The ability to simultaneously identify, quantitate, and analyze a large mixture of proteins between different functional states of cells and tissues is the ultimate goal of proteomics, and has the potential to identify signaling pathways and complex protein networks important in cancer biology. Because of the extremely diverse nature of protein expression through post-translational modifications (PTM) and RNA processing, and the wide dynamic range of expression, no single platform exists for quantitative differential analysis of global protein expression. This Shared Resource will therefore integrate three facilities and technological approaches to create a comprehensive proteomic effort by the BCM Cancer Center: 1) protein chemistry/ MS-based proteomics for identification and analysis (PTM-postranslational analysis) of individual proteins;2) expression of recombinant proteins in the baculovirus system and as monoconal antibodies (MAbs) from B-cell hybridomas, and 3) isolation, identification, and MS-based analysis of large protein complexes or """"""""interactomes"""""""". The Protein Chemistry/MS-Based Proteomics component, under the direction of Dr. Richard Cook, has existed as a core facility at Baylor since 1989. The Recombinant Protein Expression components were started as new services in September of 2005 with the recruitment of Dr. Dean Edwards to Baylor. The interactome, or Pathway Discovery, component will be started as a new service under the direction of Dr. Jun Qin, a recognized leader in immuno-isolation and identification of regulatory protein complexes by MS. In addtion to directing the Baculovirus/MAb facility, Dr. Edwards will serve as the overall Leader of the Shared Resource to integrate the scientiific and administrative interactions among these three components. The Protein Chemistry/MS-Based Proteomic facility is a successful and cost effective resource that provided services for 67 Baylor investigators in 2005, of which 40% were Cancer Center members. The Baculovirus/MAb facility has only been in operation since September of 2005 and has already provided services for 11 investigators and has six projects scheduled. Global differential protein expression profiling will be developed as a future service by combining separation of proteins by two-dimensional gel electrophoresis or liquid chromatography coupled with high-through put MS. Additionally, we plan to develop multiplex immunoassay systems based on Luminex flow cytometric fluorescence bead technology.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA125123-03
Application #
7900425
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2009-07-01
Budget End
2010-06-30
Support Year
3
Fiscal Year
2009
Total Cost
$138,140
Indirect Cost
Name
Baylor College of Medicine
Department
Type
DUNS #
051113330
City
Houston
State
TX
Country
United States
Zip Code
77030
Xing, Zhen; Zhang, Yanyan; Liang, Ke et al. (2018) Expression of Long Noncoding RNA YIYA Promotes Glycolysis in Breast Cancer. Cancer Res 78:4524-4532
Creighton, Chad J (2018) The clinical applications of The Cancer Genome Atlas project for bladder cancer. Expert Rev Anticancer Ther 18:973-980
Guarducci, Cristina; Bonechi, Martina; Benelli, Matteo et al. (2018) Cyclin E1 and Rb modulation as common events at time of resistance to palbociclib in hormone receptor-positive breast cancer. NPJ Breast Cancer 4:38
Byrd, Tiara T; Fousek, Kristen; Pignata, Antonella et al. (2018) TEM8/ANTXR1-Specific CAR T Cells as a Targeted Therapy for Triple-Negative Breast Cancer. Cancer Res 78:489-500
Kho, Jordan; Tian, Xiaoyu; Wong, Wing-Tak et al. (2018) Argininosuccinate Lyase Deficiency Causes an Endothelial-Dependent Form of Hypertension. Am J Hum Genet 103:276-287
Chiang, Angie C A; Fowler, Stephanie W; Savjani, Ricky R et al. (2018) Combination anti-A? treatment maximizes cognitive recovery and rebalances mTOR signaling in APP mice. J Exp Med 215:1349-1364
Szwarc, Maria M; Hai, Lan; Gibbons, William E et al. (2018) Retinoid signaling controlled by SRC-2 in decidualization revealed by transcriptomics Reproduction 156:387-395
Nguyen, Tuan M; Kabotyanski, Elena B; Dou, Yongchao et al. (2018) FGFR1-Activated Translation of WNT Pathway Components with Structured 5' UTRs Is Vulnerable to Inhibition of EIF4A-Dependent Translation Initiation. Cancer Res 78:4229-4240
Grzeskowiak, Caitlin L; Kundu, Samrat T; Mo, Xiulei et al. (2018) In vivo screening identifies GATAD2B as a metastasis driver in KRAS-driven lung cancer. Nat Commun 9:2732
Liu, Yanhong; O'Brien, Jacqueline L; Ajami, Nadim J et al. (2018) Lung tissue microbial profile in lung cancer is distinct from emphysema. Am J Cancer Res 8:1775-1787

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