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Isobaric labeling is the most widely used multiplexing quantitative approach in proteomic studies, enabling the comparison of up to 18 samples in a single MS analysis. Expanding the multiplexing capacity is of great necessity for high-throughput proteomic studies. Herein, we establish a novel TAG-TM...
ORGANISM(S): Homo sapiens (Human) Escherichia coli 
2022-10-14 | PXD033711 | Pride
The development of the TMTpro-16plex series expanded the breadth of commercial isobaric tagging reagents by nearly 50% over classic TMT-11plex. In addition to the described 16plex reagents, the proline-based TMTpro molecule can accommodate two additional combinations of heavy carbon and nitrogen iso...
ORGANISM(S): Homo sapiens (Human) 
2021-04-28 | PXD024275 | Pride
The advent of TMTpro reagents expands the sample multiplexing capacity and enables quantification of up to 18 samples in a multiplexed manner. Similar to classic TMT reagents, TMTpro reagents contain a tertiary amine group in their mole-cules, which markedly enhances their reactivity toward hydroxyl...
ORGANISM(S): Homo Sapiens Saccharomyces Cerevisiae 
2023-12-19 | PXD043778 |
The ability of the TMTPro isobaric labeling reagents to form complementary ions for accurate multiplexed proteomics at the MS2 level was investigated. Human and yeast peptides were labeled in distinct ratios to analyze the effect of interference on the quantification accuracy. A method, TMTProC, was...
ORGANISM(S): Homo sapiens (Human) Saccharomyces cerevisiae (Baker's yeast) 
2021-05-11 | PXD021661 | Pride
Isobaric labeling empowers proteome-wide expression measurements simultaneously across multiple samples. Here, an expanded set of 16 isobaric reagents based on a proline backbone (TMTpro) is presented. These reagents have similar characteristics to existing TMT reagents but with increased fragmentat...
ORGANISM(S): Homo sapiens (Human) 
2020-03-19 | PXD016940 | Pride
Stable-isotope labeling strategies are extensively used for multiplex quantitative proteomics. Hybrid isotope labeling strate-gies that combine the use of isotopic mass difference labeling and isobaric tags can greatly increase sample multiplexity. In this work, we present a novel hybrid isotope lab...
ORGANISM(S): Homo sapiens (Human) 
2022-02-17 | PXD024780 | Pride
Isobaric labeling empowers proteome-wide expression measurements simultaneously across multiple samples. Here, an expanded set of 16 isobaric reagents based on a proline backbone (TMTpro) is presented. These reagents have similar characteristics to existing TMT reagents but with increased fragmentat...
ORGANISM(S): Homo sapiens (Human) 
2020-03-19 | PXD016491 | Pride
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