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MMSA-1 is regulated by Wnt/TCF4 and involved in multiple myeloma progression and invasion via RAS/RAF signaling
Shan Meng1, Hailing Liu2, Liufang Gu2
1Department of Hematology, the Second Affiliated Hospital of Xi'an Jiaotong University, West Five Road, NO. 157, Xi'an, Shaanxi Province, 710004, P.R. China. 101xyz2@163.com.
Abstract:
As a novel multiple myeloma (MM) specific antigen, rare is known about the underlying molecular mechanism of MMSA-1 gene in the progression of myeloma. Transcription factor 4 (TCF4) and MMSA-1 over/down expressed stable U266 cell lines was constructed using lentivirus transfection technique. TCF4's impact on MMSA-1 expression was explored. Overexpressed of MMSA-1's interaction with RAS protein and its downstream signaling pathways was investigated. Moreover, the interaction changes between overexpressed MMSA-1 protein and bone marrow microenvironment were also detected by examing adhesion molecules and angiogenesis promoting factors using Western Blot. We successfully constructed transcription factor 4 (TCF4) and MMSA-1 over/down expressed stable U266 cell lines (termed TCF4-/+U266 and MMSA-1-/+U266). Our result showed that TCF4 could bind with MMSA-1 promoter sequence, greatly up regulate its promotor activity and then improve MMSA-1 expression. Overexpressed MMSA-1 also made a series of changes in U266 cells, including promoting RAS protein expression in cytoplasm, enhancing the interaction between MMSA-1 and RAS, which resulted in hyperactivation of RAS and its downstream signaling pathways including RAF/MEK/ERK and RAF/PI3K/AKT, improving U266 cells' clonogenicity capacity, changing apoptosis related proteins, reducing the interaction between myeloma cell and bone marrow microenvironment by reducing adhesion molecules expression including HIF-1α, E-cadherin, CXCR4 expression and elevating angiogenesis promoting factors including VEGF, Ang-2 and reducing Ang-1 at the same time. These results suggested MMSA-1 was over expressed in MM cells being regulated by Wnt/β-catenin/TCF4 signaling pathway, which resulted in hyperactivation of downstream RAS/RAF signaling pathway and eventually promote myeloma cells survival and invasion.
Insights
Transcription factor 4 (TCF4) regulates the MMSA-1 gene in multiple myeloma (MM). Overexpression of MMSA-1 promotes MM cell survival and invasion by activating RAS signaling and altering the bone marrow microenvironment.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Multiple myeloma (MM) is a hematological malignancy with complex molecular underpinnings.
- The role of the novel MMSA-1 gene in MM progression remains largely unknown.
- Understanding the regulatory mechanisms of MMSA-1 is crucial for developing targeted therapies.
Purpose of the Study:
- To elucidate the molecular mechanism of MMSA-1 gene regulation in MM.
- To investigate the impact of TCF4 on MMSA-1 expression.
- To explore the downstream effects of MMSA-1 overexpression on MM cell behavior and the bone marrow microenvironment.
Main Methods:
- Construction of stable U266 cell lines with overexpressed/downexpressed Transcription factor 4 (TCF4) and MMSA-1 using lentivirus transfection.
- Analysis of TCF4's binding to the MMSA-1 promoter.
- Western blot analysis to assess protein interactions (MMSA-1, RAS), signaling pathway activation (RAF/MEK/ERK, RAF/PI3K/AKT), and expression of adhesion molecules and angiogenesis factors (HIF-1α, E-cadherin, CXCR4, VEGF, Ang-1, Ang-2).
Main Results:
- TCF4 binds to the MMSA-1 promoter, significantly upregulating MMSA-1 expression.
- Overexpressed MMSA-1 enhances RAS protein interaction and downstream signaling (RAF/MEK/ERK, RAF/PI3K/AKT), promoting cell clonogenicity and survival.
- MMSA-1 overexpression alters the bone marrow microenvironment by reducing adhesion molecules (HIF-1α, E-cadherin, CXCR4) and modulating angiogenesis factors (VEGF, Ang-2, Ang-1).
Conclusions:
- MMSA-1 is overexpressed in MM cells, regulated by the Wnt/β-catenin/TCF4 signaling pathway.
- Hyperactivation of the RAS/RAF signaling pathway by MMSA-1 promotes MM cell survival and invasion.
- MMSA-1 plays a significant role in MM progression by influencing both cancer cell intrinsic pathways and the tumor microenvironment.
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