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Biology subjects

Heljasvaara, R.

Publications and source records attributed to Heljasvaara, R..

2 recordsLinked to original sources

Collagen XVIII promotes breast cancer through EGFR/ErbB signaling and its ablation improves the efficacy of ErbB-targeting inhibitors

The tumor extracellular matrix (ECM) is a critical regulator of cancer progression and metastasis, significantly affecting the treatment response. Expression of collagen XVIII (ColXVIII), a ubiquitous component of basement membranes, is induced in many solid tumors, but its involvement in tumorigenesis has remained elusive. We show here that ColXVIII is markedly upregulated in human breast cancer (BC) cells and is closely associated with a poor prognosis in high-grade BC, especially in human epidermal growth factor receptor 2 (HER2)-positive and basal/triple-negative cases. We identified a novel mechanism of action for ColXVIII as a modulator of epidermal growth factor receptor (EGFR/ErbB) signaling and show that it forms a complex with EGFR, HER2 and 6 integrin to promote cancer cell proliferation in a pathway involving its N-terminal portion and the MAPK/ERK1/2 and PI3K/Akt cascades. In vivo studies with Col18a1 mouse models crossed with the MMTV-PyMT mammary carcinogenesis model showed that the short ColXVIII isoform promotes BC growth and metastasis in a tumor cell-autonomous manner. Moreover, the number of mammary cancer stem cells was significantly reduced in both mouse and human cell models upon ColXVIII inhibition. Finally, ablation of ColXVIII in human BC cells and the MMTV-PyMT model substantially improved the efficacy of certain EGFR/ERbB-targeting therapies, even abolishing resistance to EGFR/ErbB inhibitors in some cell lines. In summary, a new function is revealed for ColXVIII in sustaining the stemness properties of BC cells, and tumor progression and metastasis through EGFR/ErbB signaling, suggesting that targeting ColXVIII in the tumor milieu may have significant therapeutic potential. One Sentence SummaryCollagen XVIII is upregulated in breast cancer and promotes mammary carcinogenesis through EGFR/ErbB signaling and by sustaining cancer stem cells, so that its targeting improves the efficacy of ErbB-targeted therapies.

cancer biology↗

Deletion of hypoxia-inducible factor prolyl 4-hydroxylase 2 in FoxD1-lineage mesenchymal cells leads to congenital truncal alopecia

Hypoxia-inducible factors (HIFs) induce hundreds of genes regulating oxygen homeostasis in tissues. Oxygen sensors of the cells, the HIF prolyl 4-hydroxylases (HIF-P4Hs), regulate the stability and activity of HIFs in an oxygen-dependent manner. In this study, we show that lack of Hif-p4h-2 in FoxD1-lineage mesodermal cells interferes the normal development of hair follicles (HF) in mice. The FoxD1-lineage cells were found to be mainly mesenchymal cells located in the dermis of truncal skin, including the cells composing the dermal papilla of the HF. Upon Hif-p4h-2 inactivation, HF development was disturbed during the first catagen leading to formation of large epithelial lined HF cysts filled by unorganized keratins, which eventually manifested as truncal alopecia. The depletion of Hif-p4h-2 led to HIF stabilization and dysregulation of multiple genes involved in keratin formation, HF differentiation, and HIF, TGF{beta} and Notch signaling. The failure of the controlled process of HF cycling is likely to be mechanistically caused by disruption of the precise and timely interplay of the HIF, TGF{beta} and Notch pathways. In summary, we show here for the first time that HIF-P4H-2 function in FoxD1-lineage cells is essential for the normal development and homeostasis of HFs.

molecular biology↗