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1.
Nat Commun ; 15(1): 3729, 2024 May 03.
Article in English | MEDLINE | ID: mdl-38702330

ABSTRACT

The unique virus-cell interaction in Epstein-Barr virus (EBV)-associated malignancies implies targeting the viral latent-lytic switch is a promising therapeutic strategy. However, the lack of specific and efficient therapeutic agents to induce lytic cycle in these cancers is a major challenge facing clinical implementation. We develop a synthetic transcriptional activator that specifically activates endogenous BZLF1 and efficiently induces lytic reactivation in EBV-positive cancer cells. A lipid nanoparticle encapsulating nucleoside-modified mRNA which encodes a BZLF1-specific transcriptional activator (mTZ3-LNP) is synthesized for EBV-targeted therapy. Compared with conventional chemical inducers, mTZ3-LNP more efficiently activates EBV lytic gene expression in EBV-associated epithelial cancers. Here we show the potency and safety of treatment with mTZ3-LNP to suppress tumor growth in EBV-positive cancer models. The combination of mTZ3-LNP and ganciclovir yields highly selective cytotoxic effects of mRNA-based lytic induction therapy against EBV-positive tumor cells, indicating the potential of mRNA nanomedicine in the treatment of EBV-associated epithelial cancers.


Subject(s)
Epstein-Barr Virus Infections , Herpesvirus 4, Human , Liposomes , Nanoparticles , Trans-Activators , Humans , Herpesvirus 4, Human/genetics , Trans-Activators/metabolism , Trans-Activators/genetics , Epstein-Barr Virus Infections/virology , Epstein-Barr Virus Infections/drug therapy , Animals , Nanoparticles/chemistry , Cell Line, Tumor , Mice , RNA, Messenger/genetics , RNA, Messenger/metabolism , Virus Activation/drug effects , Xenograft Model Antitumor Assays , Gene Expression Regulation, Viral/drug effects , Mice, Nude , Female
2.
J Pathol ; 259(2): 163-179, 2023 02.
Article in English | MEDLINE | ID: mdl-36420735

ABSTRACT

Invadopodia are actin-rich membrane protrusions that digest the matrix barrier during cancer metastasis. Since the discovery of invadopodia, they have been visualized as localized and dot-like structures in different types of cancer cells on top of a 2D matrix. In this investigation of Epstein-Barr virus (EBV)-associated nasopharyngeal carcinoma (NPC), a highly invasive cancer frequently accompanied by neck lymph node and distal organ metastases, we revealed a new form of invadopodium with mobilizing features. Integration of live-cell imaging and molecular assays revealed the interaction of macrophage-released TNFα and EBV-encoded latent membrane protein 1 (LMP1) in co-activating the EGFR/Src/ERK/cortactin and Cdc42/N-WASP signaling axes for mobilizing the invadopodia with lateral movements. This phenomenon endows the invadopodia with massive degradative power, visualized as a shift of focal dot-like digestion patterns on a 2D gelatin to a dendrite-like digestion pattern. Notably, single stimulation of either LMP1 or TNFα could only enhance the number of ordinary dot-like invadopodia, suggesting that the EBV infection sensitizes the NPC cells to form mobilizing invadopodia when encountering a TNFα-rich tumor microenvironment. This study unveils the interplay of EBV and stromal components in driving the invasive potential of NPC via unleashing the propulsion of invadopodia in overcoming matrix hurdles. © 2022 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.


Subject(s)
Epstein-Barr Virus Infections , Nasopharyngeal Neoplasms , Podosomes , Humans , Nasopharyngeal Carcinoma/pathology , Podosomes/metabolism , Podosomes/pathology , Herpesvirus 4, Human/metabolism , Nasopharyngeal Neoplasms/pathology , Tumor Necrosis Factor-alpha/pharmacology , Tumor Necrosis Factor-alpha/metabolism , Membrane Proteins/metabolism , Viral Matrix Proteins/metabolism , Tumor Microenvironment
3.
Oncogene ; 38(24): 4669-4684, 2019 06.
Article in English | MEDLINE | ID: mdl-30745576

ABSTRACT

EBV infection of preinvasive nasopharyngeal epithelium is believed to be an initiation step during pathogenesis of nasopharyngeal carcinoma (NPC), but the mechanisms remain poorly understood. Here we report a novel mechanism driving NPC metastasis through the EBV-encoded LMP1-mediated metabolic reprogramming, via activation of IGF1-mTORC2 signaling and nuclear acetylation of the Snail promoter by the PDHE1α, an enzyme involved in glucose metabolism. Mechanistically, EBV-LMP1 increases the cellular secretion of IGF1 which promotes phosphorylation of IGF1R to activate mTORC2/AKT signaling linking glucose metabolism to cell motility. LMP1 expression facilitates translocation of mitochondrial PDHE1α into the nucleus in a phosphorylation-dependent manner at Ser293 residue. Functionally, nuclear PDHE1α promotes H3K9 acetylation on the Snail promoter to enhance cell motility, thereby driving cancer metastasis. Importantly, the IGF1/mTORC2/PDHE1α/Snail axis correlates significantly with disease progression and poor prognosis in NPC patients. This study highlights the functional importance of IGF1-mTORC2-PDHE1α signaling mediated by EBV-LMP1 in NPC pathogenesis.


Subject(s)
Cell Nucleus/metabolism , Glucose/metabolism , Mechanistic Target of Rapamycin Complex 2/physiology , Nasopharyngeal Carcinoma/pathology , Nasopharyngeal Neoplasms/pathology , Pyruvate Dehydrogenase (Lipoamide)/metabolism , Viral Matrix Proteins/physiology , Active Transport, Cell Nucleus/genetics , Animals , Cell Proliferation/genetics , Cell Transformation, Viral/physiology , Cells, Cultured , Epstein-Barr Virus Infections/complications , Epstein-Barr Virus Infections/genetics , Epstein-Barr Virus Infections/metabolism , Glycolysis/genetics , Herpesvirus 4, Human/physiology , Humans , Male , Mice , Mice, Inbred NOD , Mice, Nude , Mice, SCID , Nasopharyngeal Carcinoma/genetics , Nasopharyngeal Carcinoma/metabolism , Nasopharyngeal Carcinoma/virology , Nasopharyngeal Neoplasms/genetics , Nasopharyngeal Neoplasms/metabolism , Nasopharyngeal Neoplasms/virology , Neoplasm Metastasis , Protein Transport , Pyruvate Dehydrogenase (Lipoamide)/genetics , Signal Transduction/genetics
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