: TNF receptor-associated factor 2 (TRAF2) is involved in different cellular processes including signal transduction and transcription regulation. we here provide evidence of a direct interaction between the TRAF domain of TRAF2 and the monosialotetrahexosylganglioside (GM1). previously, we showed that the TRAF domain occurs mainly in a trimeric form in solution, but it can also exist as a stable monomer when in the nanomolar concentration range. Here, we report that the quaternary structure of the TRAF domain is also affected by pH changes, since a weakly acidic pH (5.5) favors the dissociation of the trimeric TRAF domain into stable monomers, as previously observed at neutral pH (7.6) with the diluted protein. the TRAF domain-GM1 binding was similar at pH 5.5 and 7.6, suggesting that GM1 interacts with both the trimeric and monomeric forms of the protein. however, only the monomeric protein appeared to cause membrane deformation and inward vesiculation in GM1-containing giant unilamellar vesicles (GUVs). The formation of complexes between GM1 and TRAF2, or its TRAF domain, was also observed in cultured human leukemic HAP1 cells expressing either the truncated TRAF domain or the endogenous full length TRAF2. The GM1-protein complexes were observed after treatment with tunicamycin and were more concentrated in cells undergoing apoptosis, a condition which is known to cause cytoplasm acidification. these findings open the avenue for future studies aimed at deciphering the physiopathological relevance of the TRAF domain-GM1 interaction.

De Luca, A., Faienza, F., Fulci, C., Nicolai, E., Calligari, P., Palumbo, C., et al. (2023). Molecular and cellular evidence of a direct interaction between the TRAF2 C-terminal domain and ganglioside GM1. THE INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 106508 [10.1016/j.biocel.2023.106508].

Molecular and cellular evidence of a direct interaction between the TRAF2 C-terminal domain and ganglioside GM1

De Luca, Anastasia;Faienza, Fiorella;Fulci, Chiara;Nicolai, Eleonora;Calligari, Paolo;Palumbo, Camilla;Caccuri, Anna Maria
2023-12-22

Abstract

: TNF receptor-associated factor 2 (TRAF2) is involved in different cellular processes including signal transduction and transcription regulation. we here provide evidence of a direct interaction between the TRAF domain of TRAF2 and the monosialotetrahexosylganglioside (GM1). previously, we showed that the TRAF domain occurs mainly in a trimeric form in solution, but it can also exist as a stable monomer when in the nanomolar concentration range. Here, we report that the quaternary structure of the TRAF domain is also affected by pH changes, since a weakly acidic pH (5.5) favors the dissociation of the trimeric TRAF domain into stable monomers, as previously observed at neutral pH (7.6) with the diluted protein. the TRAF domain-GM1 binding was similar at pH 5.5 and 7.6, suggesting that GM1 interacts with both the trimeric and monomeric forms of the protein. however, only the monomeric protein appeared to cause membrane deformation and inward vesiculation in GM1-containing giant unilamellar vesicles (GUVs). The formation of complexes between GM1 and TRAF2, or its TRAF domain, was also observed in cultured human leukemic HAP1 cells expressing either the truncated TRAF domain or the endogenous full length TRAF2. The GM1-protein complexes were observed after treatment with tunicamycin and were more concentrated in cells undergoing apoptosis, a condition which is known to cause cytoplasm acidification. these findings open the avenue for future studies aimed at deciphering the physiopathological relevance of the TRAF domain-GM1 interaction.
22-dic-2023
Online ahead of print
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/10
English
GM1
TRAF domain
TRAF2
acidic pH
giant unilamellar vesicles
De Luca, A., Faienza, F., Fulci, C., Nicolai, E., Calligari, P., Palumbo, C., et al. (2023). Molecular and cellular evidence of a direct interaction between the TRAF2 C-terminal domain and ganglioside GM1. THE INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 106508 [10.1016/j.biocel.2023.106508].
De Luca, A; Faienza, F; Fulci, C; Nicolai, E; Calligari, P; Palumbo, C; Caccuri, Am
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/346703
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