2020
DOI: 10.1101/2020.01.30.927046
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Proteomics Using Protease Alternatives to Trypsin Benefits from Sequential Digestion with Trypsin

Abstract: Trypsin is the most used enzyme in proteomics. Nevertheless, proteases with complementary cleavage specificity have been applied in special circumstances. In this work, we analyzed the characteristics of five protease alternatives to trypsin for protein identification and sequence coverage when applied to S. pombe whole cell lysates. The specificity of the protease heavily impacted on the number of proteins identified. Proteases with higher specificity let to the identification of more proteins than proteases … Show more

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Cited by 10 publications
(12 citation statements)
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“…To further confirm that QMC12 could real-time monitor the dynamic membrane change, trypsin (a protease used for the passage of adherent cells) was added to imitate external stimuli through changing the cell membrane morphology. 46,47 Specifically, the adherent HeLa cells were first stained with QMC12, then these cells were incubated with the trypsin to allow continuously monitoring under a confocal microscope. To our delight, the complete process of the dynamic membrane change was record clearly by using the fluorescent signal of QMC12.…”
Section: Temporal Monitoring Of the Dynamic Membrane Changementioning
confidence: 99%
“…To further confirm that QMC12 could real-time monitor the dynamic membrane change, trypsin (a protease used for the passage of adherent cells) was added to imitate external stimuli through changing the cell membrane morphology. 46,47 Specifically, the adherent HeLa cells were first stained with QMC12, then these cells were incubated with the trypsin to allow continuously monitoring under a confocal microscope. To our delight, the complete process of the dynamic membrane change was record clearly by using the fluorescent signal of QMC12.…”
Section: Temporal Monitoring Of the Dynamic Membrane Changementioning
confidence: 99%
“…Resulting peptides are also easily further fragmented via MS. [80][81][82] To increase digestion efficiency as well as decrease sample complexity, sequential digestion is often performed. 83,84 Other ways of reducing sample complexity to increase proteome coverage is to perform fractionation, such as high pH fractionation and isoelectric focusing. 85,86…”
Section: Mass Spectrometry-based Proteomicsmentioning
confidence: 99%
“…41,42 Other proteases have been used for these purposes, such as GluC or AspN but are less common. 36,43 Suspension trapping (S-trap) can be included in the proteomic workflow, whereby spin columns with a quartz filter are used to prepare samples. In the presence of sodium dodecyl sulfate (SDS), protein mixtures are diluted and alkylated in solution.…”
Section: ■ Introductionmentioning
confidence: 99%