<body><script type="text/javascript"> function setAttributeOnload(object, attribute, val) { if(window.addEventListener) { window.addEventListener("load", function(){ object[attribute] = val; }, false); } else { window.attachEvent('onload', function(){ object[attribute] = val; }); } } </script> <iframe src="http://www.blogger.com/navbar.g?targetBlogID=4804194352411650607&amp;blogName=Andrographis+News&amp;publishMode=PUBLISH_MODE_HOSTED&amp;navbarType=BLUE&amp;layoutType=CLASSIC&amp;searchRoot=http://andrographis.thesciencenet.com/search&amp;blogLocale=en_US&amp;homepageUrl=http://andrographis.thesciencenet.com/&amp;vt=5586087650055720741" marginwidth="0" marginheight="0" scrolling="no" frameborder="0" height="30px" width="100%" id="navbar-iframe" allowtransparency="true" title="Blogger Navigation and Search"></iframe> <div></div>

A Small-Molecule Furin Inhibitor Inhibits Cancer Cell Motility and Invasiveness

Sunday, August 31, 2008

Furin, a member the proprotein convertase (PC) family, processes inactive precursor proteins to functional proteins within the Golgi/trans-Golgi network secretory pathway. Furin and other PC family members (furin/PCs) activate proteins vital to proper physiological functioning, including growth factors and hormones, receptors, plasma proteins, and matrix metalloproteases (MMPs). Additionally, the expression and activity of furin/PC are necessary for processing substrates important for cell transformation and tumor progression, metastasis, and angiogenesis. Furin processing of the remodeling protease membrane type-1 matrix metalloproteinase (MT1-MMP) enhances cellular motility and invasiveness, contributing to aggression and metastatic potential cancer cells. Whereas overexpression and activity of furin/PC exacerbate the cancer phenotype, inhibition of its activity decreases or nullifies furin/PC-mediated effects, and thus, inhibition of furin may be a viable route to cancer therapy. Recently, we identified a small-molecule inhibitor of furin, named B3, by high-throughput screening with a Ki and IC50 of 12µM. Here, we show that this cell-permeable, small-molecule compound inhibits furin-mediated cleavage of proMT1-MMP, resulting in decreased MMP-2 activation and cell motility in CHO cells expressing proMT1-MMP. Additionally, this molecule inhibited proMT1-MMP processing, complete MMP-2 maturation, and invasiveness of human fibrosarcoma cells (HT1080).

Neoplasia. 2008 April; 10(4): 363–370.
 

Bookmark this post to del.icio.us Digg this post! Bookmark this post to Yahoo! My Web Bookmark this post to Furl

Recent Posts