changed in response to a broad range of extracellular stress stimuli. The alterations are regulated mostly via the (c-jun NH(2)-terminal kinase) JNK stress MAPK signaling pathway and the mode of regulation resembles that of heat shock proteins. Similar to heat shock proteins, upregulation of Mss4 after stress stimulation functions protectively against the programmed cell death. Molecular analysis of the Mss4-mediated inhibition of apoptosis showed that interaction of Mss4 with eIF3f (eukaryotic translation initiation factor 3 subunit f), a member of the translation initiation complex and a protein with distinct pro-apoptotic properties, is the critical event in the anti-apoptotic action of Mss4.
Insights
Mammalian suppressor of Sec4 (Mss4) acts as a protective chaperone, not a typical nucleotide exchange factor. Upregulation of Mss4 during stress inhibits programmed cell death by interacting with eukaryotic translation initiation factor 3 subunit f.
Area of Science:
- Cell Biology
- Molecular Biology
- Stress Response
Background:
- Mss4 (mammalian suppressor of Sec4) is a conserved protein similar to nucleotide exchange factors.
- Mss4 exhibits low catalytic activity with Rab GTPases, suggesting a chaperone role.
- Its function as a chaperone protecting Rab GTPases from degradation is proposed.
Purpose of the Study:
- To provide further evidence for the chaperone-like properties of Mss4.
- To investigate the regulation of Mss4 expression under stress conditions.
- To elucidate the mechanism of Mss4-mediated inhibition of apoptosis.
Main Methods:
- Analysis of Mss4 mRNA and protein levels under various stress stimuli.
- Investigation of the role of the JNK stress MAPK signaling pathway in Mss4 regulation.
- Molecular analysis of Mss4 interaction with eIF3f.
Main Results:
- Cellular Mss4 mRNA and protein levels are rapidly altered by diverse extracellular stress stimuli.
- Mss4 regulation is primarily mediated by the JNK stress MAPK signaling pathway, similar to heat shock proteins.
- Upregulation of Mss4 confers protection against programmed cell death.
- Mss4 inhibits apoptosis through interaction with eIF3f, a pro-apoptotic protein in the translation initiation complex.
Conclusions:
- Mss4 functions as a stress-inducible chaperone with anti-apoptotic properties.
- The JNK pathway is crucial for Mss4's stress-induced upregulation.
- Interaction with eIF3f is the key mechanism for Mss4's protective role against apoptosis.
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