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A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity

As alternatives to small-molecular proteolysis-targeting chimeras (PROTAC), peptide-based molecular glues (MG) are a broad range of dual-functional ligands that simultaneously bind with targetable proteins and E3 ligases by mimicking proteinprotein interaction (PPI) partners. Methods: Herein, we des...

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Autores principales: Yan, Siqi, Yan, Jin, Liu, Dan, Li, Xiang, Kang, Qianyan, You, Weiming, Zhang, Jinghua, Wang, Lei, Tian, Zhiqi, Lu, Wuyuan, Liu, Wenjia, He, Wangxiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8171083/
https://www.ncbi.nlm.nih.gov/pubmed/34093856
http://dx.doi.org/10.7150/thno.59020
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author Yan, Siqi
Yan, Jin
Liu, Dan
Li, Xiang
Kang, Qianyan
You, Weiming
Zhang, Jinghua
Wang, Lei
Tian, Zhiqi
Lu, Wuyuan
Liu, Wenjia
He, Wangxiao
author_facet Yan, Siqi
Yan, Jin
Liu, Dan
Li, Xiang
Kang, Qianyan
You, Weiming
Zhang, Jinghua
Wang, Lei
Tian, Zhiqi
Lu, Wuyuan
Liu, Wenjia
He, Wangxiao
author_sort Yan, Siqi
collection PubMed
description As alternatives to small-molecular proteolysis-targeting chimeras (PROTAC), peptide-based molecular glues (MG) are a broad range of dual-functional ligands that simultaneously bind with targetable proteins and E3 ligases by mimicking proteinprotein interaction (PPI) partners. Methods: Herein, we design a peptide-derived MG to target a tumor-driving protein, MDMX, for degradation, and nanoengineered it into a supramolecular gold(I)-thiol-peptide complex (Nano-MP) to implement the proteolysis recalcitrance, cellular internalization, and glutathione-triggered release. To optimize the tumor targeting, a pH-responsive macromolecule termed polyacryl sulfydryl imidazole (PSI) was synthesized to coat Nano-MP. Results: As expected, Nano-MP@PSI induced the MDMX degradation by ubiquitination and subsequently restored the anti-cancer function of p53 and p73. Nano-MP@PSI revealed potent anti-cancer activities in an orthotopic xenograft mouse model of retinoblastoma by intraocular injection and a patient-derived xenograft model of malignant pancreatic cancer by systemic injection, while maintaining a favorable safety profile and showing a highly favorable clearable profile of excretion from the living body. Conclusion: Collectively, this work not only provided a clinically viable paradigm for the treatment of a wide variety of tumors by multiple administration types, but, more importantly, it bridged the chasm between peptides and PROTACs, and likely reinvigorated the development of peptide-derived proteolysis-targeting chimeras for a great variety of diseases.
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spelling pubmed-81710832021-06-03 A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity Yan, Siqi Yan, Jin Liu, Dan Li, Xiang Kang, Qianyan You, Weiming Zhang, Jinghua Wang, Lei Tian, Zhiqi Lu, Wuyuan Liu, Wenjia He, Wangxiao Theranostics Research Paper As alternatives to small-molecular proteolysis-targeting chimeras (PROTAC), peptide-based molecular glues (MG) are a broad range of dual-functional ligands that simultaneously bind with targetable proteins and E3 ligases by mimicking proteinprotein interaction (PPI) partners. Methods: Herein, we design a peptide-derived MG to target a tumor-driving protein, MDMX, for degradation, and nanoengineered it into a supramolecular gold(I)-thiol-peptide complex (Nano-MP) to implement the proteolysis recalcitrance, cellular internalization, and glutathione-triggered release. To optimize the tumor targeting, a pH-responsive macromolecule termed polyacryl sulfydryl imidazole (PSI) was synthesized to coat Nano-MP. Results: As expected, Nano-MP@PSI induced the MDMX degradation by ubiquitination and subsequently restored the anti-cancer function of p53 and p73. Nano-MP@PSI revealed potent anti-cancer activities in an orthotopic xenograft mouse model of retinoblastoma by intraocular injection and a patient-derived xenograft model of malignant pancreatic cancer by systemic injection, while maintaining a favorable safety profile and showing a highly favorable clearable profile of excretion from the living body. Conclusion: Collectively, this work not only provided a clinically viable paradigm for the treatment of a wide variety of tumors by multiple administration types, but, more importantly, it bridged the chasm between peptides and PROTACs, and likely reinvigorated the development of peptide-derived proteolysis-targeting chimeras for a great variety of diseases. Ivyspring International Publisher 2021-05-03 /pmc/articles/PMC8171083/ /pubmed/34093856 http://dx.doi.org/10.7150/thno.59020 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Yan, Siqi
Yan, Jin
Liu, Dan
Li, Xiang
Kang, Qianyan
You, Weiming
Zhang, Jinghua
Wang, Lei
Tian, Zhiqi
Lu, Wuyuan
Liu, Wenjia
He, Wangxiao
A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity
title A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity
title_full A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity
title_fullStr A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity
title_full_unstemmed A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity
title_short A nano-predator of pathological MDMX construct by clearable supramolecular gold(I)-thiol-peptide complexes achieves safe and potent anti-tumor activity
title_sort nano-predator of pathological mdmx construct by clearable supramolecular gold(i)-thiol-peptide complexes achieves safe and potent anti-tumor activity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8171083/
https://www.ncbi.nlm.nih.gov/pubmed/34093856
http://dx.doi.org/10.7150/thno.59020
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