Emerging Oncogenic and Immunoregulatory Roles of BST2 in Human Cancers

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초록

BST2 has emerged as a multifunctional molecule that bridges antiviral defense, membrane architecture, and tumor immunity. Originally characterized as an interferon-inducible restriction factor that tethers virions to the plasma membrane, BST2 is now recognized as an oncogenic driver and immunoregulatory hub in diverse malignancies. In cancer, BST2 expression is frequently upregulated through promoter hypomethylation and transcriptional activation. Functionally, BST2 promotes proliferation, epithelial-mesenchymal transition, anoikis resistance, and chemoresistance, whereas its loss sensitizes tumor cells to proteotoxic and metabolic stresses. Beyond tumor cells, BST2 modulates the tumor microenvironment by promoting M2 macrophage infiltration, dendritic cell exhaustion, and natural killer (NK)-cell resistance, thereby contributing to immune evasion. Elevated BST2 expression correlates with poor prognosis in glioblastoma, breast, nasopharyngeal, and pancreatic cancers, and it serves as a circulating biomarker within small extracellular vesicles. In conclusion, BST2 is a dual-function molecule that integrates oncogenic signaling and immune regulation, making it an attractive diagnostic and therapeutic target for hematological and solid tumors.

키워드

BST2 (CD317, tetherin)cancer immune regulationexosometumor microenvironmentinterferon signalinghypomethylationglioblastomamonoclonal antibody therapyCAR-T immunotherapyRESTRICTION FACTORANTITUMOR-ACTIVITYPOOR SURVIVALHIV-1 RELEASELUNG-CANCERCD317EXPRESSIONANTIBODYOVEREXPRESSIONCD317/TETHERIN
제목
Emerging Oncogenic and Immunoregulatory Roles of BST2 in Human Cancers
저자
Kim, ChoheeChoi, SeoyoonPark, Jong-Whi
DOI
10.3390/biomedicines14010131
발행일
2026-01
유형
Review
저널명
BIOMEDICINES
14
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