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On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells

Single-cell multi-omics analysis can provide comprehensive insights to study cell-to-cell heterogeneity in normal and disease physiology. However, due to the lack of amplification technique, the measurement of proteome and metabolome in the same cell is challenging. Herein, a novel on-capillary alky...

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Autores principales: He, Yingyun, Yuan, Huiming, Liang, Yu, Liu, Xinxin, Zhang, Xiaozhe, Ji, Yahui, Zhao, Baofeng, Yang, Kaiguang, Zhang, Jue, Zhang, Shen, Zhang, Yukui, Zhang, Lihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10686037/
https://www.ncbi.nlm.nih.gov/pubmed/38033888
http://dx.doi.org/10.1039/d3sc05047e
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author He, Yingyun
Yuan, Huiming
Liang, Yu
Liu, Xinxin
Zhang, Xiaozhe
Ji, Yahui
Zhao, Baofeng
Yang, Kaiguang
Zhang, Jue
Zhang, Shen
Zhang, Yukui
Zhang, Lihua
author_facet He, Yingyun
Yuan, Huiming
Liang, Yu
Liu, Xinxin
Zhang, Xiaozhe
Ji, Yahui
Zhao, Baofeng
Yang, Kaiguang
Zhang, Jue
Zhang, Shen
Zhang, Yukui
Zhang, Lihua
author_sort He, Yingyun
collection PubMed
description Single-cell multi-omics analysis can provide comprehensive insights to study cell-to-cell heterogeneity in normal and disease physiology. However, due to the lack of amplification technique, the measurement of proteome and metabolome in the same cell is challenging. Herein, a novel on-capillary alkylation micro-reactor (OCAM) was developed to achieve proteo-metabolome profiling in the same single cells, by which proteins were first covalently bound to an iodoacetic acid functionalized open-tubular capillary micro-reactor via sulfhydryl alkylation reaction, and metabolites were rapidly eluted, followed by on-column digestion of captured proteins. Compared with existing methods for low-input proteome sample preparation, OCAM exhibited improved efficiency, anti-interference ability and recovery, enabling the identification of an average of 1509 protein groups in single HeLa cells. This strategy was applied to single-cell proteo-metabolome analysis of mouse oocytes at different stages, 3457 protein groups and 171 metabolites were identified in single oocytes, which is the deepest coverage of proteome and metabolome from single mouse oocytes to date, achieving complementary characterization of metabolic patterns during oocyte maturation.
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spelling pubmed-106860372023-11-30 On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells He, Yingyun Yuan, Huiming Liang, Yu Liu, Xinxin Zhang, Xiaozhe Ji, Yahui Zhao, Baofeng Yang, Kaiguang Zhang, Jue Zhang, Shen Zhang, Yukui Zhang, Lihua Chem Sci Chemistry Single-cell multi-omics analysis can provide comprehensive insights to study cell-to-cell heterogeneity in normal and disease physiology. However, due to the lack of amplification technique, the measurement of proteome and metabolome in the same cell is challenging. Herein, a novel on-capillary alkylation micro-reactor (OCAM) was developed to achieve proteo-metabolome profiling in the same single cells, by which proteins were first covalently bound to an iodoacetic acid functionalized open-tubular capillary micro-reactor via sulfhydryl alkylation reaction, and metabolites were rapidly eluted, followed by on-column digestion of captured proteins. Compared with existing methods for low-input proteome sample preparation, OCAM exhibited improved efficiency, anti-interference ability and recovery, enabling the identification of an average of 1509 protein groups in single HeLa cells. This strategy was applied to single-cell proteo-metabolome analysis of mouse oocytes at different stages, 3457 protein groups and 171 metabolites were identified in single oocytes, which is the deepest coverage of proteome and metabolome from single mouse oocytes to date, achieving complementary characterization of metabolic patterns during oocyte maturation. The Royal Society of Chemistry 2023-11-14 /pmc/articles/PMC10686037/ /pubmed/38033888 http://dx.doi.org/10.1039/d3sc05047e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
He, Yingyun
Yuan, Huiming
Liang, Yu
Liu, Xinxin
Zhang, Xiaozhe
Ji, Yahui
Zhao, Baofeng
Yang, Kaiguang
Zhang, Jue
Zhang, Shen
Zhang, Yukui
Zhang, Lihua
On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells
title On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells
title_full On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells
title_fullStr On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells
title_full_unstemmed On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells
title_short On-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells
title_sort on-capillary alkylation micro-reactor: a facile strategy for proteo-metabolome profiling in the same single cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10686037/
https://www.ncbi.nlm.nih.gov/pubmed/38033888
http://dx.doi.org/10.1039/d3sc05047e
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