Literature DB >> 17312182

Cancer/testis genes in multiple myeloma: expression patterns and prognosis value determined by microarray analysis.

Maud Condomines1, Dirk Hose, Pierre Raynaud, Michael Hundemer, John De Vos, Marion Baudard, Thomas Moehler, Véronique Pantesco, Marion Moos, Jean-François Schved, Jean-François Rossi, Thierry Rème, Hartmut Goldschmidt, Bernard Klein.   

Abstract

Cancer-testis (CT) Ags are expressed in testis and malignant tumors but rarely in nongametogenic tissues. Due to this pattern, they represent attractive targets for cancer vaccination approaches. The aims of the present study are: 1) to assess the expression of CT genes on a pangenomic base in multiple myeloma (MM); 2) to assess the prognosis value of CT gene expression; and 3) to provide selection strategies for CT Ags in clinical vaccination trials. We report the expression pattern of CT genes in purified MM cells (MMC) of 64 patients with newly diagnosed MM and12 patients with monoclonal gammopathy of unknown significance, in normal plasma cell and B cell samples, and in 20 MMC lines. Of the 46 CT genes interrogated by the Affymetrix HG-U133 set arrays, 35 are expressed in the MMC of at least one patient. Of these, 25 are located on chromosome X. The expression of six CT genes is associated with a shorter event-free survival. The MMC of 98% of the patients express at least one CT gene, 86% at least two, and 70% at least three CT genes. By using a set of 10 CT genes including KM-HN-1, MAGE-C1, MAGE-A3/6/12, MAGE-A5, MORC, DDX43, SPACA3, SSX-4, GAGE-1-8, and MAGE-C2, a combination of at least three CT genes-desirable for circumventing tumor escape mechanisms-is obtained in the MMC of 67% of the patients. Provided that the immunogenicity of the products of these 10 CT genes is confirmed, gene expression profiling could be useful in identifying which CT Ags could be used to vaccinate a given patient.

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Year:  2007        PMID: 17312182     DOI: 10.4049/jimmunol.178.5.3307

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  48 in total

1.  Epigenetic modulation of MAGE-A3 antigen expression in multiple myeloma following treatment with the demethylation agent 5-azacitidine and the histone deacetlyase inhibitor MGCD0103.

Authors:  Amberly Moreno-Bost; Susann Szmania; Katie Stone; Tarun Garg; Antje Hoerring; Jackie Szymonifka; John Shaughnessy; Bart Barlogie; H Grant Prentice; Frits van Rhee
Journal:  Cytotherapy       Date:  2010-12-20       Impact factor: 5.414

2.  A panel of cancer-testis genes exhibiting broad-spectrum expression in haematological malignancies.

Authors:  Amanda P Liggins; Seah H Lim; Elizabeth J Soilleux; Karen Pulford; Alison H Banham
Journal:  Cancer Immun       Date:  2010-08-23

3.  The MORC family: new epigenetic regulators of transcription and DNA damage response.

Authors:  Da-Qiang Li; Sujit S Nair; Rakesh Kumar
Journal:  Epigenetics       Date:  2013-05-17       Impact factor: 4.528

Review 4.  Biology and regulation of ectoplasmic specialization, an atypical adherens junction type, in the testis.

Authors:  Elissa W P Wong; Dolores D Mruk; C Yan Cheng
Journal:  Biochim Biophys Acta       Date:  2007-11-19

5.  Epigenetic induction of adaptive immune response in multiple myeloma: sequential azacitidine and lenalidomide generate cancer testis antigen-specific cellular immunity.

Authors:  Amir A Toor; Kyle K Payne; Harold M Chung; Roy T Sabo; Allison F Hazlett; Maciej Kmieciak; Kimberly Sanford; David C Williams; William B Clark; Catherine H Roberts; John M McCarty; Masoud H Manjili
Journal:  Br J Haematol       Date:  2012-07-23       Impact factor: 6.998

6.  Combination immunotherapy after ASCT for multiple myeloma using MAGE-A3/Poly-ICLC immunizations followed by adoptive transfer of vaccine-primed and costimulated autologous T cells.

Authors:  Aaron P Rapoport; Nicole A Aqui; Edward A Stadtmauer; Dan T Vogl; Yin Yan Xu; Michael Kalos; Ling Cai; Hong-Bin Fang; Brendan M Weiss; Ashraf Badros; Saul Yanovich; Gorgun Akpek; Patricia Tsao; Alan Cross; Dean Mann; Sunita Philip; Naseem Kerr; Andrea Brennan; Zhaohui Zheng; Kathleen Ruehle; Todd Milliron; Scott E Strome; Andres M Salazar; Bruce L Levine; Carl H June
Journal:  Clin Cancer Res       Date:  2014-02-11       Impact factor: 12.531

7.  Cancer-testis antigens MAGE-C1/CT7 and MAGE-A3 promote the survival of multiple myeloma cells.

Authors:  Djordje Atanackovic; York Hildebrandt; Adam Jadczak; Yanran Cao; Tim Luetkens; Sabrina Meyer; Sebastian Kobold; Katrin Bartels; Caroline Pabst; Nesrine Lajmi; Maja Gordic; Tanja Stahl; Axel R Zander; Carsten Bokemeyer; Nicolaus Kröger
Journal:  Haematologica       Date:  2009-12-16       Impact factor: 9.941

8.  Increased plasma-immune cytokines throughout the high-dose melphalan-induced lymphodepletion in patients with multiple myeloma: a window for adoptive immunotherapy.

Authors:  Maud Condomines; Jean-Luc Veyrune; Marion Larroque; Philippe Quittet; Pascal Latry; Cécile Lugagne; Catherine Hertogh; Tarik Kanouni; Jean-François Rossi; Bernard Klein
Journal:  J Immunol       Date:  2009-12-04       Impact factor: 5.422

9.  HAGE, a cancer/testis antigen expressed at the protein level in a variety of cancers.

Authors:  Morgan G Mathieu; Adam J Linley; Stephen P Reeder; Cécile Badoual; Eric Tartour; Robert C Rees; Stéphanie E B McArdle
Journal:  Cancer Immun       Date:  2010-01-11

10.  MORC3, a Component of PML Nuclear Bodies, Has a Role in Restricting Herpes Simplex Virus 1 and Human Cytomegalovirus.

Authors:  Elizabeth Sloan; Anne Orr; Roger D Everett
Journal:  J Virol       Date:  2016-09-12       Impact factor: 5.103

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