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AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members

BACKGROUND: Noncoding RNAs such as microRNAs (miRNAs) have attracted attention as biological pathway regulators, which differ from chromosomal translocations and gene point mutations. Their involvement in the molecular mechanisms underlying light chain (AL) amyloidosis pathogenesis is yet to be eluc...

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Autores principales: Fishov, Hila, Muchtar, Eli, Salmon‐Divon, Mali, Dispenzieri, Angela, Zvida, Tal, Schneider, Claudio, Bender, Benjamin, Duek, Adrian, Leiba, Merav, Shpilberg, Ofer, Hershkovitz‐Rokah, Oshrat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10134277/
https://www.ncbi.nlm.nih.gov/pubmed/36694297
http://dx.doi.org/10.1002/cam4.5621
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author Fishov, Hila
Muchtar, Eli
Salmon‐Divon, Mali
Dispenzieri, Angela
Zvida, Tal
Schneider, Claudio
Bender, Benjamin
Duek, Adrian
Leiba, Merav
Shpilberg, Ofer
Hershkovitz‐Rokah, Oshrat
author_facet Fishov, Hila
Muchtar, Eli
Salmon‐Divon, Mali
Dispenzieri, Angela
Zvida, Tal
Schneider, Claudio
Bender, Benjamin
Duek, Adrian
Leiba, Merav
Shpilberg, Ofer
Hershkovitz‐Rokah, Oshrat
author_sort Fishov, Hila
collection PubMed
description BACKGROUND: Noncoding RNAs such as microRNAs (miRNAs) have attracted attention as biological pathway regulators, which differ from chromosomal translocations and gene point mutations. Their involvement in the molecular mechanisms underlying light chain (AL) amyloidosis pathogenesis is yet to be elucidated. AIMS: To decipher specific miRNA expression profile in AL‐amyloidosis and to examine how miRNAs are involved in AL pathogenesis. METHODS: The expression profile of miRNAs and mRNA from bone marrow (BM)‐derived CD138+ cells were determined using the NanoString nCounter assay and RNA‐Seq, respectively. The effect of aberrantly expressed miRNAs on potential molecular targets was analyzed by qRT‐PCR, Western blot, Mito‐potential assay, and Annexin‐PI staining. RESULTS: Genes which were significantly differentially expressed between AL‐amyloidosis and MM, were found to be involved in cell growth and apoptotic mechanisms. Specifically, BCL2L1, MCL1, and BCL2 were upregulated in AL‐amyloidosis compared with MM and controls. The levels of miR‐181a‐5p and miR‐9‐5p, which regulate the above‐mentioned genes, were lower in BM samples from AL‐amyloidosis compared with controls, providing a mechanism for BCL2 family gene upregulation. When miR‐9‐5p and miR‐181a‐5p were overexpressed in ALMC1 cells, BCL2L1, MCL1, and BCL2 were downregulated and induced apoptosis. Treatment of ALMC‐1 cells with venetoclax, (BCL‐2 inhibitor), resulted in the upregulation of those miRNAs, the downregulation of BCL2, MCL1, and BCL2L1 mRNA and protein levels, and subsequent apoptosis. CONCLUSION: Our findings suggest that miR‐9‐5p and miR‐181a‐5p act as tumor‐suppressors whose downregulation induces anti‐apoptotic mechanisms underlying the pathogenesis of AL‐amyloidosis. The study highlights the post‐transcriptional regulation in AL‐amyloidosis and provides pathogenetic evidence for the potential use of BCL‐2 inhibitors in this disease.
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spelling pubmed-101342772023-04-28 AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members Fishov, Hila Muchtar, Eli Salmon‐Divon, Mali Dispenzieri, Angela Zvida, Tal Schneider, Claudio Bender, Benjamin Duek, Adrian Leiba, Merav Shpilberg, Ofer Hershkovitz‐Rokah, Oshrat Cancer Med RESEARCH ARTICLES BACKGROUND: Noncoding RNAs such as microRNAs (miRNAs) have attracted attention as biological pathway regulators, which differ from chromosomal translocations and gene point mutations. Their involvement in the molecular mechanisms underlying light chain (AL) amyloidosis pathogenesis is yet to be elucidated. AIMS: To decipher specific miRNA expression profile in AL‐amyloidosis and to examine how miRNAs are involved in AL pathogenesis. METHODS: The expression profile of miRNAs and mRNA from bone marrow (BM)‐derived CD138+ cells were determined using the NanoString nCounter assay and RNA‐Seq, respectively. The effect of aberrantly expressed miRNAs on potential molecular targets was analyzed by qRT‐PCR, Western blot, Mito‐potential assay, and Annexin‐PI staining. RESULTS: Genes which were significantly differentially expressed between AL‐amyloidosis and MM, were found to be involved in cell growth and apoptotic mechanisms. Specifically, BCL2L1, MCL1, and BCL2 were upregulated in AL‐amyloidosis compared with MM and controls. The levels of miR‐181a‐5p and miR‐9‐5p, which regulate the above‐mentioned genes, were lower in BM samples from AL‐amyloidosis compared with controls, providing a mechanism for BCL2 family gene upregulation. When miR‐9‐5p and miR‐181a‐5p were overexpressed in ALMC1 cells, BCL2L1, MCL1, and BCL2 were downregulated and induced apoptosis. Treatment of ALMC‐1 cells with venetoclax, (BCL‐2 inhibitor), resulted in the upregulation of those miRNAs, the downregulation of BCL2, MCL1, and BCL2L1 mRNA and protein levels, and subsequent apoptosis. CONCLUSION: Our findings suggest that miR‐9‐5p and miR‐181a‐5p act as tumor‐suppressors whose downregulation induces anti‐apoptotic mechanisms underlying the pathogenesis of AL‐amyloidosis. The study highlights the post‐transcriptional regulation in AL‐amyloidosis and provides pathogenetic evidence for the potential use of BCL‐2 inhibitors in this disease. John Wiley and Sons Inc. 2023-01-24 /pmc/articles/PMC10134277/ /pubmed/36694297 http://dx.doi.org/10.1002/cam4.5621 Text en © 2023 The Authors. Cancer Medicine published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://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
Fishov, Hila
Muchtar, Eli
Salmon‐Divon, Mali
Dispenzieri, Angela
Zvida, Tal
Schneider, Claudio
Bender, Benjamin
Duek, Adrian
Leiba, Merav
Shpilberg, Ofer
Hershkovitz‐Rokah, Oshrat
AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members
title AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members
title_full AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members
title_fullStr AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members
title_full_unstemmed AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members
title_short AL amyloidosis clonal plasma cells are regulated by microRNAs and dependent on anti‐apoptotic BCL2 family members
title_sort al amyloidosis clonal plasma cells are regulated by micrornas and dependent on anti‐apoptotic bcl2 family members
topic RESEARCH ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10134277/
https://www.ncbi.nlm.nih.gov/pubmed/36694297
http://dx.doi.org/10.1002/cam4.5621
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