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February 8, 2026Cancers1 citationsOpen Access

Notch2, a Key Player in Chronic Lymphocytic Leukemia: Mechanism, Microenvironment Interactions, and Therapeutic Implications

RMRamona MiserendinoCAClaudio Giacinto AteneMLMario Luppi

Key Points

  • The aim is to explore how Notch2 influences chronic lymphocytic leukemia through microenvironment interactions and resistance mechanisms.
  • Analyzed the roles of tissue niches in CLL development and survival.
  • Examined the activation of Notch2 and its interactions with Jagged1/2 ligands.
  • Investigated the transcriptional regulation of key targets such as CD23 and Hes1.
  • Explored the tumor microenvironment's contributions to drug resistance in CLL.
  • Notch2 is activated in CLL despite the absence of mutations, supporting leukemic cell survival.
  • Activation of Notch2 in stromal cells triggers pathways that enhance CLL cell growth.
  • Notch2 promotes drug tolerance in CLL by increasing the expression of Mcl-1.
  • Notch2 regulates essential targets for B cell function and survival, impacting disease progression.

Abstract

Background/Objectives: Tissue niches, such as those in the spleen, bone marrow, and lymph nodes, are crucial for the survival and growth of leukemic cells in chronic lymphocytic leukemia (CLL). Methods: A growing amount of research over the last 20 years has shown how important the tumor microenvironment (TME) is to the pathophysiology, development, and resistance to treatment of CLL. This protective environment, which is made up of various cell types (including stromal and immune cells), extracellular matrix components, and soluble factors, supports CLL cells and encourages their survival, growth, and drug resistance. Even in the absence of mutations, Notch2 is functionally activated in the CLL system, in addition to the well-known Notch1. This occurs because leukemic cells aberrantly express the ligand Jagged1/2, which activates the Notch2 receptor on both stromal and CLL cells themselves. Notch2 activation on stromal cells leads to the triggering of the Wnt/β-catenin program in CLL cells, whereas the activation of Notch2 in CLL cells promotes the expression of Mcl-1, which confers drug tolerance (especially in cases with trisomy 12). Results: In addition to these mechanisms, Notch2 acts as a transcription factor that directly controls the expression of key targets, such as CD23 and Hes1, that are fundamental for B cell proliferation, differentiation, and survival in CLL. Conclusions: All of these circuits represent important therapeutic targets and help explain the cells’ dependence on their niche, the formation of proliferation centers, and resistance to modern targeted agents.

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Cite This Study

Miserendino et al. (2026) studied this question.

synapsesocial.com/papers/698828620fc35cd7a8847ddchttps://doi.org/10.3390/cancers18030518
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