LTP 

LTP (Low Throughput Papers) : The number of records in which this modification site was determined using methods other than discovery mass spectrometry.


 HTP 

HTP (High Throughput Papers): The number of records in which this modification site was assigned using ONLY proteomic discovery mass spectrometry.


       rat

 
0 5   K19 CGNQIGAKFWEVISD
0 1   K19 CGNQIGAKFWEVISD
0 1   K19 CGNQIGAKFWEVISD
0 2   S25 AKFWEVISDEHGIDP
0 3   T33 DEHGIDPTGTyHGDS
0 26   T35 HGIDPTGTyHGDSDL
0 99   Y36‑p GIDPTGTyHGDSDLQ
0 14   S40 TGTyHGDSDLQLDRI
0 5   R46 DSDLQLDRISVyyNE
0 12   S48 DLQLDRISVyyNEAt
0 258   Y50‑p QLDRISVyyNEAtGG
0 263   Y51‑p LDRISVyyNEAtGGk
0 25   T55‑p SVyyNEAtGGkyVPR
0 24   K58‑ac yNEAtGGkyVPRAIL
0 123   K58‑ub yNEAtGGkyVPRAIL
0 1   K58 yNEAtGGKyVPRAIL
0 1   K58 yNEAtGGKyVPRAIL
0 37   Y59‑p NEAtGGkyVPRAILV
0 5   T72 LVDLEPGTMDsVRSG
0 16   S75‑p LEPGTMDsVRSGPFG
0 13   S78 GTMDsVRSGPFGQIF
0 16   S95 DNFVFGQSGAGNNWA
0 1   K103 GAGNNWAKGHyTEGA
0 5   K103 GAGNNWAKGHyTEGA
0 136   Y106‑p NNWAKGHyTEGAELV
1 9   T107 NWAKGHyTEGAELVD
0 26   S115 EGAELVDSVLDVVRK
0 16   K122 SVLDVVRKEAESCDC
0 6   S126 VVRKEAESCDCLQGF
0 1   T136 CLQGFQLTHSLGGGT
0 1   S138 QGFQLTHSLGGGTGS
0 3   T143 THSLGGGTGSGMGTL
0 1   S145 SLGGGTGSGMGTLLI
0 23   K154 MGTLLISKIREEYPD
0 15   Y159 ISKIREEYPDRIMNT
1 4   T166 YPDRIMNTFSVVPSP
0 9   S168 DRIMNTFSVVPSPKV
1 28   S172 NTFSVVPSPKVSDTV
0 2   K174 FSVVPSPKVSDTVVE
0 227   Y208 CIDNEALYDICFRTL
0 119   K216‑ub DICFRTLkLTTPTyG
0 7   T218 CFRTLkLTTPTyGDL
0 11   T219 FRTLkLTTPTyGDLN
0 99   T221 TLkLTTPTyGDLNHL
0 102   Y222‑p LkLTTPTyGDLNHLV
0 11   K252 QLNADLRKLAVNMVP
0 86   K252 QLNADLRKLAVNMVP
0 21   T274‑p MPGFAPLtSRGSQQY
0 13   S275 PGFAPLtSRGSQQYR
0 21   S278 APLtSRGSQQYRALT
0 20   Y281 tSRGSQQYRALTVPE
0 26   T285 SQQYRALTVPELTQQ
0 6   T290 ALTVPELTQQVFDAK
0 2   K297 TQQVFDAKNMMAACD
0 108   K297 TQQVFDAKNMMAACD
0 13   Y310 CDPRHGRYLtVAAVF
0 8   T312‑p PRHGRYLtVAAVFRG
0 2   K324‑ac FRGRMSMkEVDEQML
0 89   K324‑ub FRGRMSMkEVDEQML
0 58   K336‑ub QMLNVQNkNsSyFVE
0 5   S338‑p LNVQNkNsSyFVEWI
0 6   S339 NVQNkNsSyFVEWIP
0 382   Y340‑p VQNkNsSyFVEWIPN
0 86   K350‑ub EWIPNNVkTAVCDIP
0 48   K362 DIPPRGLKMAVTFIG
0 6   T366 RGLKMAVTFIGNSTA
0 1   S371 AVTFIGNSTAIQELF
0 72   K379 TAIQELFKRISEQFT
0 55   K379 TAIQELFKRISEQFT
0 5   S382 QELFKRISEQFTAMF
0 3   T386 KRISEQFTAMFRRKA
0 3   K392 FTAMFRRKAFLHWYT
1 0   T409‑p GMDEMEFtEAESNMN
1 0   S420‑p SNMNDLVsEYQQYQD
0 3   Y422 MNDLVsEYQQYQDAT
0 7   Y425 LVsEYQQYQDATAEE
0 1   T429 YQQYQDATAEEEEDF
  human

