Search bioRxiv⌕ Search

Biology subjects

Kyte, J. A.

Publications and source records attributed to Kyte, J. A..

2 recordsLinked to original sources

Structure-guided computational design and mechanistic understanding of the p95HER2-targeting NAZ-mAb antibody and its variants

Human epidermal growth factor receptor 2 (HER2) is an oncogenic receptor tyrosine kinase in breast cancer and other malignancies. A subset of HER2-positive tumours expresses 611-CTF-p95HER2, a tumour-specific, hyperactive truncated isoform associated with metastasis and treatment resistance that lacks most of the extracellular domain targeted by conventional HER2-directed antibodies. We previously developed NAZ-mAb (formerly known as Oslo-2), a monoclonal antibody against 611-CTF-p95HER2. Here, we describe a computational antibody-engineering workflow for designing variants of NAZ-mAb. Starting from the sequence alone, we modeled the NAZ-mAb-611-CTF-p95HER2 complex, generated a combinatorial mutational landscape using FoldX 5.0, and prioritized candidate variants using predicted interaction energy and developability criteria. Two variants representing distinct design strategies were selected for validation: an aromatic double mutant, NAZ-mAb v1 (L:S31W/L:H107W), and a conservative single mutant, NAZ-mAb v2 (L:S31M). Both variants were successfully expressed as recombinant IgGs; NAZ-mAb v2 achieved a five-fold higher recombinant expression yield than parental NAZ-mAb, while both variants retained antigen binding with a higher apparent signal than the parental antibody in indirect ELISA. However, Biacore two-state kinetic analysis revealed weaker affinities than the parental antibody (KD NAZ-mAb v1: 32.6 nM, NAZ-mAb v2: 9.45 nM vs. parental NAZ-mAb: 5.33 nM). These findings show that the computational workflow can generate experimentally tractable, antigen-engaging NAZ-mAb variants, while also highlighting the limitations of fixed-backbone interaction-energy ranking as a predictor of binding affinity and yield. This study provides a practical framework for computationally driven, developability-aware antibody optimization in the absence of experimental structural data.

bioinformatics↗

CD38hiCD19dim cells in lymph nodes predict favorable prognosis in patients with stage III melanoma receiving adjuvant PD-1-blockade

BackgroundAdjuvant immunotherapy has significantly improved survival for patients with stage III cutaneous melanoma, yet a fraction of patients will not benefit from immune checkpoint inhibitors (ICI). The tumor microenvironment plays a pivotal role in generating durable responses to ICI. By analyzing the cellular composition of tumor-associated subsets, key immune components essential for promoting an anti-tumor environment can be pinpointed. This will allow for both patient stratification and identification of biomarkers associated with improved patient outcome. MethodRegional lymph nodes were obtained from patients with stage III melanoma at surgery (n=29). Patients eligible for anti-PD-1 therapy (PD-1; pembrolizumab or nivolumab) received adjuvant treatment for up to one year. CyTOF was used to determine cellular composition in pre-treatment surgical specimens. Bulk gene expression data generated by NanoString from patients receiving surgery without adjuvant therapy (n=125) was implemented for evaluating trends observed in the CyTOF dataset. ResultsAlthough no significant differences were observed across major hierarchical immune cell types between patients who developed distant metastasis after surgery and those that did not, an increased proportion of CD103+PD-1+CD8+ (TRM) T cells and plasmablast-like CD38hiCD19dim cells were associated with improved prognosis in the CyTOF cohort. In the untreated cohort, a subset of patients defined as "Ultra-cold" (< 2.5 % tumor-infiltrating lymphocyte (TIL) scored by a pathologist) had significantly worse outcome than those with higher TIL infiltration. This Ultra-cold TIL group was associated with reduced B cell score, but not CD8+ T cell score, as well as reduced expression of activation genes like CD38. ConclusionIn this study, CD103+PD-1+CD8+ (TRM) T cells and plasmablast-like CD38hiCD19dim cell populations were found to be strongly associated with prolonged distant metastasis-free survival in regional lymph nodes from patients with stage III melanoma treated with PD-1. This suggests an association between progression and infiltration of these cell types at baseline and highlights the potential of using immune cell subsets as prognostic biomarkers. What is already known on this topic - Patients being diagnosed with stage III melanoma will receive immune checkpoint inhibitors but will often be cured by surgery alone. Selection of which patients might benefit from treatment is still unresolved. Accurate biomarkers would aid in treatment stratification, to avoid overtreatment, and unnecessary toxicities. What this study adds - This study highlights how baseline CD103+PD-1+CD8+ (TRM) T cells and plasmablast-like CD38hiCD19dim cell populations in the regional lymph node, is strongly associated with improved outcome in patients receiving anti-PD-1 therapy. How this study might affect research, practice or policy - The strong association between baseline plasmablast-like cell infiltration in RLN and prolonged distant metastasis free- survival, highlights this cell type as a potential treatment stratification criterion to identify patients with good prognosis.

cancer biology↗