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PMID: 23259914 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

A chromosome-centric human proteome project (C-HPP) to characterize the sets of proteins encoded in chromosome 17.

Journal of proteome research ·Vol. 12 ·No. 1 ·2013-01-04 ·Pages 45-57

Liu S, Im H, Bairoch A, Cristofanilli M, Chen R, Deutsch EW, Dalton S, Fenyo D, Fanayan S, Gates C, Gaudet P, Hincapie M, Hanash S, Kim H, Jeong SK, Lundberg E, Mias G, Menon R, Mu Z, Nice E, Paik YK, Uhlen M, Wells L, Wu SL, Yan F, Zhang F, Zhang Y, Snyder M, Omenn GS, Beavis RC, Hancock WS

Abstract

We report progress assembling the parts list for chromosome 17 and illustrate the various processes that we have developed to integrate available data from diverse genomic and proteomic knowledge bases. As primary resources, we have used GPMDB, neXtProt, PeptideAtlas, Human Protein Atlas (HPA), and GeneCards. All sites share the common resource of Ensembl for the genome modeling information. We have defined the chromosome 17 parts list with the following information: 1169 protein-coding genes, the numbers of proteins confidently identified by various experimental approaches as documented in GPMDB, neXtProt, PeptideAtlas, and HPA, examples of typical data sets obtained by RNASeq and proteomic studies of epithelial derived tumor cell lines (disease proteome) and a normal proteome (peripheral mononuclear cells), reported evidence of post-translational modifications, and examples of alternative splice variants (ASVs). We have constructed a list of the 59 "missing" proteins as well as 201 proteins that have inconclusive mass spectrometric (MS) identifications. In this report we have defined a process to establish a baseline for the incorporation of new evidence on protein identification and characterization as well as related information from transcriptome analyses. This initial list of "missing" proteins that will guide the selection of appropriate samples for discovery studies as well as antibody reagents. Also we have illustrated the significant diversity of protein variants (including post-translational modifications, PTMs) using regions on chromosome 17 that contain important oncogenes. We emphasize the need for mandated deposition of proteomics data in public databases, the further development of improved PTM, ASV, and single nucleotide variant (SNV) databases, and the construction of Web sites that can integrate and regularly update such information. In addition, we describe the distribution of both clustered and scattered sets of protein families on the chromosome. Since chromosome 17 is rich in cancer-associated genes, we have focused the clustering of cancer-associated genes in such genomic regions and have used the ERBB2 amplicon as an example of the value of a proteogenomic approach in which one integrates transcriptomic with proteomic information and captures evidence of coexpression through coordinated regulation.

