Search bioRxivSearch

Biology subjects

Lydon, J.

Publications and source records attributed to Lydon, J..

2 recordsLinked to original sources

Adipocyte lipolysis abrogates skin fibrosis in a Wnt/DPP4-dependent manner

Tissue fibrosis in many organs results from altered and excessive extracellular matrix (ECM) protein deposition 1. Concomitant with ECM expansion, resident lipid-filled cells including mature adipocytes are lost in human and mouse fibrosis2-5, yet the mechanisms that drive mature adipocyte lipid loss and their contribution to tissue fibrosis are unknown. Here, we identify an early, fibro-protective role of mature adipocyte lipolysis driven by Wnt signaling during fibrosis onset. Using chemical and genetic mouse models of skin fibrosis, we show that fibrotic stimuli induce and maintain lipolysis in mature dermal adipocytes. Loss of the lipolytic rate-limiting enzyme adipocyte triglyceride lipase (ATGL)6,7 in murine dermal adipocytes exacerbates bleomycin-induced fibrosis development. Adipocyte lipolysis is stimulated in the early stages of Wnt signaling-induced skin fibrosis and by Wnt agonists in vitro. Furthermore, deletion or inhibition of the Wnt target gene, CD26/Dipeptidyl peptidase 4 (DPP4) prevented Wnt-induced lipolysis and skin fibrosis in mice. Notably, DPP4 expression correlates with skin fibrosis severity in human patients. Thus, we propose that adipocyte-derived fatty acids and the Wnt-DPP4 axis act as essential regulators of ECM homeostasis within tissues and provide a therapeutic avenue to manipulate fibrosis.

cell biology

Vaginal squamous cell carcinoma develops in mice with Arid1a loss and gain of oncogenic Kras

Recent sequencing studies showed that loss-of-function mutations in ARID1A (AT-rich interactive domain 1a) were enriched in gynecologic malignancies. However, multiple mouse models with deletion of Arid1a did not exhibit gynecologic malignancy. Oncogenic KRAS mutations are a common finding in endometrial cancers. However, expression of oncogenic Kras (KrasG12D) in the uterus was not sufficient to develop endometrial cancer. These results suggest that both ARID1A deletion and oncogenic KRAS require additional hits before driving gynecologic malignancy. To determine the role of the combination effects of deletion of Arid1a and oncogenic Kras, Arid1aflox/flox mice were crossed to KrasLox-Stop-Lox-G12D/+ mice using progesterone receptor Cre (PgrCre/+). Survival studies, histology, and immunohistochemistry were used to characterize the phenotype. Hormone dependence was evaluated by ovarian hormone depletion and estradiol replacement. Arid1aflox/flox; KrasLox-Stop-Lox-G12D/+; PgrCre/+ (AKP) mice exhibited early euthanasia due to large vaginal tumors, which were invasive squamous cell carcinoma. Younger mice exhibited precancerous intraepithelial lesions that progressed to invasive squamous cell carcinoma with age. Immunohistochemistry supported the pathological diagnosis with abnormal expression and localization of cytokeratin 5, tumor protein P63, cyclin dependent kinase inhibitor 2A (CDKN2A or p16), and marker of proliferation Ki-67. Vaginal lesions in AKP mice were hormone dependent. Ovarian hormone deletion in AKP mice resulted in atrophic vaginal epithelium without evidence of vaginal tumors. Estradiol replacement in ovarian hormone depleted AKP mice resulted in lesions that resembled the squamous cell carcinoma in intact mice. AKP mice did not develop endometrial cancer. Arid1a deletion with KrasG12D expression drives invasive vaginal squamous cell carcinoma. This mouse can be used to study the transition from benign precursor lesions into invasive vaginal squamous cell carcinoma offering insights into progression.

cancer biology