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γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation

Phospholipase Cβ2 (PLC β2) is activated by G proteins and generates calcium signals in cells. PLCβ2 is absent in normal breast tissue, but is highly expressed in breast tumors where its expression is correlated with the progression and migration of the tumor. This pattern of expression parallels the...

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Autores principales: Golebiewska, Urszula, Guo, Yuanjian, Khalikaprasad, Narindra, Zurawsky, Cassandra, Yerramilli, V. Siddhartha, Scarlata, Suzanne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3414502/
https://www.ncbi.nlm.nih.gov/pubmed/22905097
http://dx.doi.org/10.1371/journal.pone.0041067
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author Golebiewska, Urszula
Guo, Yuanjian
Khalikaprasad, Narindra
Zurawsky, Cassandra
Yerramilli, V. Siddhartha
Scarlata, Suzanne
author_facet Golebiewska, Urszula
Guo, Yuanjian
Khalikaprasad, Narindra
Zurawsky, Cassandra
Yerramilli, V. Siddhartha
Scarlata, Suzanne
author_sort Golebiewska, Urszula
collection PubMed
description Phospholipase Cβ2 (PLC β2) is activated by G proteins and generates calcium signals in cells. PLCβ2 is absent in normal breast tissue, but is highly expressed in breast tumors where its expression is correlated with the progression and migration of the tumor. This pattern of expression parallels the expression of the breast cancer specific gene protein 1 which is also known as γ-synuclein. The cellular function of γ-synuclein and the role it plays in proliferation are unknown. Here, we determined whether γ-synuclein can interact with PLCβ2 and affect its activity. Using co-immunprecitation and co-immunofluorescence, we find that in both benign and aggressive breast cancer cell lines γ-synuclein and PLCβ2 are associated. In solution, purified γ-synuclein binds to PLCβ2 with high affinity as measured by fluorescence methods. Protease digestion and mass spectrometry studies show that γ-synuclein binds to a site on the C-terminus of PLCβ2 that overlaps with the Gαq binding site. Additionally, γ-synuclein competes for Gαq association, but not for activators that bind to the N-terminus (i.e. Rac1 and Gβγ). Binding of γ-synuclein reduces the catalytic activity of PLCβ2 by mechanism that involves inhibition of product release without affecting membrane interactions. Since activated Gαq binds more strongly to PLCβ2 than γ-synuclein, addition of Gαq(GTPγS) to the γ-synuclein –PLCβ2 complex allows for relief of enzyme inhibition along with concomitant activation. We also find that Gβγ can reverse γ-synuclein inhibition without dissociating the γ-synuclein- PLCβ2- complex. These studies point to a role of γ-synuclein in promoting a more robust G protein activation of PLCβ2.
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spelling pubmed-34145022012-08-19 γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation Golebiewska, Urszula Guo, Yuanjian Khalikaprasad, Narindra Zurawsky, Cassandra Yerramilli, V. Siddhartha Scarlata, Suzanne PLoS One Research Article Phospholipase Cβ2 (PLC β2) is activated by G proteins and generates calcium signals in cells. PLCβ2 is absent in normal breast tissue, but is highly expressed in breast tumors where its expression is correlated with the progression and migration of the tumor. This pattern of expression parallels the expression of the breast cancer specific gene protein 1 which is also known as γ-synuclein. The cellular function of γ-synuclein and the role it plays in proliferation are unknown. Here, we determined whether γ-synuclein can interact with PLCβ2 and affect its activity. Using co-immunprecitation and co-immunofluorescence, we find that in both benign and aggressive breast cancer cell lines γ-synuclein and PLCβ2 are associated. In solution, purified γ-synuclein binds to PLCβ2 with high affinity as measured by fluorescence methods. Protease digestion and mass spectrometry studies show that γ-synuclein binds to a site on the C-terminus of PLCβ2 that overlaps with the Gαq binding site. Additionally, γ-synuclein competes for Gαq association, but not for activators that bind to the N-terminus (i.e. Rac1 and Gβγ). Binding of γ-synuclein reduces the catalytic activity of PLCβ2 by mechanism that involves inhibition of product release without affecting membrane interactions. Since activated Gαq binds more strongly to PLCβ2 than γ-synuclein, addition of Gαq(GTPγS) to the γ-synuclein –PLCβ2 complex allows for relief of enzyme inhibition along with concomitant activation. We also find that Gβγ can reverse γ-synuclein inhibition without dissociating the γ-synuclein- PLCβ2- complex. These studies point to a role of γ-synuclein in promoting a more robust G protein activation of PLCβ2. Public Library of Science 2012-08-08 /pmc/articles/PMC3414502/ /pubmed/22905097 http://dx.doi.org/10.1371/journal.pone.0041067 Text en © 2012 Golebiewska 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Golebiewska, Urszula
Guo, Yuanjian
Khalikaprasad, Narindra
Zurawsky, Cassandra
Yerramilli, V. Siddhartha
Scarlata, Suzanne
γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation
title γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation
title_full γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation
title_fullStr γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation
title_full_unstemmed γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation
title_short γ-Synuclein Interacts with Phospholipase Cβ2 to Modulate G Protein Activation
title_sort γ-synuclein interacts with phospholipase cβ2 to modulate g protein activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3414502/
https://www.ncbi.nlm.nih.gov/pubmed/22905097
http://dx.doi.org/10.1371/journal.pone.0041067
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