 
K19‑ac CGNQIGAkFWEVIsD
K19‑ub CGNQIGAkFWEVIsD
K19‑m2 CGNQIGAkFWEVIsD
S25‑p AkFWEVIsDEHGIDP
T33‑p DEHGIDPtGtyHGDs
T35‑p HGIDPtGtyHGDsDL
Y36‑p GIDPtGtyHGDsDLQ
S40‑p tGtyHGDsDLQLDrI
R46‑m1 DsDLQLDrIsVyyNE
S48‑p DLQLDrIsVyyNEAt
Y50‑p QLDrIsVyyNEAtGG
Y51‑p LDrIsVyyNEAtGGk
T55‑p sVyyNEAtGGkyVPR
K58‑ac yNEAtGGkyVPRAIL
K58‑ub yNEAtGGkyVPRAIL
K58‑sm yNEAtGGkyVPRAIL
K58‑m1 yNEAtGGkyVPRAIL
Y59‑p NEAtGGkyVPRAILV
T72‑p LVDLEPGtMDsVRsG
S75‑p LEPGtMDsVRsGPFG
S78‑p GtMDsVRsGPFGQIF
S95‑p DNFVFGQsGAGNNWA
K103‑ac GAGNNWAkGHytEGA
K103‑ub GAGNNWAkGHytEGA
Y106‑p NNWAkGHytEGAELV
T107‑p NWAkGHytEGAELVD
S115‑p EGAELVDsVLDVVRk
K122‑ub sVLDVVRkEAEsCDC
S126‑p VVRkEAEsCDCLQGF
T136‑p CLQGFQLtHsLGGGt
S138‑p QGFQLtHsLGGGtGs
T143‑p tHsLGGGtGsGMGTL
S145‑p sLGGGtGsGMGTLLI
K154‑ub MGTLLISkIREEyPD
Y159‑p ISkIREEyPDRIMNt
T166‑p yPDRIMNtFsVVPsP
S168‑p DRIMNtFsVVPsPkV
S172‑p NtFsVVPsPkVSDTV
K174‑ub FsVVPsPkVSDTVVE
Y208‑p CIDNEALyDICFRTL
K216‑ub DICFRTLkLttPtyG
T218‑p CFRTLkLttPtyGDL
T219‑p FRTLkLttPtyGDLN
T221‑p TLkLttPtyGDLNHL
Y222‑p LkLttPtyGDLNHLV
K252‑ac QLNADLRkLAVNMVP
K252‑ub QLNADLRkLAVNMVP
T274‑p MPGFAPLtsRGsQQy
S275‑p PGFAPLtsRGsQQyR
S278‑p APLtsRGsQQyRALt
Y281‑p tsRGsQQyRALtVPE
T285‑p sQQyRALtVPELtQQ
T290‑p ALtVPELtQQVFDAk
K297‑ac tQQVFDAkNMMAACD
K297‑ub tQQVFDAkNMMAACD
Y310‑p CDPRHGRyLtVAAVF
T312‑p PRHGRyLtVAAVFRG
K324‑ac FRGRMSMkEVDEQML
K324‑ub FRGRMSMkEVDEQML
K336‑ub QMLNVQNkNssyFVE
S338‑p LNVQNkNssyFVEWI
S339‑p NVQNkNssyFVEWIP
Y340‑p VQNkNssyFVEWIPN
K350‑ub EWIPNNVkTAVCDIP
K362‑ub DIPPRGLkMAVtFIG
T366‑p RGLkMAVtFIGNsTA
S371‑p AVtFIGNsTAIQELF
K379‑ac TAIQELFkRIsEQFt
K379‑ub TAIQELFkRIsEQFt
S382‑p QELFkRIsEQFtAMF
T386‑p kRIsEQFtAMFRRkA
K392‑ub FtAMFRRkAFLHWYT
T409 GMDEMEFTEAESNMN
S420 SNMNDLVSEyQQyQD
Y422‑p MNDLVSEyQQyQDAt
Y425‑p LVSEyQQyQDAtAEE
T429‑p yQQyQDAtAEEEEDF
  mouse

