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Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation

Apolipoprotein L-I (APOL1) is a channel-forming effector of innate immunity. The common human APOL1 variant G0 provides protection against infection with certain Trypanosoma and Leishmania parasite species, but it cannot protect against the trypanosomes responsible for human African trypanosomiasis....

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Autores principales: Schaub, Charles, Lee, Penny, Racho-Jansen, Alisha, Giovinazzo, Joseph, Terra, Nada, Raper, Jayne, Thomson, Russell
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446801/
https://www.ncbi.nlm.nih.gov/pubmed/34331942
http://dx.doi.org/10.1016/j.jbc.2021.101009
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author Schaub, Charles
Lee, Penny
Racho-Jansen, Alisha
Giovinazzo, Joseph
Terra, Nada
Raper, Jayne
Thomson, Russell
author_facet Schaub, Charles
Lee, Penny
Racho-Jansen, Alisha
Giovinazzo, Joseph
Terra, Nada
Raper, Jayne
Thomson, Russell
author_sort Schaub, Charles
collection PubMed
description Apolipoprotein L-I (APOL1) is a channel-forming effector of innate immunity. The common human APOL1 variant G0 provides protection against infection with certain Trypanosoma and Leishmania parasite species, but it cannot protect against the trypanosomes responsible for human African trypanosomiasis. Human APOL1 variants G1 and G2 protect against human-infective trypanosomes but also confer a higher risk of developing chronic kidney disease. Trypanosome-killing activity is dependent on the ability of APOL1 to insert into membranes at acidic pH and form pH-gated cation channels. We previously mapped the channel’s pore-lining region to the C-terminal domain (residues 332–398) and identified a membrane-insertion domain (MID, residues 177–228) that facilitates acidic pH-dependent membrane insertion. In this article, we further investigate structural determinants of cation channel formation by APOL1. Using a combination of site-directed mutagenesis and targeted chemical modification, our data indicate that the C-terminal heptad-repeat sequence (residues 368–395) is a bona fide leucine zipper domain (ZIP) that is required for cation channel formation as well as lysis of trypanosomes and mammalian cells. Using protein-wide cysteine-scanning mutagenesis, coupled with the substituted cysteine accessibility method, we determined that, in the open channel state, both the N-terminal domain and the C-terminal ZIP domain are exposed on the intralumenal/extracellular side of the membrane and provide evidence that each APOL1 monomer contributes four transmembrane domains to the open cation channel conformation. Based on these data, we propose an oligomeric topology model in which the open APOL1 cation channel is assembled from the coiled-coil association of C-terminal ZIP domains.
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spelling pubmed-84468012021-09-22 Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation Schaub, Charles Lee, Penny Racho-Jansen, Alisha Giovinazzo, Joseph Terra, Nada Raper, Jayne Thomson, Russell J Biol Chem Research Article Apolipoprotein L-I (APOL1) is a channel-forming effector of innate immunity. The common human APOL1 variant G0 provides protection against infection with certain Trypanosoma and Leishmania parasite species, but it cannot protect against the trypanosomes responsible for human African trypanosomiasis. Human APOL1 variants G1 and G2 protect against human-infective trypanosomes but also confer a higher risk of developing chronic kidney disease. Trypanosome-killing activity is dependent on the ability of APOL1 to insert into membranes at acidic pH and form pH-gated cation channels. We previously mapped the channel’s pore-lining region to the C-terminal domain (residues 332–398) and identified a membrane-insertion domain (MID, residues 177–228) that facilitates acidic pH-dependent membrane insertion. In this article, we further investigate structural determinants of cation channel formation by APOL1. Using a combination of site-directed mutagenesis and targeted chemical modification, our data indicate that the C-terminal heptad-repeat sequence (residues 368–395) is a bona fide leucine zipper domain (ZIP) that is required for cation channel formation as well as lysis of trypanosomes and mammalian cells. Using protein-wide cysteine-scanning mutagenesis, coupled with the substituted cysteine accessibility method, we determined that, in the open channel state, both the N-terminal domain and the C-terminal ZIP domain are exposed on the intralumenal/extracellular side of the membrane and provide evidence that each APOL1 monomer contributes four transmembrane domains to the open cation channel conformation. Based on these data, we propose an oligomeric topology model in which the open APOL1 cation channel is assembled from the coiled-coil association of C-terminal ZIP domains. American Society for Biochemistry and Molecular Biology 2021-07-29 /pmc/articles/PMC8446801/ /pubmed/34331942 http://dx.doi.org/10.1016/j.jbc.2021.101009 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Schaub, Charles
Lee, Penny
Racho-Jansen, Alisha
Giovinazzo, Joseph
Terra, Nada
Raper, Jayne
Thomson, Russell
Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation
title Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation
title_full Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation
title_fullStr Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation
title_full_unstemmed Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation
title_short Coiled-coil binding of the leucine zipper domains of APOL1 is necessary for the open cation channel conformation
title_sort coiled-coil binding of the leucine zipper domains of apol1 is necessary for the open cation channel conformation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446801/
https://www.ncbi.nlm.nih.gov/pubmed/34331942
http://dx.doi.org/10.1016/j.jbc.2021.101009
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