Hi David,
In my sample- N15 fed (heavy) female fly mated with N14 (normal) male fly, after mating, I dissected the female reproductive organs and process the sample using S-trap kit.
So, "theoretically" in the mated female reproductive tract proteome, there would be plenty of female proteins (which would be N15) and a tiny amount of male proteins (N14 proteins).
Our aim is to identify male-originated proteins from the samples and for now, I just focused on normal search rather than N15 labelling search.
The protocol worked well for PD's SequestHT, Comet and Tandem search giving ~150 hits, and now trying to add MsGf+ in the analysis.w
For the database, we are using trinity assembly of male reproductive organ RNAseq, made a 6 frame translation of the assembly and add decoys (with prefix of DECOY_ ).
For peptide prophet in petunia, I used the following parameters, as shown in the tutorial (not any unusual settings at all).
Use accurate mass binning, using PPM,
Use decoy hits to pin down the negative distribution. Decoy Protein names begin with: DECOY_,
Use Non-parametric model and
Report decoy hits with a computed probability
Please find the datasets containing:
Thermo RAW data file (201010_P31528_Sample_S1_QE_HFX_HpH_7_5p2.raw),
mzML file (201010_P31528_Sample_S1_QE_HFX_HpH_7_5p2.mzML),
mzid file with conf (asiftest_instrument2_S1.mzid and MSGFPlus_conf.txt) ,
Trinity database fasta file (with decoy), and resulted file from peptide prophet (MsGF_inst1_interact.ipro.pep.xml).
ASIF