Literature DB >> 9816319

Prostate-specific membrane antigen: a novel folate hydrolase in human prostatic carcinoma cells.

J T Pinto1, B P Suffoletto, T M Berzin, C H Qiao, S Lin, W P Tong, F May, B Mukherjee, W D Heston.   

Abstract

A novel monoclonal antibody has been developed that reacts strongly with human prostatic cancer, especially tumors of high grade. This antibody (7E11C-5) is currently in Phase 3 trials as an imaging agent for metastatic disease. We have cloned the gene that encodes the antigen that is recognized by the 7E11C-5 monoclonal antibody and have designated this unique protein prostate-specific membrane (PSM) antigen. PSM antigen is a putative class II transmembranous glycoprotein exhibiting a molecular size of Mr 94,000. Functionally, class II membrane proteins serve as transport or binding proteins or have hydrolytic activity. Preliminary studies have demonstrated binding of pteroylmonoglutamate (folate) to membrane fractions that also cross-reacted with the PSM monoclonal antibody. We observed substantial carboxypeptidase activity as folate hydrolase associated with PSM antigen. The purpose of our study was to demonstrate that human prostatic carcinoma cells expressing PSM antigen exhibit folate hydrolase activity using methotrexate triglutamate (MTXGlu3) and pteroylpentaglutamate (PteGlu5) as substrates. Isolated membrane fractions from four human prostate cancer cell lines (LNCaP, PC-3, TSU-Prl, and Duke-145) were examined for folate hydrolase activity using capillary electrophoresis. After timed incubations at various pH ranges and in the presence and absence of thiol reagents, separation of pteroyl(glutamate)n derivatives was achieved with an electrolyte of sodium borate and SDS, while absorbance was monitored at 300 nm. The results demonstrate clearly that LNCaP cells, which highly express PSM, hydrolyze gamma-glutamyl linkages of MTXGlu3. The membrane-bound enzyme is an exopeptidase, because it progressively liberates glutamates from MTXGlu3 and PteGlu5 with accumulation of MTX and PteGlu1, respectively. The semipurified enzyme has a broad activity from pH 2.5 to 9.5 and exhibits activity maxima at pH 5 and 8. Enzymatic activity is maintained in the presence of reduced glutathione, homocysteine, and p-hydroxymercuribenzoate (0.05-0.5 mm) but was inhibited weakly by DTT (>/=0.2 mm). By contrast to LNCaP cell membranes, membranes isolated from other human prostate adenocarcinoma cells (PC-3, Duke-145, and TSU-Pr1) did not exhibit comparable hydrolase activity, nor did they react with 7E11-C5 monoclonal antibody. After transfection of PC-3 cells with a full-length 2.65-kb PSM cDNA subcloned into a pREP7 eukaryotic expression vector, non-PSM antigen-expressing PC-3 cells developed immunoreactivity to 7E11-C5 monoclonal antibody and demonstrated folate hydrolase activities and optimum pH activity profiles identical to those of LNCaP cells. The membrane-bound enzymes from both LNCaP- and PC-3-transfected cells also have a capacity to hydrolyze an alpha-linked glutamyl moiety from N-acetyl-alpha-aspartylglutamate. We have identified that PSM antigen is a pteroyl poly-gamma-glutamyl carboxypeptidase (folate hydrolase) and is expressed strongly in human prostate cancer. Cancer cells that express this enzyme are resistant to methotrexate therapy. Those developing future therapeutic strategies in the treatment of prostate cancer that utilize folate antagonists need to consider this mechanism of resistance.

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Year:  1996        PMID: 9816319

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  98 in total

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Journal:  J Med Chem       Date:  2015-12-16       Impact factor: 7.446

Review 2.  Opposing roles of folate in prostate cancer.

Authors:  Kevin J Rycyna; Dean J Bacich; Denise S O'Keefe
Journal:  Urology       Date:  2013-08-28       Impact factor: 2.649

3.  Spacer length effects on in vitro imaging and surface accessibility of fluorescent inhibitors of prostate specific membrane antigen.

Authors:  Tiancheng Liu; Jessie R Nedrow-Byers; Mark R Hopkins; Clifford E Berkman
Journal:  Bioorg Med Chem Lett       Date:  2011-10-04       Impact factor: 2.823

4.  Heterogeneity of prostate-specific membrane antigen (PSMA) expression in prostate carcinoma with distant metastasis.

Authors:  Sebastian Mannweiler; Peter Amersdorfer; Slave Trajanoski; Jonathan A Terrett; David King; Gabor Mehes
Journal:  Pathol Oncol Res       Date:  2008-09-18       Impact factor: 3.201

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6.  Prostate-specific membrane antigen regulates angiogenesis by modulating integrin signal transduction.

Authors:  Rebecca E Conway; Nenad Petrovic; Zhong Li; Warren Heston; Dianqing Wu; Linda H Shapiro
Journal:  Mol Cell Biol       Date:  2006-07       Impact factor: 4.272

7.  Substrate specificity of prostate-specific membrane antigen.

Authors:  Marc O Anderson; Lisa Y Wu; Nicholas M Santiago; Jamie M Moser; Jennifer A Rowley; Erin S D Bolstad; Clifford E Berkman
Journal:  Bioorg Med Chem       Date:  2007-08-11       Impact factor: 3.641

8.  Prostate-targeted mTOR-shRNA inhibit prostate cancer cell growth in human tumor xenografts.

Authors:  Yue-Feng Du; Qing-Zhi Long; Ying Shi; Xiao-Gang Liu; Xu-Dong Li; Jin Zeng; Yong-Guang Gong; Xin-Yang Wang; Da-Lin He
Journal:  Int J Clin Exp Med       Date:  2013-01-26

Review 9.  The therapeutic and diagnostic potential of the prostate specific membrane antigen/glutamate carboxypeptidase II (PSMA/GCPII) in cancer and neurological disease.

Authors:  James C Evans; Meenakshi Malhotra; John F Cryan; Caitriona M O'Driscoll
Journal:  Br J Pharmacol       Date:  2016-09-23       Impact factor: 8.739

10.  Serum glutamate levels correlate with Gleason score and glutamate blockade decreases proliferation, migration, and invasion and induces apoptosis in prostate cancer cells.

Authors:  Shahriar Koochekpour; Sunipa Majumdar; Gissou Azabdaftari; Kristopher Attwood; Ray Scioneaux; Dhatchayini Subramani; Charles Manhardt; Giovanni D Lorusso; Stacey S Willard; Hillary Thompson; Mojgan Shourideh; Katayoon Rezaei; Oliver Sartor; James L Mohler; Robert L Vessella
Journal:  Clin Cancer Res       Date:  2012-10-16       Impact factor: 12.531

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