Literature DB >> 9865724

Serial analysis of gene expression in non-small cell lung cancer.

K Hibi1, Q Liu, G A Beaudry, S L Madden, W H Westra, S L Wehage, S C Yang, R F Heitmiller, A H Bertelsen, D Sidransky, J Jen.   

Abstract

We used the serial analysis of gene expression (SAGE) method to systematically analyze transcripts present in non-small cell lung cancer. Over 226,000 SAGE tags were sequence analyzed from two independent primary lung cancers and two normal human bronchial/tracheal epithelial cell cultures. A total of 226,000 SAGE tags were sequence identified, representing 43,254 unique transcripts. Comparison of the tags present in the tumor with those identified in the normal tissue revealed 175 transcript tags that were overrepresented in the normal tissue and 142 tags that were overexpressed in the tumor by 10-fold or more. Northern hybridization was performed on 15 of the most abundantly expressed tags identified in the tumors. These tags were derived from either a known gene or a matched expressed sequence tag clone. The transcripts for 3 of the 15 genes, PGP 9.5, B-myb, and human mutT, were abundantly expressed in primary lung cancers (10 of 18, 15 of 18, and 6 of 12 tumors, respectively). In contrast, the presence of PGP9.5 and B-myb was much less frequent in primary tumors derived from other tissue origins. These results suggest that at least a portion of the transcripts identified by SAGE are frequently associated with lung cancer, and that their overexpression may contribute to lung tumorigenesis. The identification and further characterization of genes generated by SAGE should provide potential new targets for the diagnosis, prognosis, and therapy of lung cancer.

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Year:  1998        PMID: 9865724

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  42 in total

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2.  Generation of longer cDNA fragments from serial analysis of gene expression tags for gene identification.

Authors:  J J Chen; J D Rowley; S M Wang
Journal:  Proc Natl Acad Sci U S A       Date:  2000-01-04       Impact factor: 11.205

3.  CpG methylation of ubiquitin carboxyl-terminal hydrolase 1 (UCHL1) and P53 mutation pattern in sporadic colorectal cancer.

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Journal:  Tumour Biol       Date:  2015-08-28

4.  Structural basis for conformational plasticity of the Parkinson's disease-associated ubiquitin hydrolase UCH-L1.

Authors:  Chittaranjan Das; Quyen Q Hoang; Cheryl A Kreinbring; Sarah J Luchansky; Robin K Meray; Soumya S Ray; Peter T Lansbury; Dagmar Ringe; Gregory A Petsko
Journal:  Proc Natl Acad Sci U S A       Date:  2006-03-13       Impact factor: 11.205

5.  The co-crystal structure of ubiquitin carboxy-terminal hydrolase L1 (UCHL1) with a tripeptide fluoromethyl ketone (Z-VAE(OMe)-FMK).

Authors:  Christopher W Davies; Joseph Chaney; Gregory Korbel; Dagmar Ringe; Gregory A Petsko; Hidde Ploegh; Chittaranjan Das
Journal:  Bioorg Med Chem Lett       Date:  2012-05-04       Impact factor: 2.823

6.  Molecular characteristics of non-small cell lung cancer.

Authors:  M Nacht; T Dracheva; Y Gao; T Fujii; Y Chen; A Player; V Akmaev; B Cook; M Dufault; M Zhang; W Zhang; M Guo; J Curran; S Han; D Sidransky; K Buetow; S L Madden; J Jen
Journal:  Proc Natl Acad Sci U S A       Date:  2001-12-18       Impact factor: 11.205

7.  Ubiquitin vinyl methyl ester binding orients the misaligned active site of the ubiquitin hydrolase UCHL1 into productive conformation.

Authors:  David A Boudreaux; Tushar K Maiti; Christopher W Davies; Chittaranjan Das
Journal:  Proc Natl Acad Sci U S A       Date:  2010-05-03       Impact factor: 11.205

8.  Upregulation of MMP-2 by HMGA1 promotes transformation in undifferentiated, large-cell lung cancer.

Authors:  Joelle Hillion; Lisa J Wood; Mita Mukherjee; Raka Bhattacharya; Francescopaolo Di Cello; Jeanne Kowalski; Ossama Elbahloul; Jodi Segal; John Poirier; Charles M Rudin; Surajit Dhara; Amy Belton; Biju Joseph; Stanley Zucker; Linda M S Resar
Journal:  Mol Cancer Res       Date:  2009-11-10       Impact factor: 5.852

9.  Multifarious proteomic signatures and regional heterogeneity in glioblastomas.

Authors:  Chul-Kee Park; Ji Hye Jung; Sung-Hye Park; Hee-Won Jung; Byung-Kyu Cho
Journal:  J Neurooncol       Date:  2009-02-15       Impact factor: 4.130

10.  Epigenetic control of the ubiquitin carboxyl terminal hydrolase 1 in renal cell carcinoma.

Authors:  Barbara Seliger; Diana Handke; Elisabeth Schabel; Juergen Bukur; Rudolf Lichtenfels; Reinhard Dammann
Journal:  J Transl Med       Date:  2009-10-26       Impact factor: 5.531

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