RRC ID 57864
著者 Vangala G, Imhoff FM, Squires CML, Cridge AG, Baird SK.
タイトル Mesenchymal stem cell homing towards cancer cells is increased by enzyme activity of cathepsin D.
ジャーナル Exp Cell Res
Abstract Mesenchymal stem cells home towards inflammatory microenvironments, such as the tumour stroma, where they have been shown to have both pro- and anti-tumorigenic effects. Here, we demonstrate that the aspartic acid protease cathepsin D is part of the chemoattraction process. Using a Boyden chamber co-culture system, the migration of the mesenchymal stem cells and their invasion through Matrigel increased in the presence of breast cancer MDA-MB-231 cells, colon cancer HT29 cells or their conditioned media. Mesenchymal stem cell movement was reduced by protease inhibitors of matrix metalloproteinases and by pepstatin A, an inhibitor of cathepsin D. We confirmed a role for cathepsin D through addition of recombinant protein, upregulation of cathepsin D release using chloroquine and knockdown of cathepsin D expression. While all cell types expressed active cathepsin D, enzymatically inactive precursor procathepsin D was expressed only at low levels by mesenchymal stem cells. Expression in mesenchymal stem cells was increased following co-culture with cancer cells. The chemoattractive effect of cathepsin D required its enzymatic activity, but not changes in mesenchymal stem cell proliferation or adhesion rates. In conclusion, cathepsin D and its precursors enhance mesenchymal stem cell homing towards tumour sites, most likely by enzymatic mechanisms.
巻・号 383(1)
ページ 111494
公開日 2019-10-1
DOI 10.1016/j.yexcr.2019.07.007
PII S0014-4827(19)30335-0
PMID 31306655
MeSH Breast Neoplasms / metabolism Breast Neoplasms / pathology* Cathepsin D / metabolism* Cell Adhesion Cell Movement* Cell Proliferation Cells, Cultured Coculture Techniques Collagen Colonic Neoplasms / metabolism Colonic Neoplasms / pathology* Culture Media, Conditioned Drug Combinations Enzyme Precursors / metabolism* Female Humans Laminin Mesenchymal Stem Cells / metabolism Mesenchymal Stem Cells / pathology* Proteoglycans Tumor Microenvironment*
IF 3.383
引用数 3
リソース情報
ヒト・動物細胞 UBE6T-7(RCB2157)