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Khalili, D., Kunc, M., Herbrich, S., Müller, A. M. M. & Theopold, U. (2023). Chitinase-like proteins promoting tumorigenesis through disruption of cell polarity via enlarged endosomal vesicles. Frontiers in Oncology, 13, Article ID 1170122.
Open this publication in new window or tab >>Chitinase-like proteins promoting tumorigenesis through disruption of cell polarity via enlarged endosomal vesicles
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2023 (English)In: Frontiers in Oncology, E-ISSN 2234-943X, Vol. 13, article id 1170122Article in journal (Refereed) Published
Abstract [en]

Introduction: Chitinase-like proteins (CLPs) are associated with tissue-remodeling and inflammation but also with several disorders, including fibrosis, atherosclerosis, allergies, and cancer. However, CLP’s role in tumors is far from clear.

Methods: Here, we utilize Drosophila melanogaster and molecular genetics to investigate the function of CLPs (imaginal disc growth factors; Idgf’s) in RasV12 dysplastic salivary glands.

Results and discussion: We find one of the Idgf’s members, Idgf3, is transcriptionally induced in a JNK-dependent manner via a positive feedback loop mediated by reactive oxygen species (ROS). Moreover, Idgf3 accumulates in enlarged endosomal vesicles (EnVs) that promote tumor progression by disrupting cytoskeletal organization. The process is mediated via the downstream component, aSpectrin, which localizes to the EnVs. Our data provide new insight into CLP function in tumors and identifies specific targets for tumor control.

Keywords
Drosophila, immunity, tumor, endosomal vesicles, salivary glands, chitinase, insect immunity
National Category
Cell and Molecular Biology
Identifiers
urn:nbn:se:su:diva-218037 (URN)10.3389/fonc.2023.1170122 (DOI)000986003400001 ()37188187 (PubMedID)2-s2.0-85159168083 (Scopus ID)
Available from: 2023-07-26 Created: 2023-07-26 Last updated: 2024-01-17Bibliographically approved
Khalili, D., Mohammed, M., Kunc, M., Sindlerova, M., Ankarklev, J. & Theopold, U. (2023). Single-cell sequencing of tumor-associated macrophages in a Drosophila model. Frontiers in Immunology, 14, Article ID 1243797.
Open this publication in new window or tab >>Single-cell sequencing of tumor-associated macrophages in a Drosophila model
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2023 (English)In: Frontiers in Immunology, E-ISSN 1664-3224, Vol. 14, article id 1243797Article in journal (Refereed) Published
Abstract [en]

Introduction: Tumor-associated macrophages may act to either limit or promote tumor growth, yet the molecular basis for either path is poorly characterized.

Methods: We use a larval Drosophila model that expresses a dominant-active version of the Ras-oncogene (RasV12) to study dysplastic growth during early tumor progression. We performed single-cell RNA-sequencing of macrophage-like hemocytes to characterize these cells in tumor- compared to wild-type larvae. Hemocytes included manually extracted tumor-associated- and circulating cells.

Results and discussion: We identified five distinct hemocyte clusters. In addition to RasV12 larvae, we included a tumor model where the activation of effector caspases was inhibited, mimicking an apoptosis-resistant setting. Circulating hemocytes from both tumor models differ qualitatively from control wild-type cells—they display an enrichment for genes involved in cell division, which was confirmed using proliferation assays. Split analysis of the tumor models further reveals that proliferation is strongest in the caspase-deficient setting. Similarly, depending on the tumor model, hemocytes that attach to tumors activate different sets of immune effectors—antimicrobial peptides dominate the response against the tumor alone, while caspase inhibition induces a shift toward members of proteolytic cascades. Finally, we provide evidence for transcript transfer between hemocytes and possibly other tissues. Taken together, our data support the usefulness of Drosophila to study the response against tumors at the organismic level.

Keywords
Drosophila melanogaster, hemocyte, macrophages, ScRNA-seq, single-cell transcriptomics, tumor model
National Category
Immunology
Identifiers
urn:nbn:se:su:diva-223039 (URN)10.3389/fimmu.2023.1243797 (DOI)001122285100001 ()37795097 (PubMedID)2-s2.0-85173157671 (Scopus ID)
Available from: 2023-10-18 Created: 2023-10-18 Last updated: 2024-01-17Bibliographically approved
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Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0001-5297-2846

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