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Stolzenbach, V.

Publications and source records attributed to Stolzenbach, V..

3 recordsLinked to original sources

A switch in collagen expression regulates cessation of distal tip cell migration in C. elegans

Development of the C. elegans gonad requires precise regulation of cell migration. The distal tip cell (DTC) guides the elongation of the gonad into its final U-shaped structure before halting in adulthood. How cessation of elongation is regulated remains unknown. Here, we analyze an RNA-seq data set isolated from stage-specific DTCs to uncover the temporal gene expression dynamics underlying this process. Collagens emerged as the most enriched gene family during the transition from migratory larval stages to adulthood. We identify distinct temporal waves of collagen expression, culminating in a core adult-specific module that coincides with migration cessation. Functional analysis by RNAi depletion revealed that many collagens upregulated in adulthood are required for timely migration arrest, while others affect gonad shape. Perturbation of collagen remodeling enzymes phenocopied these effects. Our findings uncover a stage-specific collagen program in the DTC and suggest that terminal migration arrest is actively reinforced by matrix remodeling.

developmental biology↗

Stage-specific transcriptomics of a leader cell reveals cell machineries driving collective invasion

Collective cell invasion underlies organ development, epithelial repair, and cancer metastasis. "Leader cells" remodel extracellular matrix, sense guidance cues, reorganize their cytoskeleton, and coordinate follower cells, but the molecular programs enabling these functions remain unclear. Here, we present a stage-specific transcriptomic dataset of the C. elegans gonadal leader cell, the distal tip cell (DTC), which invades basement membrane and guides germ cells to form U-shaped gonadal arms. Comparing invasive larval-stage DTCs with non-invasive adult-stage DTCs defines the molecular signature of an actively invading leader cell in vivo. Our dataset recapitulates known regulators of gonad morphogenesis and reveals numerous uncharacterized genes with potential roles in leader cell activity. As proof of concept, we identify vesicular trafficking proteins as enriched in invading DTCs, and demonstrate their importance for gonad development using endogenous tagging and DTC-specific RNAi. We also catalog diverse DTC-specific knockdown phenotypes. This resource establishes a molecular framework for leader cell activity and a platform to investigate conserved mechanisms of invasive migration.

developmental biology↗

Extracellular vesicles from non-neuroendocrine SCLC cells promote adhesion and survival of neuroendocrine SCLC cells

Small Cell Lung Cancer (SCLC) tumors are made up of distinct cell subpopulations, including neuroendocrine (NE) and non-NE cells. While secreted factors from non-NE SCLC cells have been shown to support the growth of the NE cells, the underlying molecular factors are not well understood. Here, we show that exosome-type small extracellular vesicles (SEVs) secreted from non-NE SCLC cells promote adhesion and survival of NE SCLC cells. Proteomic analysis of purified small EVs revealed that extracellular matrix (ECM) proteins and integrins are highly enriched in small EVs of non-NE cells whereas nucleic acid-binding proteins are enriched in small EVs purified from NE cells. Addition of select purified ECM proteins identified in purified EVs, specifically fibronectin, laminin 411, and laminin 511, were able to substitute for the role of non-NE-derived SEVs in promoting adhesion, survival, and tumorigenicity of NE SCLC cells. Those same proteins were differentially expressed by human SCLC subtypes. These data suggest that ECM-carrying SEVs secreted by non-NE cells play a key role in supporting SCLC tumor growth and survival.

cancer biology↗