Related Experiment Video
Updated: Aug 21, 2026

Neutrophil Isolation and Analysis to Determine their Role in Lymphoma Cell Sensitivity to Therapeutic Agents
Published on: March 25, 2016
A Nutrient-Sensitive ZRF1-Dependent Secretory Network Involving S100A9 Contributes to Neutrophil Plasticity in
Aysegul Kaymak Ozdemir1, Mahinur Basci2, Minenur Kalyoncu3
1Ege University, Faculty of Pharmacy, Department of Biochemistry, 35040 Izmir, Türkiye.
None:
Zuotin-related factor 1 (ZRF1) is an essential chromatin-associated regulator with established roles in transcription, differentiation, and cancer; however, its contribution to paracrine signaling within the tumor microenvironment (TME) remains unexplored. Here, we identify ZRF1 as a regulator of nutrient-sensitive tumor-derived paracrine signaling in triple-negative breast cancer (TNBC). Across multiple breast cancer subtypes, ZRF1 depletion altered the expression, secretion, and stress-associated protein patterns of the inflammatory mediator S100A9. This regulation was influenced by metabolic status, where nutrient deprivation selectively destabilized specific S100A9 proteoforms through proteasome-sensitive mechanisms. Bioinformatic analyses revealed a strong association between S100A9 expression and neutrophil infiltration in breast tumors, prompting functional investigation of ZRF1-mediated tumor-neutrophil communication using a multilayered experimental framework. Conditioned medium from ZRF1-deficient tumor cells induced a nonbinary neutrophil activation spectrum rather than a fixed polarization state. This phenotypic remodeling was characterized by altered inflammatory signaling and cytokine (IL-8) dynamics in both differentiated HL-60 neutrophil-like cells and primary human neutrophils. Functionally, ZRF1-dependent paracrine cues regulated neutrophil transendothelial migration over time. Reciprocal coculture platforms and real-time xCELLigence assays further demonstrated that ZRF1 loss sensitizes tumor cells to neutrophil-derived signals, enhancing invasion and driving state-dependent architectural remodeling in 3D tumor spheroids. Collectively, these findings support a model in which a nutrient-sensitive ZRF1-dependent secretory network involving S100A9 contributes to human neutrophil plasticity under metabolic stress. Consequently, this study highlights S100A9 as one component of a broader ZRF1-regulated secretory network and identifies nutrient-sensitive tumor-immune communication as a potential therapeutic vulnerability in aggressive breast cancer.
Related Concept Videos
Regulation of Nuclear Protein Sorting
The Nucleolus
Overview of Secretory Vesicles
Various proteins regulate the aggregation of molecules inside the secretory vesicles. Chromogranins...