 
K19 CGNQIGAKFWEVISD
K19 CGNQIGAKFWEVISD
K19 CGNQIGAKFWEVISD
S25 AKFWEVISDEHGIDP
T33 DEHGIDPTGTyHGDs
T35 HGIDPTGTyHGDsDL
Y36‑p GIDPTGTyHGDsDLQ
S40‑p TGTyHGDsDLQLDrI
R46‑m1 DsDLQLDrIsVyyNE
S48‑p DLQLDrIsVyyNEAt
Y50‑p QLDrIsVyyNEAtGG
Y51‑p LDrIsVyyNEAtGGk
T55‑p sVyyNEAtGGkYVPR
K58 yNEAtGGKYVPRAIL
K58‑ub yNEAtGGkYVPRAIL
K58 yNEAtGGKYVPRAIL
K58 yNEAtGGKYVPRAIL
Y59 NEAtGGkYVPRAILV
T72‑p LVDLEPGtMDsVRsG
S75‑p LEPGtMDsVRsGPFG
S78‑p GtMDsVRsGPFGQIF
S95‑p DNFVFGQsGAGNNWA
K103 GAGNNWAKGHyTEGA
K103 GAGNNWAKGHyTEGA
Y106‑p NNWAKGHyTEGAELV
T107 NWAKGHyTEGAELVD
S115‑p EGAELVDsVLDVVRk
K122‑ub sVLDVVRkEAEsCDC
S126‑p VVRkEAEsCDCLQGF
T136 CLQGFQLTHSLGGGT
S138 QGFQLTHSLGGGTGS
T143 THSLGGGTGSGMGTL
S145 SLGGGTGSGMGTLLI
K154‑ub MGTLLISkIREEYPD
Y159 ISkIREEYPDRIMNT
T166 YPDRIMNTFsVVPsP
S168‑p DRIMNTFsVVPsPKV
S172‑p NTFsVVPsPKVSDTV
K174 FsVVPsPKVSDTVVE
Y208‑p CIDNEALyDICFRTL
K216‑ub DICFRTLkLttPtyG
T218‑p CFRTLkLttPtyGDL
T219‑p FRTLkLttPtyGDLN
T221‑p TLkLttPtyGDLNHL
Y222‑p LkLttPtyGDLNHLV
K252‑ac QLNADLRkLAVNMVP
K252‑ub QLNADLRkLAVNMVP
T274‑p MPGFAPLtsRGsQQY
S275‑p PGFAPLtsRGsQQYR
S278‑p APLtsRGsQQYRALt
Y281 tsRGsQQYRALtVPE
T285‑p sQQYRALtVPELTQQ
T290 ALtVPELTQQVFDAk
K297 TQQVFDAKNMMAACD
K297‑ub TQQVFDAkNMMAACD
Y310 CDPRHGRYLtVAAVF
T312‑p PRHGRYLtVAAVFRG
K324 FRGRMSMKEVDEQML
K324‑ub FRGRMSMkEVDEQML
K336‑ub QMLNVQNkNSsyFVE
S338 LNVQNkNSsyFVEWI
S339‑p NVQNkNSsyFVEWIP
Y340‑p VQNkNSsyFVEWIPN
K350‑ub EWIPNNVkTAVCDIP
K362 DIPPRGLKMAVtFIG
T366‑p RGLKMAVtFIGNsTA
S371‑p AVtFIGNsTAIQELF
K379‑ac TAIQELFkRIsEQFt
K379 TAIQELFKRIsEQFt
S382‑p QELFkRIsEQFtAMF
T386‑p kRIsEQFtAMFRRKA
K392 FtAMFRRKAFLHWYT
T409 GMDEMEFTEAESNMN
S420 SNMNDLVSEYQQYQD
Y422 MNDLVSEYQQYQDAT
Y425 LVSEYQQYQDATAEE
T429 YQQYQDATAEEEEDF
  cow

