Summary of Study ST004416

This data is available at the NIH Common Fund's National Metabolomics Data Repository (NMDR) website, the Metabolomics Workbench, https://www.metabolomicsworkbench.org, where it has been assigned Project ID PR002390. The data can be accessed directly via it's Project DOI: 10.21228/M8Q250 This work is supported by NIH grant, U2C- DK119886.

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This study contains a large results data set and is not available in the mwTab file. It is only available for download via FTP as data file(s) here.

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Study IDST004416
Study TitlePolar metabolite profiling of BCS-treated SEM cells with or without inosine and uridine supplementation
Study SummaryTo investigate whether the effects of bathocuproinedisulfonic acid (BCS) treatment (a copper chelator) on steady state metabolite levels can be rescued by supplementation with inosine and uridine, SEM cells were treated for 14 days with vehicle or 50 μM BCS, and vehicle or 100uM inosine/100uM uridine. Cells were seeded at 0.125-0.25 million/mL and counted and passaged every two/three days. This experiment revealed that inosine and uridine supplementation significantly rescues levels of nucleotides.
Institute
Boston Childrens Hospital
Last NameWong
First NameAlan
Address300 Longwood Avenue
Emailalan.wong@childrens.harvard.edu
Phone(617) 355-7433
Submit Date2025-12-03
Num Groups4
Raw Data AvailableYes
Raw Data File Type(s)mzML, raw(Thermo)
Analysis Type DetailLC-MS
Release Date2025-12-22
Release Version1
Alan Wong Alan Wong
https://dx.doi.org/10.21228/M8Q250
ftp://www.metabolomicsworkbench.org/Studies/ application/zip

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Project:

Project ID:PR002390
Project DOI:doi: 10.21228/M8Q250
Project Title:In vivo CRISPR screen identifies copper metabolism as a vulnerability in acute lymphoblastic leukemia
Project Summary:The nutrient-sparse cerebrospinal fluid (CSF) poses a significant challenge to spreading cancer cells. Despite this challenge, leukemia often spreads to the CSF and represents a significant clinical complication. To uncover nutritional dependencies of leukemia cells in the CSF that could be targeted therapeutically, we conducted an in vivo targeted CRISPR screen in a xenograft model of leukemia. We found that SLC31A1, the primary cell surface copper importer, is a genetic dependency of leukemia in both the central nervous system as well as in the hematopoietic organs. Perturbation of copper metabolism leads to complex IV deficiency, perturbed nucleotide metabolism and slowed leukemia cell proliferation. Furthermore, nutritional copper depletion reduced cancer progression in cell line based and patient-derived xenograft models of leukemia. Copper thus appears to be an actionable micronutrient in leukemia.
Institute:Boston Children's Hospital
Department:Pathology
Laboratory:Naama Kanarek
Last Name:Wong
First Name:Alan
Address:300 Longwood Avenue, Boston, MA, 02115, USA
Email:alan.wong@childrens.harvard.edu
Phone:(617) 355-7433
Funding Source:NCI 1R01CA282477-01A1

Subject:

Subject ID:SU004576
Subject Type:Cultured cells
Subject Species:Homo sapiens
Taxonomy ID:9606
Cell Strain Details:SEM leukemia cells

Factors:

Subject type: Cultured cells; Subject species: Homo sapiens (Factor headings shown in green)

mb_sample_id local_sample_id Sample source treatment treatment2
SA52228620251104_QE2_HILIC_Iualan_AYW1736NALM6 leukemia cells BCS InosineUridine
SA52228720251104_QE2_HILIC_Iualan_AYW1735NALM6 leukemia cells BCS InosineUridine
SA52228820251104_QE2_HILIC_Iualan_AYW1734NALM6 leukemia cells BCS InosineUridine
SA52228920251104_QE2_HILIC_Iualan_AYW1730NALM6 leukemia cells BCS Vehicle
SA52229020251104_QE2_HILIC_Iualan_AYW1729NALM6 leukemia cells BCS Vehicle
SA52229120251104_QE2_HILIC_Iualan_AYW1728NALM6 leukemia cells BCS Vehicle
SA52229220251104_QE2_HILIC_Iualan_AYW1733NALM6 leukemia cells Vehicle InosineUridine
SA52229320251104_QE2_HILIC_Iualan_AYW1732NALM6 leukemia cells Vehicle InosineUridine
SA52229420251104_QE2_HILIC_Iualan_AYW1731NALM6 leukemia cells Vehicle InosineUridine
SA52229520251104_QE2_HILIC_Iualan_AYW1726NALM6 leukemia cells Vehicle Vehicle
SA52229620251104_QE2_HILIC_Iualan_AYW1727NALM6 leukemia cells Vehicle Vehicle
SA52229720251104_QE2_HILIC_Iualan_AYW1725NALM6 leukemia cells Vehicle Vehicle
SA52229820251104_QE2_HILIC_Iualan_AYW1721SEM leukemia cells BCS InosineUridine
SA52229920251104_QE2_HILIC_Iualan_AYW1720SEM leukemia cells BCS InosineUridine
SA52230020251104_QE2_HILIC_Iualan_AYW1719SEM leukemia cells BCS InosineUridine
SA52230120251104_QE2_HILIC_Iualan_AYW1715SEM leukemia cells BCS Vehicle
SA52230220251104_QE2_HILIC_Iualan_AYW1714SEM leukemia cells BCS Vehicle
SA52230320251104_QE2_HILIC_Iualan_AYW1713SEM leukemia cells BCS Vehicle
SA52230420251104_QE2_HILIC_Iualan_AYW1718SEM leukemia cells Vehicle InosineUridine
SA52230520251104_QE2_HILIC_Iualan_AYW1717SEM leukemia cells Vehicle InosineUridine
SA52230620251104_QE2_HILIC_Iualan_AYW1716SEM leukemia cells Vehicle InosineUridine
SA52230720251104_QE2_HILIC_Iualan_AYW1711SEM leukemia cells Vehicle Vehicle
SA52230820251104_QE2_HILIC_Iualan_AYW1712SEM leukemia cells Vehicle Vehicle
SA52230920251104_QE2_HILIC_Iualan_AYW1710SEM leukemia cells Vehicle Vehicle
Showing results 1 to 24 of 24