MeSH Terms
Amino Acid Sequence Chromosomes, Human, Pair 17/genetics,metabolism Databases, Protein Gene Expression Genome, Human Human Genome Project Humans Proteins/classification,genetics,metabolism Proteomics
Chemicals
Proteins
Authors & Affiliations
31 authors, click to expand affiliations / ORCID
Liu Suli
Barnett Institute and Department of Chemistry and Chemical Biology, Northeastern University, Boston, Massachusetts 02115, United States.
Im Hogune
Bairoch Amos
Cristofanilli Massimo
Chen Rui
Deutsch Eric W
Dalton Stephen
Fenyo David
Fanayan Susan
Gates Chris
Gaudet Pascale
Hincapie Marina
Hanash Samir
Kim Hoguen
Jeong Seul-Ki
Lundberg Emma
Mias George
Menon Rajasree
Mu Zhaomei
Nice Edouard
Paik Young-Ki
Uhlen Mathias
Wells Lance
Wu Shiaw-Lin
Yan Fangfei
Zhang Fan
Zhang Yue
Snyder Michael
Omenn Gilbert S
Beavis Ronald C
Hancock William S
References (47)
47 references, click to expand
  1. Activation of multiple cancer-associated genes at the ERBB2 amplicon in breast cancer.
    Endocr Relat Cancer. 2006 Mar;13(1):39-49 PMID: 16601278
  2. New amplified and highly expressed genes discovered in the ERBB2 amplicon in breast cancer by cDNA microarrays.
    Cancer Res. 2001 Nov 15;61(22):8235-40 PMID: 11719455
  3. UniPep--a database for human N-linked glycosites: a resource for biomarker discovery.
    Genome Biol. 2006;7(8):R73 PMID: 16901351
  4. Oncogene amplification in solid tumors.
    Semin Cancer Biol. 1999 Aug;9(4):319-25 PMID: 10448118
  5. Differential expression of NDF/neuregulin receptors ErbB-3 and ErbB-4 and involvement in inhibition of neuronal differentiation.
    Oncogene. 1997 Dec 4;15(23):2803-15 PMID: 9419971
  6. Genomic and expression profiling of chromosome 17 in breast cancer reveals complex patterns of alterations and novel candidate genes.
    Cancer Res. 2004 Sep 15;64(18):6453-60 PMID: 15374954
  7. Two distinct amplified regions at 17q11-q21 involved in human primary breast cancer.
    Cancer Res. 1996 Sep 1;56(17):3886-90 PMID: 8752152
  8. The proteome browser web portal.
    J Proteome Res. 2013 Jan 4;12(1):172-8 PMID: 23215242
  9. ErbB-2, the preferred heterodimerization partner of all ErbB receptors, is a mediator of lateral signaling.
    EMBO J. 1997 Apr 1;16(7):1647-55 PMID: 9130710
  10. ONCOMINE: a cancer microarray database and integrated data-mining platform.
    Neoplasia. 2004 Jan-Feb;6(1):1-6 PMID: 15068665
  11. The PeptideAtlas project.
    Nucleic Acids Res. 2006 Jan 1;34(Database issue):D655-8 PMID: 16381952
  12. Specificity within the EGF family/ErbB receptor family signaling network.
    Bioessays. 1998 Jan;20(1):41-8 PMID: 9504046
  13. Genome-wide identification of chromosomal regions of increased tumor expression by transcriptome analysis.
    Cancer Res. 2003 Sep 15;63(18):5781-4 PMID: 14522899
  14. Manifestation, mechanisms and mysteries of gene amplifications.
    Cancer Lett. 2006 Jan 28;232(1):79-89 PMID: 16288831
  15. neXtProt: a knowledge platform for human proteins.
    Nucleic Acids Res. 2012 Jan;40(Database issue):D76-83 PMID: 22139911
  16. Amplification and expression of genes from the 17q11 approximately q12 amplicon in breast cancer cells.
    Cancer Genet Cytogenet. 2002 Jul 1;136(1):43-7 PMID: 12165450
  17. Evolutionary origin and maintenance of coexpressed gene clusters in mammals.
    Mol Biol Evol. 2006 Sep;23(9):1715-23 PMID: 16757654
  18. The Chromosome-Centric Human Proteome Project for cataloging proteins encoded in the genome.
    Nat Biotechnol. 2012 Mar 07;30(3):221-3 PMID: 22398612
  19. An RNA interference screen identifies metabolic regulators NR1D1 and PBP as novel survival factors for breast cancer cells with the ERBB2 signature.
    Cancer Res. 2010 Mar 1;70(5):1783-92 PMID: 20160030
  20. DNA topoisomerase IIalpha (TOP2A) inhibitors up-regulate fatty acid synthase gene expression in SK-Br3 breast cancer cells: in vitro evidence for a 'functional amplicon' involving FAS, Her-2/neu and TOP2A genes.
    Int J Mol Med. 2006 Dec;18(6):1081-7 PMID: 17089011
  21. DNA sequence of human chromosome 17 and analysis of rearrangement in the human lineage.
    Nature. 2006 Apr 20;440(7087):1045-9 PMID: 16625196
  22. GeneCards Version 3: the human gene integrator.
    Database (Oxford). 2010 Aug 05;2010:baq020 PMID: 20689021
  23. Detection and mapping of amplified DNA sequences in breast cancer by comparative genomic hybridization.
    Proc Natl Acad Sci U S A. 1994 Mar 15;91(6):2156-60 PMID: 8134364
  24. Proteomics, human proteome project, and chromosomes.
