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NLGP regulates RGS5-TGFβ axis to promote pericyte-dependent vascular normalization during restricted tumor growth
Shayani Dasgupta1, Akata Saha1, Nilanjan Ganguly1
1Department of Immunoregulation and Immunodiagnostics, Chittaranjan National Cancer Institute, Kolkata, India.
Abstract:
Altered RGS5-associated intracellular pericyte signaling and its abnormal crosstalk with endothelial cells (ECs) result chaotic tumor-vasculature, prevent effective drug delivery, promote immune-evasion and many more to ensure ultimate tumor progression. Moreover, the frequency of lethal-RGS5high pericytes within tumor was found to increase with disease progression, which signifies the presence of altered cell death pathway within tumor microenvironment (TME). In this study, we checked whether and how neem leaf glycoprotein (NLGP)-immunotherapy-mediated tumor growth restriction is associated with modification of pericytes' signaling, functions and its interaction with ECs. Analysis of pericytes isolated from tumors of NLGP treated mice suggested that NLGP treatment promotes apoptosis of NG2+ RGS5high -fuctionally altered pericytes by downregulating intra-tumoral TGFβ, along with maintenance of more matured RGS5neg pericytes. NLGP-mediated inhibition of TGFβ within TME rescues binding of RGS5 with Gαi and thereby termination of PI3K-AKT mediated survival signaling by downregulating Bcl2 and initiating pJNK mediated apoptosis. Limited availability of TGFβ also prevents complex-formation between RGS5 and Smad2 and rapid RGS5 nuclear translocation to mitigate alternate immunoregulatory functions of RGS5high tumor-pericytes. We also observed binding of Ang1 from pericytes with Tie2 on ECs in NLGP-treated tumor, which support re-association of pericytes with endothelium and subsequent vessel stabilization. Furthermore, NLGP-therapy- associated RGS5 deficiency relieved CD4+ and CD8+ T cells from anergy by regulating 'alternate-APC-like' immunomodulatory characters of tumor-pericytes. Taken together, present study described the mechanisms of NLGP's effectiveness in normalizing tumor-vasculature by chiefly modulating pericyte-biology and EC-pericyte interactions in tumor-host to further strengthen its translational potential as single modality treatment.
Insights
Neem leaf glycoprotein (NLGP) immunotherapy eliminates harmful RGS5-high pericytes in tumors. This normalizes tumor vasculature, enhances anti-tumor immunity, and improves treatment potential.
Area of Science:
- Oncology
- Immunology
- Vascular Biology
Background:
- Altered pericyte signaling (RGS5) and endothelial cell (EC) crosstalk create chaotic tumor vasculature, hindering drug delivery and promoting immune evasion.
- Increased RGS5-high pericytes correlate with tumor progression, indicating altered cell death pathways in the tumor microenvironment (TME).
Purpose of the Study:
- To investigate if NLGP-immunotherapy modifies pericyte signaling, function, and EC interactions to restrict tumor growth.
- To elucidate the mechanisms by which NLGP impacts pericyte biology and tumor vasculature.
Main Methods:
- Analysis of pericytes isolated from NLGP-treated and untreated tumor-bearing mice.
- Assessment of molecular signaling pathways including TGFβ, RGS5-Gαi binding, PI3K-AKT, Bcl2, pJNK, and RGS5-Smad2 complex formation.
- Evaluation of pericyte-endothelial cell interactions via Angiopoietin-1 (Ang1) and Tie2.
- Analysis of T-cell (CD4+, CD8+) responses and pericyte immunomodulatory functions.
Main Results:
- NLGP treatment induces apoptosis of NG2+ RGS5-high pericytes by downregulating intra-tumoral TGFβ, promoting RGS5-Gαi binding, and inhibiting PI3K-AKT survival signaling.
- NLGP treatment leads to RGS5 deficiency, mitigating pro-tumorigenic functions and T-cell anergy by regulating pericyte immunomodulatory roles.
- NLGP therapy promotes pericyte-EC re-association via Ang1-Tie2 binding, stabilizing tumor vasculature.
Conclusions:
- NLGP effectively normalizes tumor vasculature by modulating pericyte biology and EC-pericyte interactions.
- NLGP immunotherapy demonstrates significant potential as a single-modality treatment by targeting pericyte dysfunction and enhancing anti-tumor immunity.
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