פרופ' אסף זריצקי

Formation of recurring transient Ca2+-based intercellular communities during Drosophila hematopoiesis

Saar Ben David, Kevin Y.L. Ho, Guy Tanentzapf, Assaf Zaritsky

Tissue development occurs through a complex interplay between many individual cells. Yet, the fundamental question of how collective tissue behavior emerges from heterogeneous and noisy information processing and transfer at the single-cell level remains unknown. Here, we reveal that tissue scale signaling regulation can arise from local gap-junction mediated cell–cell signaling through the spatiotemporal establishment of an intermediate-scale of transient multicellular communication communities over the course of tissue development. We demonstrated this intermediate scale of emergent signaling using Ca2+ signaling in the intact, ex vivo cultured, live developing Drosophila hematopoietic organ, the lymph gland. Recurrent activation of these transient signaling communities defined self-organized signaling “hotspots” that gradually formed over the course of larva development. These hotspots receive and transmit information to facilitate repetitive interactions with nonhotspot neighbors. Overall, this work bridges the scales between single-cell and emergent group behavior providing key mechanistic insight into how cells establish tissue-scale communication networks.

שפת פרסום אנגלית
כתב עת Proceedings of the National Academy of Sciences of the United States of America
כרך 121
נושא מספר 16
סטטוס פרסום פורסם - 16.04.2024
e2318155121

Keywords

Drosophila hematopoiesis
calcium signaling
cell–cell communication
multicellular synchronization
quantitative live imaging

ASJC Scopus subject areas

General
גישה למסמך
10.1073/pnas.2318155121
קבצים וקישורים אחרים
Link to publication in Scopus