Cargando…

Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.

The data described was acquired as part of a clinical study with the aim to investigate the potential of tumor-reactive T-cell response as response to vaccination of pancreatic cancer patients with an allogenic tumor cell lysate vaccine (Lau et al., 2022). Proteomics analysis was carried out to iden...

Descripción completa

Detalles Bibliográficos
Autores principales: Stingl, C., Lau, S.P., van der Burg, S.H., Aerts, J.G., van Eijck, C.H.J., Luider, T.M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9357830/
https://www.ncbi.nlm.nih.gov/pubmed/35959468
http://dx.doi.org/10.1016/j.dib.2022.108490
_version_ 1784763798287024128
author Stingl, C.
Lau, S.P.
van der Burg, S.H.
Aerts, J.G.
van Eijck, C.H.J.
Luider, T.M.
author_facet Stingl, C.
Lau, S.P.
van der Burg, S.H.
Aerts, J.G.
van Eijck, C.H.J.
Luider, T.M.
author_sort Stingl, C.
collection PubMed
description The data described was acquired as part of a clinical study with the aim to investigate the potential of tumor-reactive T-cell response as response to vaccination of pancreatic cancer patients with an allogenic tumor cell lysate vaccine (Lau et al., 2022). Proteomics analysis was carried out to identify tumor antigens that are shared between the allogeneic tumor cell lysate used for the vaccine and pancreatic ductal adenocarcinoma (PDAC) tissue samples. To this objective, cell lysates of the vaccine and of nine tissue samples were enzymatically digested and isotopically labeled with tandem mass tags (TMT) in a so-called six-plex manner (Thermo Fisher Scientific). Three pools were prepared by mixing the samples according to their TMT-labels. Subsequently, the three sample pools were fractionated into 24 fractions with high-pH reversed phase chromatography. These fractions were first analyzed on a nano-liquid chromatography (LC) system online coupled to a high-resolution Eclipse Orbitrap mass spectrometer (MS) equipped with a high-field asymmetric-waveform ion-mobility spectrometry (FAIMS) source using a data-dependent MS2 shotgun method. Overall, 126,618 unique peptide sequences, on basis of 768,638 peptide spectra matches and corresponding to 7,597 protein groups, were identified in the total sample set including 61 tumor antigens (Supplement Table S2 in Lau et al. 2022) that were prioritized by Cheever and co-workers as vaccine target antigens on basis of a series of objective criteria (Cheever et al., 2009). In the second phase of the experiment, this set of tumor antigens was targeted using a serial precursor selection (SPS) MS3 method. From this data, ion trap MS2 and Orbitrap MS3 fragment spectra were extracted for peptide identification (protein sequence database-dependent search) and relative quantification using the TMT labels, respectively. The dataset ultimately allowed the identification and quantification of 51 proteins and 163 related peptide precursors with the TMT labels (see Fig. 2B and Supplemental Fig. 8, Lau et al. 2022).
format Online
Article
Text
id pubmed-9357830
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-93578302022-08-10 Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue. Stingl, C. Lau, S.P. van der Burg, S.H. Aerts, J.G. van Eijck, C.H.J. Luider, T.M. Data Brief Data Article The data described was acquired as part of a clinical study with the aim to investigate the potential of tumor-reactive T-cell response as response to vaccination of pancreatic cancer patients with an allogenic tumor cell lysate vaccine (Lau et al., 2022). Proteomics analysis was carried out to identify tumor antigens that are shared between the allogeneic tumor cell lysate used for the vaccine and pancreatic ductal adenocarcinoma (PDAC) tissue samples. To this objective, cell lysates of the vaccine and of nine tissue samples were enzymatically digested and isotopically labeled with tandem mass tags (TMT) in a so-called six-plex manner (Thermo Fisher Scientific). Three pools were prepared by mixing the samples according to their TMT-labels. Subsequently, the three sample pools were fractionated into 24 fractions with high-pH reversed phase chromatography. These fractions were first analyzed on a nano-liquid chromatography (LC) system online coupled to a high-resolution Eclipse Orbitrap mass spectrometer (MS) equipped with a high-field asymmetric-waveform ion-mobility spectrometry (FAIMS) source using a data-dependent MS2 shotgun method. Overall, 126,618 unique peptide sequences, on basis of 768,638 peptide spectra matches and corresponding to 7,597 protein groups, were identified in the total sample set including 61 tumor antigens (Supplement Table S2 in Lau et al. 2022) that were prioritized by Cheever and co-workers as vaccine target antigens on basis of a series of objective criteria (Cheever et al., 2009). In the second phase of the experiment, this set of tumor antigens was targeted using a serial precursor selection (SPS) MS3 method. From this data, ion trap MS2 and Orbitrap MS3 fragment spectra were extracted for peptide identification (protein sequence database-dependent search) and relative quantification using the TMT labels, respectively. The dataset ultimately allowed the identification and quantification of 51 proteins and 163 related peptide precursors with the TMT labels (see Fig. 2B and Supplemental Fig. 8, Lau et al. 2022). Elsevier 2022-07-25 /pmc/articles/PMC9357830/ /pubmed/35959468 http://dx.doi.org/10.1016/j.dib.2022.108490 Text en © 2022 Published by Elsevier Inc. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Data Article
Stingl, C.
Lau, S.P.
van der Burg, S.H.
Aerts, J.G.
van Eijck, C.H.J.
Luider, T.M.
Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.
title Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.
title_full Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.
title_fullStr Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.
title_full_unstemmed Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.
title_short Dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.
title_sort dataset from a proteomics analysis of tumor antigens shared between an allogenic tumor cell lysate vaccine and pancreatic tumor tissue.
topic Data Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9357830/
https://www.ncbi.nlm.nih.gov/pubmed/35959468
http://dx.doi.org/10.1016/j.dib.2022.108490
work_keys_str_mv AT stinglc datasetfromaproteomicsanalysisoftumorantigenssharedbetweenanallogenictumorcelllysatevaccineandpancreatictumortissue
AT lausp datasetfromaproteomicsanalysisoftumorantigenssharedbetweenanallogenictumorcelllysatevaccineandpancreatictumortissue
AT vanderburgsh datasetfromaproteomicsanalysisoftumorantigenssharedbetweenanallogenictumorcelllysatevaccineandpancreatictumortissue
AT aertsjg datasetfromaproteomicsanalysisoftumorantigenssharedbetweenanallogenictumorcelllysatevaccineandpancreatictumortissue
AT vaneijckchj datasetfromaproteomicsanalysisoftumorantigenssharedbetweenanallogenictumorcelllysatevaccineandpancreatictumortissue
AT luidertm datasetfromaproteomicsanalysisoftumorantigenssharedbetweenanallogenictumorcelllysatevaccineandpancreatictumortissue