Cargando…

Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity

Tumor-initiating cells with reprogramming plasticity or stem-progenitor cell properties (stemness) are thought to be essential for cancer development and metastatic regeneration in many cancers; however, elucidation of the underlying molecular network and pathways remains demanding. Combining machin...

Descripción completa

Detalles Bibliográficos
Autores principales: Ramos, Erika K, Tsai, Chia-Feng, Jia, Yuzhi, Cao, Yue, Manu, Megan, Taftaf, Rokana, Hoffmann, Andrew D, El-Shennawy, Lamiaa, Gritsenko, Marina A, Adorno-Cruz, Valery, Schuster, Emma J, Scholten, David, Patel, Dhwani, Liu, Xia, Patel, Priyam, Wray, Brian, Zhang, Youbin, Zhang, Shanshan, Moore, Ronald J, Mathews, Jeremy V, Schipma, Matthew J, Liu, Tao, Tokars, Valerie L, Cristofanilli, Massimo, Shi, Tujin, Shen, Yang, Dashzeveg, Nurmaa K, Liu, Huiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9581534/
https://www.ncbi.nlm.nih.gov/pubmed/36193887
http://dx.doi.org/10.7554/eLife.82669
_version_ 1784812648063303680
author Ramos, Erika K
Tsai, Chia-Feng
Jia, Yuzhi
Cao, Yue
Manu, Megan
Taftaf, Rokana
Hoffmann, Andrew D
El-Shennawy, Lamiaa
Gritsenko, Marina A
Adorno-Cruz, Valery
Schuster, Emma J
Scholten, David
Patel, Dhwani
Liu, Xia
Patel, Priyam
Wray, Brian
Zhang, Youbin
Zhang, Shanshan
Moore, Ronald J
Mathews, Jeremy V
Schipma, Matthew J
Liu, Tao
Tokars, Valerie L
Cristofanilli, Massimo
Shi, Tujin
Shen, Yang
Dashzeveg, Nurmaa K
Liu, Huiping
author_facet Ramos, Erika K
Tsai, Chia-Feng
Jia, Yuzhi
Cao, Yue
Manu, Megan
Taftaf, Rokana
Hoffmann, Andrew D
El-Shennawy, Lamiaa
Gritsenko, Marina A
Adorno-Cruz, Valery
Schuster, Emma J
Scholten, David
Patel, Dhwani
Liu, Xia
Patel, Priyam
Wray, Brian
Zhang, Youbin
Zhang, Shanshan
Moore, Ronald J
Mathews, Jeremy V
Schipma, Matthew J
Liu, Tao
Tokars, Valerie L
Cristofanilli, Massimo
Shi, Tujin
Shen, Yang
Dashzeveg, Nurmaa K
Liu, Huiping
author_sort Ramos, Erika K
collection PubMed
description Tumor-initiating cells with reprogramming plasticity or stem-progenitor cell properties (stemness) are thought to be essential for cancer development and metastatic regeneration in many cancers; however, elucidation of the underlying molecular network and pathways remains demanding. Combining machine learning and experimental investigation, here we report CD81, a tetraspanin transmembrane protein known to be enriched in extracellular vesicles (EVs), as a newly identified driver of breast cancer stemness and metastasis. Using protein structure modeling and interface prediction-guided mutagenesis, we demonstrate that membrane CD81 interacts with CD44 through their extracellular regions in promoting tumor cell cluster formation and lung metastasis of triple negative breast cancer (TNBC) in human and mouse models. In-depth global and phosphoproteomic analyses of tumor cells deficient with CD81 or CD44 unveils endocytosis-related pathway alterations, leading to further identification of a quality-keeping role of CD44 and CD81 in EV secretion as well as in EV-associated stemness-promoting function. CD81 is coexpressed along with CD44 in human circulating tumor cells (CTCs) and enriched in clustered CTCs that promote cancer stemness and metastasis, supporting the clinical significance of CD81 in association with patient outcomes. Our study highlights machine learning as a powerful tool in facilitating the molecular understanding of new molecular targets in regulating stemness and metastasis of TNBC.
format Online
Article
Text
id pubmed-9581534
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-95815342022-10-20 Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity Ramos, Erika K Tsai, Chia-Feng Jia, Yuzhi Cao, Yue Manu, Megan Taftaf, Rokana Hoffmann, Andrew D El-Shennawy, Lamiaa Gritsenko, Marina A Adorno-Cruz, Valery Schuster, Emma J Scholten, David Patel, Dhwani Liu, Xia Patel, Priyam Wray, Brian Zhang, Youbin Zhang, Shanshan Moore, Ronald J Mathews, Jeremy V Schipma, Matthew J Liu, Tao Tokars, Valerie L Cristofanilli, Massimo Shi, Tujin Shen, Yang Dashzeveg, Nurmaa K Liu, Huiping eLife Cancer Biology Tumor-initiating cells with reprogramming plasticity or stem-progenitor cell properties (stemness) are thought to be essential for cancer development and metastatic regeneration in many cancers; however, elucidation of the underlying molecular network and pathways remains demanding. Combining machine learning and experimental investigation, here we report CD81, a tetraspanin transmembrane protein known to be enriched in extracellular vesicles (EVs), as a newly identified driver of breast cancer