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A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding

PDZ domains are one of the most abundant protein domains in eukaryotes and are frequently found on junction-localized scaffold proteins. Various signaling molecules bind to PDZ proteins via PDZ-binding motifs (PBM) and fine-tune cellular signaling. However, how such interaction affects protein funct...

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Autores principales: Ear, Jason, Abd El-Hafeez, Amer Ali, Roy, Suchismita, Ngo, Tony, Rajapakse, Navin, Choi, Julie, Khandelwal, Soni, Ghassemian, Majid, McCaffrey, Luke, Kufareva, Irina, Sahoo, Debashis, Ghosh, Pradipta
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/PMC8042451/
https://www.ncbi.nlm.nih.gov/pubmed/33675748
http://dx.doi.org/10.1016/j.jbc.2021.100493
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author Ear, Jason
Abd El-Hafeez, Amer Ali
Roy, Suchismita
Ngo, Tony
Rajapakse, Navin
Choi, Julie
Khandelwal, Soni
Ghassemian, Majid
McCaffrey, Luke
Kufareva, Irina
Sahoo, Debashis
Ghosh, Pradipta
author_facet Ear, Jason
Abd El-Hafeez, Amer Ali
Roy, Suchismita
Ngo, Tony
Rajapakse, Navin
Choi, Julie
Khandelwal, Soni
Ghassemian, Majid
McCaffrey, Luke
Kufareva, Irina
Sahoo, Debashis
Ghosh, Pradipta
author_sort Ear, Jason
collection PubMed
description PDZ domains are one of the most abundant protein domains in eukaryotes and are frequently found on junction-localized scaffold proteins. Various signaling molecules bind to PDZ proteins via PDZ-binding motifs (PBM) and fine-tune cellular signaling. However, how such interaction affects protein function is difficult to predict and must be solved empirically. Here we describe a long isoform of the guanine nucleotide exchange factor GIV/Girdin (CCDC88A) that we named GIV-L, which is conserved throughout evolution, from invertebrates to vertebrates, and contains a PBM. Unlike GIV, which lacks PBM and is cytosolic, GIV-L localizes onto cell junctions and has a PDZ interactome (as shown through annotating Human Cell Map and BioID-proximity labeling studies), which impacts GIV-L's ability to bind and activate trimeric G-protein, Gαi, through its guanine-nucleotide exchange modulator (GEM) module. This GEM module is found exclusively in vertebrates. We propose that the two functional modules in GIV may have evolved sequentially: the ability to bind PDZ proteins via the PBM evolved earlier in invertebrates, whereas G-protein binding and activation may have evolved later only among vertebrates. Phenotypic studies in Caco-2 cells revealed that GIV and GIV-L may have antagonistic effects on cell growth, proliferation (cell cycle), and survival. Immunohistochemical analysis in human colon tissues showed that GIV expression increases with a concomitant decrease in GIV-L during cancer initiation. Taken together, these findings reveal how regulation in GIV/CCDC88A transcript helps to achieve protein modularity, which allows the protein to play opposing roles either as a tumor suppressor (GIV-L) or as an oncogene (GIV).
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spelling pubmed-80424512021-04-15 A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding Ear, Jason Abd El-Hafeez, Amer Ali Roy, Suchismita Ngo, Tony Rajapakse, Navin Choi, Julie Khandelwal, Soni Ghassemian, Majid McCaffrey, Luke Kufareva, Irina Sahoo, Debashis Ghosh, Pradipta J Biol Chem Research Article PDZ domains are one of the most abundant protein domains in eukaryotes and are frequently found on junction-localized scaffold proteins. Various signaling molecules bind to PDZ proteins via PDZ-binding motifs (PBM) and fine-tune cellular signaling. However, how such interaction affects protein function is difficult to predict and must be solved empirically. Here we describe a long isoform of the guanine nucleotide exchange factor GIV/Girdin (CCDC88A) that we named GIV-L, which is conserved throughout evolution, from invertebrates to vertebrates, and contains a PBM. Unlike GIV, which lacks PBM and is cytosolic, GIV-L localizes onto cell junctions and has a PDZ interactome (as shown through annotating Human Cell Map and BioID-proximity labeling studies), which impacts GIV-L's ability to bind and activate trimeric G-protein, Gαi, through its guanine-nucleotide exchange modulator (GEM) module. This GEM module is found exclusively in vertebrates. We propose that the two functional modules in GIV may have evolved sequentially: the ability to bind PDZ proteins via the PBM evolved earlier in invertebrates, whereas G-protein binding and activation may have evolved later only among vertebrates. Phenotypic studies in Caco-2 cells revealed that GIV and GIV-L may have antagonistic effects on cell growth, proliferation (cell cycle), and survival. Immunohistochemical analysis in human colon tissues showed that GIV expression increases with a concomitant decrease in GIV-L during cancer initiation. Taken together, these findings reveal how regulation in GIV/CCDC88A transcript helps to achieve protein modularity, which allows the protein to play opposing roles either as a tumor suppressor (GIV-L) or as an oncogene (GIV). American Society for Biochemistry and Molecular Biology 2021-03-03 /pmc/articles/PMC8042451/ /pubmed/33675748 http://dx.doi.org/10.1016/j.jbc.2021.100493 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
Ear, Jason
Abd El-Hafeez, Amer Ali
Roy, Suchismita
Ngo, Tony
Rajapakse, Navin
Choi, Julie
Khandelwal, Soni
Ghassemian, Majid
McCaffrey, Luke
Kufareva, Irina
Sahoo, Debashis
Ghosh, Pradipta
A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding
title A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding
title_full A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding
title_fullStr A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding
title_full_unstemmed A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding
title_short A long isoform of GIV/Girdin contains a PDZ-binding module that regulates localization and G-protein binding
title_sort long isoform of giv/girdin contains a pdz-binding module that regulates localization and g-protein binding
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8042451/
https://www.ncbi.nlm.nih.gov/pubmed/33675748
http://dx.doi.org/10.1016/j.jbc.2021.100493
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