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IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface

Phospholipase C (PLC)‐δ1, activated by p122RhoGTPase‐activating protein (GAP)/deleted in liver cancer‐1 (p122RhoGAP/DLC‐1), contributes to the coronary spastic angina (CSA) pathogenesis. The present study aims to further investigate the p122RhoGAP/DLC‐1 protein. We examined molecules assisting this...

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Autores principales: Tanaka, Makoto, Osanai, Tomohiro, Homma, Yoshimi, Hanada, Kenji, Okumura, Ken, Tomita, Hirofumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996382/
https://www.ncbi.nlm.nih.gov/pubmed/32123844
http://dx.doi.org/10.1096/fba.2019-00020
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author Tanaka, Makoto
Osanai, Tomohiro
Homma, Yoshimi
Hanada, Kenji
Okumura, Ken
Tomita, Hirofumi
author_facet Tanaka, Makoto
Osanai, Tomohiro
Homma, Yoshimi
Hanada, Kenji
Okumura, Ken
Tomita, Hirofumi
author_sort Tanaka, Makoto
collection PubMed
description Phospholipase C (PLC)‐δ1, activated by p122RhoGTPase‐activating protein (GAP)/deleted in liver cancer‐1 (p122RhoGAP/DLC‐1), contributes to the coronary spastic angina (CSA) pathogenesis. The present study aims to further investigate the p122RhoGAP/DLC‐1 protein. We examined molecules assisting this protein and identified a scaffold protein—IQ motif‐containing GTPase‐activating protein 1 (IQGAP1). IQGAP1‐C binds to the steroidogenic acute regulatory‐related lipid transfer (START) domain of p122RhoGAP/DLC‐1, and PLC‐δ1 binds to IQGAP1‐N, forming a complex. In fluorescence microscopy, small dots of PLC‐δ1 created fine linear arrays like microtubules, and IQGAP1 and p122RhoGAP/DLC‐1 were colocated in the cytoplasm with PLC‐δ1. Ionomycin induced the raft recruitment of the PLC‐δ1, IQGAP1, and p122RhoGAP/DLC‐1 complex by translocation to the plasma membrane (PM), indicating the movement of this complex is along microtubules with the motor protein kinesin. Moreover, the IQGAP1 protein was elevated in skin fibroblasts obtained from patients with CSA, and it enhanced the PLC activity and peak intracellular calcium concentration in response to acetylcholine. IQGAP1, a novel stimulating protein, forms a complex with p122RhoGAP/DLC‐1 and PLC‐δ1 that moves along microtubules and enhances the PLC activity.
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spelling pubmed-69963822020-03-02 IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface Tanaka, Makoto Osanai, Tomohiro Homma, Yoshimi Hanada, Kenji Okumura, Ken Tomita, Hirofumi FASEB Bioadv Research Articles Phospholipase C (PLC)‐δ1, activated by p122RhoGTPase‐activating protein (GAP)/deleted in liver cancer‐1 (p122RhoGAP/DLC‐1), contributes to the coronary spastic angina (CSA) pathogenesis. The present study aims to further investigate the p122RhoGAP/DLC‐1 protein. We examined molecules assisting this protein and identified a scaffold protein—IQ motif‐containing GTPase‐activating protein 1 (IQGAP1). IQGAP1‐C binds to the steroidogenic acute regulatory‐related lipid transfer (START) domain of p122RhoGAP/DLC‐1, and PLC‐δ1 binds to IQGAP1‐N, forming a complex. In fluorescence microscopy, small dots of PLC‐δ1 created fine linear arrays like microtubules, and IQGAP1 and p122RhoGAP/DLC‐1 were colocated in the cytoplasm with PLC‐δ1. Ionomycin induced the raft recruitment of the PLC‐δ1, IQGAP1, and p122RhoGAP/DLC‐1 complex by translocation to the plasma membrane (PM), indicating the movement of this complex is along microtubules with the motor protein kinesin. Moreover, the IQGAP1 protein was elevated in skin fibroblasts obtained from patients with CSA, and it enhanced the PLC activity and peak intracellular calcium concentration in response to acetylcholine. IQGAP1, a novel stimulating protein, forms a complex with p122RhoGAP/DLC‐1 and PLC‐δ1 that moves along microtubules and enhances the PLC activity. John Wiley and Sons Inc. 2019-06-14 /pmc/articles/PMC6996382/ /pubmed/32123844 http://dx.doi.org/10.1096/fba.2019-00020 Text en © 2019 The Authors. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Tanaka, Makoto
Osanai, Tomohiro
Homma, Yoshimi
Hanada, Kenji
Okumura, Ken
Tomita, Hirofumi
IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface
title IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface
title_full IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface
title_fullStr IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface
title_full_unstemmed IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface
title_short IQGAP1 activates PLC‐δ1 by direct binding and moving along microtubule with DLC‐1 to cell surface
title_sort iqgap1 activates plc‐δ1 by direct binding and moving along microtubule with dlc‐1 to cell surface
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996382/
https://www.ncbi.nlm.nih.gov/pubmed/32123844
http://dx.doi.org/10.1096/fba.2019-00020
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