 
K19 CGNQIGAKFWEVISD
K19 CGNQIGAKFWEVISD
K19 CGNQIGAKFWEVISD
S25 AKFWEVISDEHGIDP
T33 DEHGIDPTGTYHGDS
T35 HGIDPTGTYHGDSDL
Y36 GIDPTGTYHGDSDLQ
S40 TGTYHGDSDLQLDRI
R46 DSDLQLDRISVYYNE
S48 DLQLDRISVYYNEAT
Y50 QLDRISVYYNEATGG
Y51 LDRISVYYNEATGGK
T55 SVYYNEATGGKYVPR
K58 YNEATGGKYVPRAIL
K58 YNEATGGKYVPRAIL
K58 YNEATGGKYVPRAIL
K58 YNEATGGKYVPRAIL
Y59 NEATGGKYVPRAILV
T72 LVDLEPGTMDSVRSG
S75 LEPGTMDSVRSGPFG
S78 GTMDSVRSGPFGQIF
S95 DNFVFGQSGAGNNWA
K103 GAGNNWAKGHYtEGA
K103 GAGNNWAKGHYtEGA
Y106 NNWAKGHYtEGAELV
T107‑p NWAKGHYtEGAELVD
S115 EGAELVDSVLDVVRK
K122 SVLDVVRKEAESCDC
S126 VVRKEAESCDCLQGF
T136 CLQGFQLTHSLGGGT
S138 QGFQLTHSLGGGTGS
T143 THSLGGGTGSGMGTL
S145 SLGGGTGSGMGTLLI
K154 MGTLLISKIREEYPD
Y159 ISKIREEYPDRIMNT
T166 YPDRIMNTFSVVPSP
S168 DRIMNTFSVVPSPKV
S172 NTFSVVPSPKVSDTV
K174 FSVVPSPKVSDTVVE
Y208 CIDNEALYDICFRTL
K216 DICFRTLKLTTPTYG
T218 CFRTLKLTTPTYGDL
T219 FRTLKLTTPTYGDLN
T221 TLKLTTPTYGDLNHL
Y222 LKLTTPTYGDLNHLV
K252 QLNADLRKLAVNMVP
K252 QLNADLRKLAVNMVP
T274 MPGFAPLTSRGSQQy
S275 PGFAPLTSRGSQQyR
S278 APLTSRGSQQyRALT
Y281‑p TSRGSQQyRALTVPE
T285 SQQyRALTVPELTQQ
T290 ALTVPELTQQVFDAK
K297 TQQVFDAKNMMAACD
K297 TQQVFDAKNMMAACD
Y310 CDPRHGRYLTVAAVF
T312 PRHGRYLTVAAVFRG
K324 FRGRMSMKEVDEQML
K324 FRGRMSMKEVDEQML
K336 QMLNVQNKNSSYFVE
S338 LNVQNKNSSYFVEWI
S339 NVQNKNSSYFVEWIP
Y340 VQNKNSSYFVEWIPN
K350 EWIPNNVKTAVCDIP
K362 DIPPRGLKMAVTFIG
T366 RGLKMAVTFIGNSTA
S371 AVTFIGNSTAIQELF
K379 TAIQELFKRISEQFT
K379 TAIQELFKRISEQFT
S382 QELFKRISEQFTAMF
T386 KRISEQFTAMFRRKA
K392 FTAMFRRKAFLHWYT
T409 GMDEMEFTEAESNMN
S420 SNMNDLVSEYQQYQD
Y422 MNDLVSEYQQYQDAT
Y425 LVSEYQQYQDATAEE
T429 YQQYQDATAEEEEDF