Literature DB >> 33491667

Potent antitumor effects of cell-penetrating peptides targeting STAT3 axis.

Maryam Aftabizadeh1, Yi-Jia Li1, Qianqian Zhao1,2, Chunyan Zhang1, Nigus Ambaye1, Jieun Song1, Toshikage Nagao1, Christoph Lahtz1,3, Marwan Fakih4, David K Ann5, Hua Yu1, Andreas Herrmann1,3.   

Abstract

To date, there are no inhibitors that directly and specifically target activated STAT3 and c-Myc in the clinic. Although peptide-based inhibitors can selectively block activated targets, their clinical usage is limited because of low cell penetration and/or serum stability. Here, we generated cell-penetrating acetylated (acet.) STAT3, c-Myc, and Gp130 targeting peptides by attaching phosphorothioated (PS) polymer backbone to peptides. The cell-penetrating peptides efficiently penetrated cells and inhibited activation of the intended targets and their downstream genes. Locally or systemically treating tumor-bearing mice with PS-acet.-STAT3 peptide at low concentrations effectively blocked STAT3 in vivo, resulting in significant antitumor effects in 2 human xenograft models. Moreover, PS-acet.-STAT3 peptide penetrated and activated splenic CD8+ T cells in vitro. Treating immune-competent mice bearing mouse melanoma with PS-acet.-STAT3 peptide inhibited STAT3 in tumor-infiltrating T cells, downregulating tumor-infiltrating CD4+ T regulatory cells while activating CD8+ T effector cells. Similarly, systemic injections of the cell-penetrating c-Myc and Gp130 peptides prevented pancreatic tumor growth and induced antitumor immune responses. Taken together, we have developed therapeutic peptides that effectively and specifically block challenging cancer targets, resulting in antitumor effects through both direct tumor cell killing and indirectly through antitumor immune responses.

Entities:  

Keywords:  Oncology; Peptides; Therapeutics

Mesh:

Substances:

Year:  2021        PMID: 33491667      PMCID: PMC7934871          DOI: 10.1172/jci.insight.136176

Source DB:  PubMed          Journal:  JCI Insight        ISSN: 2379-3708


  65 in total

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Authors:  Jinbo Yang; Jing Huang; Maupali Dasgupta; Nathan Sears; Masaru Miyagi; Benlian Wang; Mark R Chance; Xing Chen; Yuping Du; Yuxin Wang; Lizhe An; Qin Wang; Tao Lu; Xiaodong Zhang; Zhenghe Wang; George R Stark
Journal:  Proc Natl Acad Sci U S A       Date:  2010-11-23       Impact factor: 11.205

Review 4.  Targeting the IL-6/JAK/STAT3 signalling axis in cancer.

Authors:  Daniel E Johnson; Rachel A O'Keefe; Jennifer R Grandis
Journal:  Nat Rev Clin Oncol       Date:  2018-02-06       Impact factor: 66.675

Review 5.  Revisiting STAT3 signalling in cancer: new and unexpected biological functions.

Authors:  Hua Yu; Heehyoung Lee; Andreas Herrmann; Ralf Buettner; Richard Jove
Journal:  Nat Rev Cancer       Date:  2014-11       Impact factor: 60.716

6.  Combined Inhibition of STAT3 and DNA Repair in Palbociclib-Resistant ER-Positive Breast Cancer.

Authors:  Smruthi Vijayaraghavan; Merih Guray Durak; Nicole M Kettner; Tuyen Bui; Mehrnoosh Kohansal; Min Jin Ha; Bin Liu; Xiayu Rao; Jing Wang; Min Yi; Jason P W Carey; Xian Chen; T Kris Eckols; Akshara S Raghavendra; Nuhad K Ibrahim; Meghan Sri Karuturi; Stephanie S Watowich; Aysegul Sahin; David J Tweardy; Kelly K Hunt; Debu Tripathy; Khandan Keyomarsi
Journal:  Clin Cancer Res       Date:  2019-03-13       Impact factor: 12.531

Review 7.  Regulation of STAT signaling by acetylation.

Authors:  Shougang Zhuang
Journal:  Cell Signal       Date:  2013-05-22       Impact factor: 4.315

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Authors:  David Hong; Razelle Kurzrock; Youngsoo Kim; Richard Woessner; Anas Younes; John Nemunaitis; Nathan Fowler; Tianyuan Zhou; Joanna Schmidt; Minji Jo; Samantha J Lee; Mason Yamashita; Steven G Hughes; Luis Fayad; Sarina Piha-Paul; Murali V P Nadella; Morvarid Mohseni; Deborah Lawson; Corinne Reimer; David C Blakey; Xiaokun Xiao; Jeff Hsu; Alexey Revenko; Brett P Monia; A Robert MacLeod
Journal:  Sci Transl Med       Date:  2015-11-18       Impact factor: 17.956

9.  Intrinsic cell-penetrating activity propels Omomyc from proof of concept to viable anti-MYC therapy.

Authors:  Marie-Eve Beaulieu; Toni Jauset; Daniel Massó-Vallés; Sandra Martínez-Martín; Peter Rahl; Loïka Maltais; Mariano F Zacarias-Fluck; Sílvia Casacuberta-Serra; Erika Serrano Del Pozo; Christopher Fiore; Laia Foradada; Virginia Castillo Cano; Meritxell Sánchez-Hervás; Matthew Guenther; Eduardo Romero Sanz; Marta Oteo; Cynthia Tremblay; Génesis Martín; Danny Letourneau; Martin Montagne; Miguel Ángel Morcillo Alonso; Jonathan R Whitfield; Pierre Lavigne; Laura Soucek
Journal:  Sci Transl Med       Date:  2019-03-20       Impact factor: 17.956

10.  Curcumin blocks small cell lung cancer cells migration, invasion, angiogenesis, cell cycle and neoplasia through Janus kinase-STAT3 signalling pathway.

Authors:  Cheng-Liang Yang; Yong-Yu Liu; Ye-Gang Ma; Yi-Xue Xue; De-Gui Liu; Yi Ren; Xiao-Bai Liu; Yao Li; Zhen Li
Journal:  PLoS One       Date:  2012-05-25       Impact factor: 3.240

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  2 in total

Review 1.  The role of cell-penetrating peptides in potential anti-cancer therapy.

Authors:  Meiling Zhou; Xi Zou; Kexin Cheng; Suye Zhong; Yangzhou Su; Tao Wu; Yongguang Tao; Li Cong; Bin Yan; Yiqun Jiang
Journal:  Clin Transl Med       Date:  2022-05

Review 2.  JAK/STAT Signaling: Molecular Targets, Therapeutic Opportunities, and Limitations of Targeted Inhibitions in Solid Malignancies.

Authors:  Bilal Rah; Rafiq A Rather; Gh Rasool Bhat; Abdul Basit Baba; Ifra Mushtaq; Muzamil Farooq; Tahira Yousuf; Sadaf B Dar; Sabra Parveen; Rukhsana Hassan; Fozia Mohammad; Iqbal Qassim; Abida Bhat; Shazia Ali; Mahrukh Hamid Zargar; Dil Afroze
Journal:  Front Pharmacol       Date:  2022-03-24       Impact factor: 5.810

  2 in total

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