Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast Cancer

The CXCL12-CXCR4 axis plays a vital role in many steps of breast cancer metastasis, but the molecular mechanisms have not been fully elucidated. We previously reported that activation of CXCR4 by CXCL12 promotes the nuclear localization of LASP1 (LIM and SH3 protein 1). The nuclear LASP1 then intera...

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Main Authors: Boopathi Subramaniyan, Sangita Sridharan, Cory M. Howard, Augustus M.C. Tilley, Tupa Basuroy, Ivana de la Serna, Elke Butt, Dayanidhi Raman
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Series:Cancers
Subjects:
Akt
A20
Online Access:https://www.mdpi.com/2072-6694/12/9/2372
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spelling doaj-8d590f41a3c54c908059fd27225787242020-11-25T03:51:23ZengMDPI AGCancers2072-66942020-08-01122372237210.3390/cancers12092372Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast CancerBoopathi Subramaniyan0Sangita Sridharan1Cory M. Howard2Augustus M.C. Tilley3Tupa Basuroy4Ivana de la Serna5Elke Butt6Dayanidhi Raman7Department of Cancer Biology, University of Toledo Health Science Campus, Toledo, OH 43614, USADepartment of Cancer Biology, University of Toledo Health Science Campus, Toledo, OH 43614, USADepartment of Cancer Biology, University of Toledo Health Science Campus, Toledo, OH 43614, USADepartment of Cancer Biology, University of Toledo Health Science Campus, Toledo, OH 43614, USADepartment of Cancer Biology, University of Toledo Health Science Campus, Toledo, OH 43614, USADepartment of Cancer Biology, University of Toledo Health Science Campus, Toledo, OH 43614, USAInstitute for Experimental Biomedicine II, University Clinic, 97070 Wuerzburg, GermanyDepartment of Cancer Biology, University of Toledo Health Science Campus, Toledo, OH 43614, USAThe CXCL12-CXCR4 axis plays a vital role in many steps of breast cancer metastasis, but the molecular mechanisms have not been fully elucidated. We previously reported that activation of CXCR4 by CXCL12 promotes the nuclear localization of LASP1 (LIM and SH3 protein 1). The nuclear LASP1 then interacts with Snail1 in triple-negative breast cancer (TNBC) cell lines. In this study, we report that the nuclear accumulation and retention of Snail1 was dependent on an increase in nuclear LASP1 levels driven by active CXCR4. The CXCR4-LASP1 axis may directly regulate the stabilization of nuclear Snail1, by upregulating nuclear levels of pS473-Akt, pS9-GSK-3β, A20, and LSD1. Furthermore, the activation of CXCR4 induced association of LASP1 with Snail1, A20, GSK-3β, and LSD1 endogenously. Thus, nuclear LASP1 may also regulate protein-protein interactions that facilitate the stability of Snail1. Genetic ablation of LASP1 resulted in the mislocalization of nuclear Snail1, loss of the ability of TNBC cells to invade Matrigel and a dysregulated expression of both epithelial and mesenchymal markers, including an increased expression of ALDH1A1, a marker for epithelial breast cancer stem-like cells. Our findings reveal a novel role for the CXCR4-LASP1 axis in facilitating the stability of nuclear localized Snail1.https://www.mdpi.com/2072-6694/12/9/2372CXCR4LASP1AktSnail1 stabilityA20GSK-3β
collection DOAJ
language English
format Article
sources DOAJ
author Boopathi Subramaniyan
Sangita Sridharan
Cory M. Howard
Augustus M.C. Tilley
Tupa Basuroy
Ivana de la Serna
Elke Butt
Dayanidhi Raman
spellingShingle Boopathi Subramaniyan
Sangita Sridharan
Cory M. Howard
Augustus M.C. Tilley
Tupa Basuroy
Ivana de la Serna
Elke Butt
Dayanidhi Raman
Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast Cancer
Cancers
CXCR4
LASP1
Akt
Snail1 stability
A20
GSK-3β
author_facet Boopathi Subramaniyan
Sangita Sridharan
Cory M. Howard
Augustus M.C. Tilley
Tupa Basuroy
Ivana de la Serna
Elke Butt
Dayanidhi Raman
author_sort Boopathi Subramaniyan
title Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast Cancer
title_short Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast Cancer
title_full Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast Cancer
title_fullStr Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast Cancer
title_full_unstemmed Role of the CXCR4-LASP1 Axis in the Stabilization of Snail1 in Triple-Negative Breast Cancer
title_sort role of the cxcr4-lasp1 axis in the stabilization of snail1 in triple-negative breast cancer
publisher MDPI AG
series Cancers
issn 2072-6694
publishDate 2020-08-01
description The CXCL12-CXCR4 axis plays a vital role in many steps of breast cancer metastasis, but the molecular mechanisms have not been fully elucidated. We previously reported that activation of CXCR4 by CXCL12 promotes the nuclear localization of LASP1 (LIM and SH3 protein 1). The nuclear LASP1 then interacts with Snail1 in triple-negative breast cancer (TNBC) cell lines. In this study, we report that the nuclear accumulation and retention of Snail1 was dependent on an increase in nuclear LASP1 levels driven by active CXCR4. The CXCR4-LASP1 axis may directly regulate the stabilization of nuclear Snail1, by upregulating nuclear levels of pS473-Akt, pS9-GSK-3β, A20, and LSD1. Furthermore, the activation of CXCR4 induced association of LASP1 with Snail1, A20, GSK-3β, and LSD1 endogenously. Thus, nuclear LASP1 may also regulate protein-protein interactions that facilitate the stability of Snail1. Genetic ablation of LASP1 resulted in the mislocalization of nuclear Snail1, loss of the ability of TNBC cells to invade Matrigel and a dysregulated expression of both epithelial and mesenchymal markers, including an increased expression of ALDH1A1, a marker for epithelial breast cancer stem-like cells. Our findings reveal a novel role for the CXCR4-LASP1 axis in facilitating the stability of nuclear localized Snail1.
topic CXCR4
LASP1
Akt
Snail1 stability
A20
GSK-3β
url https://www.mdpi.com/2072-6694/12/9/2372
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