Back to Search Start Over

Data from Identification of small-molecule inhibitors of autotaxin that inhibit melanoma cell migration and invasion

Authors :
Demetrios T. Braddock
Enrique M. De La Cruz
Raj N. Misra
Hongwen Zhou
William Chozen Chang
Russ Bandle
Amy Ouellette
Lauren P. Saunders
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

Abstract

Autotaxin (ATX) is a prometastatic enzyme initially isolated from the conditioned medium of human melanoma cells that stimulates a myriad of biological activities, including angiogenesis and the promotion of cell growth, survival, and differentiation through the production of lysophosphatidic acid (LPA). ATX increases the aggressiveness and invasiveness of transformed cells, and ATX levels directly correlate with tumor stage and grade in several human malignancies. To study the role of ATX in the pathogenesis of malignant melanoma, we developed antibodies and small-molecule inhibitors against recombinant human protein. Immunohistochemistry of paraffin-embedded human tissue shows that ATX levels are markedly increased in human primary and metastatic melanoma relative to benign nevi. Chemical screens identified several small-molecule inhibitors with binding constants ranging from nanomolar to low micromolar. Cell migration and invasion assays with melanoma cell lines show that ATX markedly stimulates melanoma cell migration and invasion, an effect suppressed by ATX inhibitors. The migratory phenotype can be rescued by the addition of the enzymatic product of ATX, LPA, confirming that the observed inhibition is linked to suppression of LPA production by ATX. Chemical analogues of the inhibitors show structure-activity relationships important for ATX inhibition and indicate pathways for their optimization. These studies suggest that ATX is an approachable molecular target for the rational design of chemotherapeutic agents directed against malignant melanoma. [Mol Cancer Ther 2008;7(10):3352–62]

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....7695bbf481a7f2110929ca7bcf231a57
Full Text :
https://doi.org/10.1158/1535-7163.c.6531218