Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis

Research output: Contribution to journalJournal articleResearchpeer-review

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Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis. / Subramonian, Divya; Raghunayakula, Sarita; Olsen, Jesper V; Beningo, Karen A; Paschen, Wulf; Zhang, Xiang-Dong.

In: Journal of Proteome Research, Vol. 13, No. 9, 09.2014, p. 3905–3918.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Subramonian, D, Raghunayakula, S, Olsen, JV, Beningo, KA, Paschen, W & Zhang, X-D 2014, 'Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis', Journal of Proteome Research, vol. 13, no. 9, pp. 3905–3918. https://doi.org/10.1021/pr500119a

APA

Subramonian, D., Raghunayakula, S., Olsen, J. V., Beningo, K. A., Paschen, W., & Zhang, X-D. (2014). Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis. Journal of Proteome Research, 13(9), 3905–3918. https://doi.org/10.1021/pr500119a

Vancouver

Subramonian D, Raghunayakula S, Olsen JV, Beningo KA, Paschen W, Zhang X-D. Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis. Journal of Proteome Research. 2014 Sep;13(9):3905–3918. https://doi.org/10.1021/pr500119a

Author

Subramonian, Divya ; Raghunayakula, Sarita ; Olsen, Jesper V ; Beningo, Karen A ; Paschen, Wulf ; Zhang, Xiang-Dong. / Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis. In: Journal of Proteome Research. 2014 ; Vol. 13, No. 9. pp. 3905–3918.

Bibtex

@article{6dd7125822814a3cae70ab57a7fd32c3,
title = "Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis",
abstract = "SUMOylation is an essential posttranslational modification and regulates many cellular processes. Dysregulation of SUMOylation plays a critical role in metastasis, yet how its perturbation affects this lethal process of cancer is not well understood. We found that SUMO-2/3 modification is greatly up-regulated in metastatic breast cancer cells compared with nonmetastatic control cells. To identify proteins differentially modified by SUMO-2/3 between metastatic and nonmetastatic cells, we established a method in which endogenous SUMO-2/3 conjugates are labeled by stable isotope labeling by amino acids in cell culture (SILAC), immunopurified by SUMO-2/3 monoclonal antibodies and epitope-peptide elution, and analyzed by quantitative mass spectrometry. We identified 66 putative SUMO-2/3-conjugated proteins, of which 15 proteins show a significant increase/decrease in SUMO-2/3 modification in metastatic cells. Targets with altered SUMOylation are involved in cell cycle, migration, inflammation, glycolysis, gene expression, and SUMO/ubiquitin pathways, suggesting that perturbations of SUMO-2/3 modification might contribute to metastasis by affecting these processes. Consistent with this, up-regulation of PML SUMO-2/3 modification corresponds to an increased number of PML nuclear bodies (PML-NBs) in metastatic cells, whereas up-regulation of global SUMO-2/3 modification promotes 3D cell migration. Our findings provide a foundation for further investigating the effects of SUMOylation on breast cancer progression and metastasis.",
author = "Divya Subramonian and Sarita Raghunayakula and Olsen, {Jesper V} and Beningo, {Karen A} and Wulf Paschen and Xiang-Dong Zhang",
year = "2014",
month = sep,
doi = "10.1021/pr500119a",
language = "English",
volume = "13",
pages = "3905–3918",
journal = "Journal of Proteome Research",
issn = "1535-3893",
publisher = "American Chemical Society",
number = "9",

}

RIS

TY - JOUR

T1 - Analysis of Changes in SUMO-2/3 Modification during Breast Cancer Progression and Metastasis

AU - Subramonian, Divya

AU - Raghunayakula, Sarita

AU - Olsen, Jesper V

AU - Beningo, Karen A

AU - Paschen, Wulf

AU - Zhang, Xiang-Dong

PY - 2014/9

Y1 - 2014/9

N2 - SUMOylation is an essential posttranslational modification and regulates many cellular processes. Dysregulation of SUMOylation plays a critical role in metastasis, yet how its perturbation affects this lethal process of cancer is not well understood. We found that SUMO-2/3 modification is greatly up-regulated in metastatic breast cancer cells compared with nonmetastatic control cells. To identify proteins differentially modified by SUMO-2/3 between metastatic and nonmetastatic cells, we established a method in which endogenous SUMO-2/3 conjugates are labeled by stable isotope labeling by amino acids in cell culture (SILAC), immunopurified by SUMO-2/3 monoclonal antibodies and epitope-peptide elution, and analyzed by quantitative mass spectrometry. We identified 66 putative SUMO-2/3-conjugated proteins, of which 15 proteins show a significant increase/decrease in SUMO-2/3 modification in metastatic cells. Targets with altered SUMOylation are involved in cell cycle, migration, inflammation, glycolysis, gene expression, and SUMO/ubiquitin pathways, suggesting that perturbations of SUMO-2/3 modification might contribute to metastasis by affecting these processes. Consistent with this, up-regulation of PML SUMO-2/3 modification corresponds to an increased number of PML nuclear bodies (PML-NBs) in metastatic cells, whereas up-regulation of global SUMO-2/3 modification promotes 3D cell migration. Our findings provide a foundation for further investigating the effects of SUMOylation on breast cancer progression and metastasis.

AB - SUMOylation is an essential posttranslational modification and regulates many cellular processes. Dysregulation of SUMOylation plays a critical role in metastasis, yet how its perturbation affects this lethal process of cancer is not well understood. We found that SUMO-2/3 modification is greatly up-regulated in metastatic breast cancer cells compared with nonmetastatic control cells. To identify proteins differentially modified by SUMO-2/3 between metastatic and nonmetastatic cells, we established a method in which endogenous SUMO-2/3 conjugates are labeled by stable isotope labeling by amino acids in cell culture (SILAC), immunopurified by SUMO-2/3 monoclonal antibodies and epitope-peptide elution, and analyzed by quantitative mass spectrometry. We identified 66 putative SUMO-2/3-conjugated proteins, of which 15 proteins show a significant increase/decrease in SUMO-2/3 modification in metastatic cells. Targets with altered SUMOylation are involved in cell cycle, migration, inflammation, glycolysis, gene expression, and SUMO/ubiquitin pathways, suggesting that perturbations of SUMO-2/3 modification might contribute to metastasis by affecting these processes. Consistent with this, up-regulation of PML SUMO-2/3 modification corresponds to an increased number of PML nuclear bodies (PML-NBs) in metastatic cells, whereas up-regulation of global SUMO-2/3 modification promotes 3D cell migration. Our findings provide a foundation for further investigating the effects of SUMOylation on breast cancer progression and metastasis.

U2 - 10.1021/pr500119a

DO - 10.1021/pr500119a

M3 - Journal article

C2 - 25072996

VL - 13

SP - 3905

EP - 3918

JO - Journal of Proteome Research

JF - Journal of Proteome Research

SN - 1535-3893

IS - 9

ER -

ID: 122495083