stemness and metastasis. Using protein structure modeling and interface prediction-guided mutagenesis, we demonstrate that membrane CD81 interacts with CD44 through their extracellular regions in promoting tumor cell cluster formation and lung metastasis of triple negative breast cancer (TNBC) in human and mouse models. In-depth global and phosphoproteomic analyses of tumor cells deficient with CD81 or CD44 unveils endocytosis-related pathway alterations, leading to further identification of a quality-keeping role of CD44 and CD81 in EV secretion as well as in EV-associated stemness-promoting function. CD81 is coexpressed along with CD44 in human circulating tumor cells (CTCs) and enriched in clustered CTCs that promote cancer stemness and metastasis, supporting the clinical significance of CD81 in association with patient outcomes. Our study highlights machine learning as a powerful tool in facilitating the molecular understanding of new molecular targets in regulating stemness and metastasis of TNBC. eLife Sciences Publications, Ltd 2022-10-04 /pmc/articles/PMC9581534/ /pubmed/36193887 http://dx.doi.org/10.7554/eLife.82669 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open-access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication (https://creativecommons.org/publicdomain/zero/1.0/) .
spellingShingle Cancer Biology
Ramos, Erika K
Tsai, Chia-Feng
Jia, Yuzhi
Cao, Yue
Manu, Megan
Taftaf, Rokana
Hoffmann, Andrew D
El-Shennawy, Lamiaa
Gritsenko, Marina A
Adorno-Cruz, Valery
Schuster, Emma J
Scholten, David
Patel, Dhwani
Liu, Xia
Patel, Priyam
Wray, Brian
Zhang, Youbin
Zhang, Shanshan
Moore, Ronald J
Mathews, Jeremy V
Schipma, Matthew J
Liu, Tao
Tokars, Valerie L
Cristofanilli, Massimo
Shi, Tujin
Shen, Yang
Dashzeveg, Nurmaa K
Liu, Huiping
Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity
title Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity
title_full Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity
title_fullStr Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity
title_full_unstemmed Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity
title_short Machine learning-assisted elucidation of CD81–CD44 interactions in promoting cancer stemness and extracellular vesicle integrity
title_sort machine learning-assisted elucidation of cd81–cd44 interactions in promoting cancer stemness and extracellular vesicle integrity
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9581534/
https://www.ncbi.nlm.nih.gov/pubmed/36193887
http://dx.doi.org/10.7554/eLife.82669
work_keys_str_mv AT ramoserikak machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT tsaichiafeng machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT jiayuzhi machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT caoyue machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT manumegan machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT taftafrokana machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT hoffmannandrewd machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT elshennawylamiaa machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT gritsenkomarinaa machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT adornocruzvalery machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT schusteremmaj machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT scholtendavid machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT pateldhwani machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT liuxia machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT patelpriyam machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT wraybrian machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT zhangyoubin machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT zhangshanshan machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT mooreronaldj machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT mathewsjeremyv machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT schipmamatthewj machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT liutao machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT tokarsvaleriel machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT cristofanillimassimo machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT shitujin machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT shenyang machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT dashzevegnurmaak machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity
AT liuhuiping machinelearningassistedelucidationofcd81cd44interactionsinpromotingcancerstemnessandextracellularvesicleintegrity