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A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex

The Toxoplasma gondii inner membrane complex (IMC) is an important organelle involved in parasite motility and replication. The IMC resides beneath the parasite’s plasma membrane and is composed of both membrane and cytoskeletal components. Although the protein composition of the IMC is becoming bet...

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Autores principales: Choi, Charles Paul, Moon, Andy Seong, Back, Peter Sungmin, Jami‐Alahmadi, Yasaman, Vashisht, Ajay Amar, Wohlschlegel, James Akira, Bradley, Peter John
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6795473/
https://www.ncbi.nlm.nih.gov/pubmed/31584943
http://dx.doi.org/10.1371/journal.pbio.3000475
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author Choi, Charles Paul
Moon, Andy Seong
Back, Peter Sungmin
Jami‐Alahmadi, Yasaman
Vashisht, Ajay Amar
Wohlschlegel, James Akira
Bradley, Peter John
author_facet Choi, Charles Paul
Moon, Andy Seong
Back, Peter Sungmin
Jami‐Alahmadi, Yasaman
Vashisht, Ajay Amar
Wohlschlegel, James Akira
Bradley, Peter John
author_sort Choi, Charles Paul
collection PubMed
description The Toxoplasma gondii inner membrane complex (IMC) is an important organelle involved in parasite motility and replication. The IMC resides beneath the parasite’s plasma membrane and is composed of both membrane and cytoskeletal components. Although the protein composition of the IMC is becoming better understood, the protein–protein associations that enable proper functioning of the organelle remain largely unknown. Determining protein interactions in the IMC cytoskeletal network is particularly challenging, as disrupting the cytoskeleton requires conditions that disrupt protein complexes. To circumvent this problem, we demonstrate the application of a photoreactive unnatural amino acid (UAA) crosslinking system to capture protein interactions in the native intracellular environment. In addition to identifying binding partners, the UAA approach maps the binding interface of the bait protein used for crosslinking, providing structural information of the interacting proteins. We apply this technology to the essential IMC protein ILP1 and demonstrate that distinct regions of its C-terminal coiled-coil domain crosslink to the alveolins IMC3 and IMC6, as well as IMC27. We also show that the IMC3 C-terminal domain and the IMC6 N-terminal domain are necessary for binding to ILP1, further mapping interactions between ILP1 and the cytoskeleton. Together, this study develops a new approach to study protein–protein interactions in Toxoplasma and provides the first insight into the architecture of the cytoskeletal network of the apicomplexan IMC.
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spelling pubmed-67954732019-10-19 A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex Choi, Charles Paul Moon, Andy Seong Back, Peter Sungmin Jami‐Alahmadi, Yasaman Vashisht, Ajay Amar Wohlschlegel, James Akira Bradley, Peter John PLoS Biol Research Article The Toxoplasma gondii inner membrane complex (IMC) is an important organelle involved in parasite motility and replication. The IMC resides beneath the parasite’s plasma membrane and is composed of both membrane and cytoskeletal components. Although the protein composition of the IMC is becoming better understood, the protein–protein associations that enable proper functioning of the organelle remain largely unknown. Determining protein interactions in the IMC cytoskeletal network is particularly challenging, as disrupting the cytoskeleton requires conditions that disrupt protein complexes. To circumvent this problem, we demonstrate the application of a photoreactive unnatural amino acid (UAA) crosslinking system to capture protein interactions in the native intracellular environment. In addition to identifying binding partners, the UAA approach maps the binding interface of the bait protein used for crosslinking, providing structural information of the interacting proteins. We apply this technology to the essential IMC protein ILP1 and demonstrate that distinct regions of its C-terminal coiled-coil domain crosslink to the alveolins IMC3 and IMC6, as well as IMC27. We also show that the IMC3 C-terminal domain and the IMC6 N-terminal domain are necessary for binding to ILP1, further mapping interactions between ILP1 and the cytoskeleton. Together, this study develops a new approach to study protein–protein interactions in Toxoplasma and provides the first insight into the architecture of the cytoskeletal network of the apicomplexan IMC. Public Library of Science 2019-10-04 /pmc/articles/PMC6795473/ /pubmed/31584943 http://dx.doi.org/10.1371/journal.pbio.3000475 Text en © 2019 Choi et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Choi, Charles Paul
Moon, Andy Seong
Back, Peter Sungmin
Jami‐Alahmadi, Yasaman
Vashisht, Ajay Amar
Wohlschlegel, James Akira
Bradley, Peter John
A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex
title A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex
title_full A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex
title_fullStr A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex
title_full_unstemmed A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex
title_short A photoactivatable crosslinking system reveals protein interactions in the Toxoplasma gondii inner membrane complex
title_sort photoactivatable crosslinking system reveals protein interactions in the toxoplasma gondii inner membrane complex
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6795473/
https://www.ncbi.nlm.nih.gov/pubmed/31584943
http://dx.doi.org/10.1371/journal.pbio.3000475
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