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Acquisition of resistance toward HYD1 correlates with a reduction in cleaved α4 integrin expression and a compromised
Michael F Emmons1, Anthony W Gebhard, Rajesh R Nair
1Molecular Oncology Program, H Lee Moffitt Cancer Center Tampa, FL, USA.
Abstract:
We recently reported that the β1 integrin antagonist, referred to as HYD1, induces necrotic cell death in myeloma cell lines as a single agent using in vitro and in vivo models. In this article, we sought to delineate the determinants of sensitivity and resistance toward HYD1-induced cell death. To this end, we developed an HYD1 isogenic resistant myeloma cell line by chronically exposing H929 myeloma cells to increasing concentrations of HYD1. Our data indicate that the acquisition of resistance toward HYD1 correlates with reduced levels of the cleaved α4 integrin subunit. Consistent with reduced VLA-4 (α4β1) expression, the resistant variant showed ablated functional binding to fibronectin, VCAM-1, and the bone marrow stroma cell line HS-5. The reduction in binding of the resistant cell line to HS-5 cells translated to a compromised cell adhesion-mediated drug resistant phenotype as shown by increased sensitivity to melphalan- and bortezomib-induced cell death in the bone marrow stroma coculture model of drug resistance. Importantly, we show that HYD1 is more potent in relapsed myeloma specimens than newly diagnosed patients, a finding that correlated with α4 integrin expression. Collectively, these data indicate that this novel d-amino acid peptide may represent a good candidate for pursuing clinical trials in relapsed myeloma and in particular patients with high levels of α4 integrin. Moreover, our data provide further rationale for continued preclinical development of HYD1 and analogues of HYD1 for the treatment of multiple myeloma and potentially other tumors that home and/or metastasize to the bone.
Insights
The integrin antagonist HYD1 causes cell death in multiple myeloma. Resistance develops with lower α4 integrin, making cells more sensitive to other drugs and suggesting HYD1 is promising for relapsed myeloma.
Area of Science:
- Integrin signaling in cancer biology
- Molecular mechanisms of drug resistance
- Hematologic oncology
Background:
- The β1 integrin antagonist HYD1 induces necrotic cell death in multiple myeloma (MM) cell lines.
- Understanding resistance mechanisms is crucial for therapeutic development.
Purpose of the Study:
- To identify determinants of sensitivity and resistance to HYD1 in myeloma.
- To evaluate the therapeutic potential of HYD1 in relapsed myeloma.
Main Methods:
- Developed an HYD1-resistant myeloma cell line through chronic drug exposure.
- Assessed α4 integrin expression and VLA-4 (α4β1) functional binding.
- Utilized a bone marrow stroma co-culture model to assess drug resistance phenotypes.
Main Results:
- Resistance to HYD1 correlated with reduced cleaved α4 integrin subunit levels.
- Resistant cells exhibited decreased binding to fibronectin, VCAM-1, and bone marrow stroma.
- Resistance to HYD1 led to increased sensitivity to melphalan and bortezomib.
- HYD1 demonstrated greater potency in relapsed myeloma specimens, linked to α4 integrin expression.
Conclusions:
- Reduced α4 integrin expression is a key mechanism of HYD1 resistance.
- HYD1 may be a promising therapeutic candidate for relapsed multiple myeloma, particularly in patients with high α4 integrin.
- Further preclinical development of HYD1 and its analogues is warranted for MM treatment.
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