    J Proteome Res. 2011 Jan 7;10(1):210 PMID: 21114295
  25. Overexpression of ErbB2 in cancer and ErbB2-targeting strategies.
    Oncogene. 2000 Dec 11;19(53):6115-21 PMID: 11156524
  26. Identification of four novel human genes amplified and overexpressed in breast carcinoma and localized to the q11-q21.3 region of chromosome 17.
    Genomics. 1995 Aug 10;28(3):367-76 PMID: 7490069
  27. Protein kinase C-dependent control of Bcl-x alternative splicing.
    Mol Cell Biol. 2007 Dec;27(24):8431-41 PMID: 17923691
  28. Combined cDNA array comparative genomic hybridization and serial analysis of gene expression analysis of breast tumor progression.
    Cancer Res. 2006 Apr 15;66(8):4065-78 PMID: 16618726
  29. TIAF1 and p53 functionally interact in mediating apoptosis and silencing of TIAF1 abolishes nuclear translocation of serine 15-phosphorylated p53.
    DNA Cell Biol. 2004 Jan;23(1):67-74 PMID: 14965474
  30. Rat liver membrane glycoproteome: enrichment by phase partitioning and glycoprotein capture.
    J Proteome Res. 2009 Feb;8(2):770-81 PMID: 19125615
  31. Mediator subunits MED1 and MED24 cooperatively contribute to pubertal mammary gland development and growth of breast carcinoma cells.
    Mol Cell Biol. 2012 Apr;32(8):1483-95 PMID: 22331469
  32. The basic biology of HER2.
    Ann Oncol. 2001;12 Suppl 1:S3-8 PMID: 11521719
  33. The landscape of somatic copy-number alteration across human cancers.
    Nature. 2010 Feb 18;463(7283):899-905 PMID: 20164920
  34. A hierarchical network of interreceptor interactions determines signal transduction by Neu differentiation factor/neuregulin and epidermal growth factor.
    Mol Cell Biol. 1996 Oct;16(10):5276-87 PMID: 8816440
  35. Reorganizing the protein space at the Universal Protein Resource (UniProt).
    Nucleic Acids Res. 2012 Jan;40(Database issue):D71-5 PMID: 22102590
  36. Gene expression profiling detects gene amplification and differentiates tumor types in breast cancer.
    Cancer Res. 2003 May 1;63(9):2194-9 PMID: 12727839
  37. The role of chromatin structure in regulating the expression of clustered genes.
    Nat Rev Genet. 2005 Oct;6(10):775-81 PMID: 16160692
  38. The PeptideAtlas Project.
    Methods Mol Biol. 2010;604:285-96 PMID: 20013378
  39. Studies by DNA-RNA hybridization of transcriptional diversity in human brain.
    J Neurochem. 1973 Apr;20(4):1063-73 PMID: 4697869
  40. Evolutionary recombination hotspot around GSDML-GSDM locus is closely linked to the oncogenomic recombination hotspot around the PPP1R1B-ERBB2-GRB7 amplicon.
    Int J Oncol. 2004 Apr;24(4):757-63 PMID: 15010812
  41. Overexpression of caspase-3s splice variant in locally advanced breast carcinoma is associated with poor response to neoadjuvant chemotherapy.
    Clin Cancer Res. 2006 Oct 1;12(19):5794-800 PMID: 17020986
  42. Genome profiling of ERBB2-amplified breast cancers.
    BMC Cancer. 2010 Oct 08;10:539 PMID: 20932292
  43. Septin 9 isoform expression, localization and epigenetic changes during human and mouse breast cancer progression.
    Breast Cancer Res. 2011 Aug 10;13(4):R76 PMID: 21831286
  44. The proteasome: a novel target for cancer chemotherapy.
    Leukemia. 2002 Apr;16(4):433-43 PMID: 11960320
  45. Comparative proteomic analysis of eleven common cell lines reveals ubiquitous but varying expression of most proteins.
    Mol Cell Proteomics. 2012 Mar;11(3):M111.014050 PMID: 22278370
  46. Personal omics profiling reveals dynamic molecular and medical phenotypes.
    Cell. 2012 Mar 16;148(6):1293-307 PMID: 22424236
  47. Open source system for analyzing, validating, and storing protein identification data.
    J Proteome Res. 2004 Nov-Dec;3(6):1234-42 PMID: 15595733
Article Info
Journal
Journal of proteome research
Abbr.
J Proteome Res
ISSN
1535-3907
Published
2013-01-04
Epub
2012-00-21
Pages
45-57
Language
English
Region
United States
NLM ID
101128775
PMCID
PMC4142220
Subset
IM
Grants
NIEHS NIH HHS · U54ES017885 · United States
RMOD NIH HHS · RM-08-029 · United States
NIGMS NIH HHS · R01 GM087221 · United States
NCI NIH HHS · U01 CA128427 · United States
NIGMS NIH HHS · P50 GM076547 · United States
NIEHS NIH HHS · P30 ES017885 · United States
NIGMS NIH HHS · R41 GM103362 · United States
NIDA NIH HHS · U54 DA021519 · United States
NCRR NIH HHS · UL1 RR024986 · United States
NIDA NIH HHS · U54DA021519 · United States
NCI NIH HHS · U01-CA128427 · United States
NIGMS NIH HHS · 2P50 GM076547 · United States
NIGMS NIH HHS · P41 GM103490 · United States
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