Collection:

Collection ID:CO004569
Collection Summary:1-1.5 million cells from culture were collected via centrifugation for 20 seconds at 18,000xG at 4°C, washed once with ice-cold 0.9% NaCl, and collected via centrifugation for 20 seconds at 18,000xG at 4C. Cells were cultured in RPMI-1640 with 10% FBS and penicillin/streptomycin in a 37°C incubator with 5% CO2.
Sample Type:Leukemia cells

Treatment:

Treatment ID:TR004585
Treatment Summary:Cells were treated for 6-8 days with vehicle or 50uM BCS, and vehicle or 100uM inosine and 100uM uridine. Culture media was RPMI-1640 containing 10% FBS and penicillin and streptomycin in 6-well plates. Cells were seeded at 0.125-0.25 million/mL and counted and passaged every 2-3 days.

Sample Preparation:

Sampleprep ID:SP004582
Sampleprep Summary:Cell pellet was resuspended in 400uL of 100% LC-MS grade methanol supplemented with isotopically-labelled amino acid standards [Cambridge Isotope Laboratories, MSK-A2-1.2], aminopterin, and reduced glutathione standard [Cambridge Isotope Laboratories, CNLM-6245-10]) with repeated pipetting up and down and vortexing for 10 seconds. Then, 100uL of LCMS-grade water containing 125 mM Ammonium Acetate, 10 mM Na-Ascorbate, and 7.9 mg/mL 5,5-dithio-bis-(2-nitrobenzoic acid (Ellman's reagent) was added, and the sample vortex for another 10 seconds. Samples were then centrifuged for 10 minutes at 18,000 g to pellet cell debris. The supernatant was transferred to a new tube and dried on ice using a liquid nitrogen dryer. The dried metabolites were then resuspended in 30uL and 2uL was injected.

Combined analysis:

Analysis ID AN007388
Chromatography ID CH005596
MS ID MS007081
Analysis type MS
Chromatography type HILIC
Chromatography system Thermo Vanquish
Column SeQuant ZIC-HILIC (150 x 2.1 mm, 5 μm)
MS Type ESI
MS instrument type Orbitrap
MS instrument name Thermo Q Exactive Orbitrap
Ion Mode UNSPECIFIED
Units Normalized peak area

Chromatography:

Chromatography ID:CH005596
Chromatography Summary:2 μL of each sample was injected into a ZIC-pHILIC 150 x 2.1 mm (5 μm particle size) column (EMD Millipore) operated on a Vanquish™ Flex UHPLC system (Thermo Fisher Scientific). Chromatographic separation was achieved using the following conditions: buffer A was 95% acetonitrile and 5% 20 mM ammonium carbonate, 0.1% ammonium hydroxide in water; buffer B was 95% 20 mM ammonium carbonate, 0.1% ammonium hydroxide in water and 5% acetonitrile. Gradient conditions used were: 0-17.5 min: linear gradient from 16.6% to 75.0% B; 17.5-18.0 min: linear gradient from 75.0% to 85.0% B; 18-20.0 min: hold at 85.0% B; 20.0-20.5 min: from 85.0% to 16.6% B; 20.5-24 min: hold at 16.6% B at 0.150 mL/min flow rate. The column oven and autosampler tray were held at 25°C and 4°C, respectively.
Instrument Name:Thermo Vanquish
Column Name:SeQuant ZIC-HILIC (150 x 2.1 mm, 5 μm)
Column Temperature:25°C
Flow Gradient:0-17.5 min: linear gradient from 16.6% to 75.0% B; 17.5-18.0 min: linear gradient from 75.0% to 85.0% B; 18-20.0 min: hold at 85.0% B; 20.0-20.5 min: from 85.0% to 16.6% B; 20.5-24 min: hold at 16.6% B
Flow Rate:0.15 mL/min
Solvent A:95% acetonitrile/5% water; 20mM ammonium carbonate; 0.1% ammonium hydroxide
Solvent B:95% water/5% acetonitrile; 20mM ammonium carbonate; 0.1% ammonium hydroxide
Chromatography Type:HILIC

MS:

MS ID:MS007081
Analysis ID:AN007388
Instrument Name:Thermo Q Exactive Orbitrap
Instrument Type:Orbitrap
MS Type:ESI
MS Comments:MS data acquisition was performed using a QExactive benchtop orbitrap mass spectrometer equipped with an Ion Max source and a HESI II probe (Thermo Fisher Scientific) and polarity switching was used. Two scans were used: full scans in both positive and negative ionization mode in a range of m/z = 70–1000, with the resolution set at 70,000, the AGC target at 1 × 10e6, and the maximum injection time (Max IT) at 20 msec from 0-20 minutes. Tune file parameters were: spray voltage = 3.5kV, capillary temperature = 320C, S-lens RF = 50, auxillary gas temperature = 350C.
Ion Mode:UNSPECIFIED
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