Andrew Mazar
University of Texas MD Anderson Cancer Center
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Cancer communications | 1991
Naseema Hoosein; Douglas D. Boyd; William Hollas; Andrew Mazar; Jack Henkin; Leland W.K. Chung
We have investigated the role of urokinase (UK) and its cell-surface receptor in determining the invasiveness of prostate cancer cells. Three human cell lines, DU-145, PC-3 and LNCaP, that differ in androgen-responsiveness and growth characteristics, were tested. Analysis of the conditioned medium by an enzyme-linked immunosorbent assay showed secretion of UK by DU-145 (63 ng/mL/10(6) cells/48 hr) and PC-3 (682 ng/mL/10(6) cells/48 hr), but absence of secretion by LNCaP cells. Western blot analysis and enzyme activity assay of the conditioned medium confirmed these results. Scatchard analysis of radioligand binding with acid pretreated cells showed the presence of a single population of high affinity UK receptors on DU-145 cells (93,000 sites/cell, Kd = 0.9 nM) and PC-3 cells (25,000 sites/cell, Kd = 1.0 nM) but not on LNCaP cells. DU-145 and PC-3 cells were found to be highly invasive in in vitro invasion assays: 4.5 +/- 0.5% and 6.5 +/- 0.5%, respectively, of total tumor cells (approximately 2 x 10(5)) had penetrated reconstituted basement membrane (Matrigel) in a 72 hr incubation in serum-free growth medium. Under similar conditions, less than 0.25% LNCaP cells invaded Matrigel. The data indicate that androgen unresponsive, aggressive prostate tumor cells of high metastatic potential, DU-145 and PC-3, secrete UK and display cell-surface UK receptors, fully charged with the protease. Conversely, relatively indolent LNCaP cells of low metastatic potential do not secrete UK nor do they possess its binding sites. UK receptor antagonists, UK 12-32 and UK 6-135, which compete with labeled UK for binding to prostatic cells but do not inhibit cellular proliferation or UK secretion, markedly reduced DU-145 and PC-3 cell invasion (80-85% inhibition), thereby suggesting an important role of receptor-bound UK in prostate tumor cell invasion.
Journal of Biological Chemistry | 1999
Heike Allgayer; Heng Wang; Gary E. Gallick; Andrea Crabtree; Andrew Mazar; Terence R. Jones; Alan J. Kraker; Douglas D. Boyd
Since c-src overexpression increases colonic cell invasiveness and because both Src activity and urokinase receptor protein are elevated in invasive colon cancers, the present study was undertaken: 1) to determine if a constitutively active Src regulates urokinase receptor expression and 2) to identify requiredcis-elements and trans-acting factors. SW480 colon cancer cells transfected with an expression plasmid (c-srcY527F) encoding a constitutively active Src protein manifested increased urokinase receptor gene expression and Src activity. Treatment of thesrc transfectants with a Src-inhibitor (PD173955) reduced urokinase receptor protein levels and laminin degradation. Inasmuch as we recently implicated an upstream region of the urokinase receptor promoter (−152/−135) in constitutive urokinase receptor expression, we determined its role for the induction by src. Whereas the activity of a CAT reporter driven by this region was stimulated by c-srcY527F, the u-PAR promoter mutated at the Sp1-binding motif in the −152/−135 region was not. Nuclear extracts from the srctransfectants demonstrated increased Sp1 binding to region −152/−135 compared with those from SW480 cells. Finally, endogenous urokinase receptor protein amounts in 10 colon cancers and corresponding normal colon correlated with Src specific activity. These data suggest that urokinase receptor gene expression is regulated by Src partly via increased Sp1 binding.
Thrombosis and Haemostasis | 1992
William Hollas; Naseema Hoosein; Leland W.K. Chung; Andrew Mazar; J. Henkin; K. Kariko; E. S. Barnathan; D. Boyd
Archive | 2003
Robert J. Ternansky; Andrew Mazar; Patricia L. Gladstone; D. Coucouvanis; Amy L. Allan; Sean M. O'hare; Mellissa L. P. Price; Steven Robert Pirie-Shepherd; Fernando Donate
Biochemical Journal | 1992
William Hollas; E Soravia; Andrew Mazar; J Henkin; F Blasi; Douglas D. Boyd
Archive | 2005
Andrew Mazar; Steven Pirie-Shepherd; Oscar Betancourt
Archive | 2003
Robert J. Ternansky; Stephanie A. Hopkins; Won Hyung Yoon; Amy L. Allan; Patricia L. Gladstone; Sean M. O'hare; Fernando Donate; Andrew Mazar; Graham Parry
Archive | 2006
Andrew Mazar; Hashem Heiati; Jay Schrier; Ming Li; Scott Harris
Archive | 2003
Keith R. McCrae; Fernando Donate; Jose Juarez; Andrew Mazar
Archive | 2002
Fernando Donate; Scott Harris; Andrew Mazar