Amino Acids Archives - Center for Innovative Technology /cit Integrated ‘omics’ capabilities utilizing state-of-the-art multi-dimensional mass spectrometry and automated high content microscopy Tue, 14 Jan 2020 21:52:20 +0000 en-US hourly 1 https://wordpress.org/?v=5.8 https://cdn.vanderbilt.edu/vu-wp0/wp-content/uploads/sites/166/2019/02/27124736/WholeGear_Transparent-32x32.png Amino Acids Archives - Center for Innovative Technology /cit 32 32 Small Molecule Omics and Cancer Biology /cit/small-molecule-omics-cancer-biology/ Tue, 14 Jan 2020 15:07:10 +0000 /cit/?p=1474 The post Small Molecule Omics and Cancer Biology appeared first on Center for Innovative Technology.

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Small Molecule Omics and Cancer Biology


“Oncometabolites” initiate or sustain cancer tumor growth and metastasis. The term oncometabolite was first used for 2- hydroxyglutarate, as it was found to activate hypoxiainduced, oncogenic pathways and affect DNA methylation, specifically in gliomas and acute myeloid leukemia.1 Understanding metabolic factors that enable cancer cell proliferation and finding reprogrammed metabolic pathways has led to several other oncometabolic targets (or metabolites) to be discovered.2-4 Of the metabolites involved in cancer biology, lipids have not only been shown to be involved in intracellular signaling of cancer cells, but de novo lipid synthesis has been found to be a key metabolic activity in cancer cell growth and survival and targeting lipid metabolic pathways has been shown to affect chemosensitivity.3,5 Previous data has also shown that branched-chain amino acid (BCAA) can serve as metabolic substrates in several types of cancer.6



The CIT has developed a conformational lipid atlas containing highly-accurate structural measurements in support of high-confidence lipidomic annotations. This lipid atlas is available in the CIT to help us and our collaborators better understand the role of lipids in cancer. Please contact us if you are interested in performing analyses to determine which lipids may be contributing to or reprogramming cancer cell proliferation in your specific biological system.

In addition, the CIT has also developed a qualitative amino acids MS-based assay that can be applied to diverse biological sample types (e.g. plasma, serum, urine, cells or tissue) without the need for tagging. These analyses are performed with high precision (≤ 5 ppm) and low variability (≤ 10% RSD).



References:

  1. Wishart DS, Emerging applications of metabolomics in drug discovery and precision medicine, Nat Rev Drug Discov 2016, 15, 473-484.
  2. Luengo A et al., Targeting Metabolism for Cancer Therapy, Cell Chem Biol 2017, 24, 1161-1180.
  3. Röhrig F et al., The multifaceted roles of fatty acid synthesis in cancer, Nat Rev Cancer 2016, 16, 732-749.
  4. Adams JL et al., Big opportunities for small molecules in immuno-oncology, Nat Rev Drug Discov 2015, 14, 603-622.
  5. Beloribi-Djefaflia S, Vasseur S, Guillaumond F, Lipid metabolic reprogramming in cancer cells, Oncogenesis 2016, 5, e189.
  6. Mayers JR, et al., Tissue of origin dictates branched-chain amino acid metabolism in mutant Kras-driven cancers, Science 2016, 353, 1161-1165.

Read more…

Collision Cross Section Data
Metabolite Annotations
Katrina Leaptrot, Post Doc in the McLean Lab
Large Metabolomics Studies
High-Throughput Multi-Omic Analyses
qualitative amino acid panel

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Qualitative Amino Acid Panel /cit/qualitative-amino-acid-panels/ Mon, 21 Jan 2019 13:12:39 +0000 /cit/?p=998 The post Qualitative Amino Acid Panel appeared first on Center for Innovative Technology.

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New Service:

Qualitative Amino Acid Panel


Amino acids, often referred to as the building blocks of proteins, are compounds that play many critical roles in the body. They are needed for vital processes like the building of proteins and biosynthesis of hormones and neurotransmitters. In addition, they can be predictors of outcome in heart failure, hepatobiliary and some cancers, as well as markers for prediabetes (glycine), type 2 diabetes (valine, leucine, isoleucine, phenylalanine and tyrosine) or kidney function (tryptophan-kynurenine ratio).

The CIT has developed a 20 amino acids MS-based assay that can be applied to diverse biological sample types (e.g. plasma, serum, urine, cells or tissue). These analyses are performed with high precision (≤ 5 ppm) and low variability (≤ 10% RSD).

See image below for an extracted ion chromatogram of individual amino acids.


qualitative amino acid panel


Read more…

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