Search Results
Overview
| Uniprot ID | H0WA32 |
|---|---|
| Protein Name | Nucleoprotein TPR |
| Gene Name | TPR |
| Organism | Cavia porcellus |
Kla Sites from experimental identification
| Position | Flanking peptide |
|---|---|
| 1520 | AIVAAKSKIAHLAGV |
| 1605 | QQRQITLKTTPASGE |
| 1647 | AAAMAGNKSTPRASI |
| 379 | NDLLSATKRKGAVLS |
Function
No function data available.
Protein Sequence
10
SALSAAVVAP
20
RRLGDMAAVL
30
QQVLERTELN
40
KLPKLVQNKL
50
EKFLADQQSE
60
IDGLKGRHEK
70
FKVESEQQYF
80
EIEKRLSHSQ
90
ERLVNETREC
100
QSLRLELEKL
110
NNQLKTLTEK
120
NRELEIAQDR
130
SITVQSQFTR
140
TKEELEAEKR
150
DLIRTNERLS
160
QELEYLTEDV
170
KRLNEKFKES
180
NATKGELQLK
190
LDELQASDVS
200
IKYREKRLEQ
210
EKELLHNQNT
220
WLNTELKTKT
230
DELLALGREK
240
GNEILELKCN
250
LENKKEEVSR
260
LEEQMNGLKT
270
SNEHLQKHVE
280
DLLTKLKEAK
290
EQQASMEEKF
300
HNELNAHIKL
310
SNLYKSAADD
320
SEAKSNELTR
330
AVDELHKLLK
340
DAGEANKAIQ
350
DHLLEVEASK
360
DQMEKEMLEK
370
IGKLEKELEN
380
ANDLLSATKR
390
KGAVLSEEEL
400
AAMSPTAAAV
410
AKIVKPGMKL
420
TELYNAYVET
430
QDQLLLEKLE
440
NKRINKYLDE
450
IVKEVEAKAP
460
ILKRQREEYE
470
RAQKAVASLS
480
AKLEQAMKEI
490
QRLQEDTDKA
500
HKHSSVLERD
510
NQRMEIQIKD
520
LSQQIRVLLM
530
ELEEARGNHV
540
IRDEEVSSAD
550
ISSSSEVISQ
560
HLVSYRNIEE
570
LQQQNQRLLV
580
ALRELGETRE
590
KEEQETTSSK
600
ITELQVKLES
610
ALTELEQLRE
620
SRQHQMQLVD
630
SIVRQRDMYR
640
ILLSQTTGVV
650
IPLQASSLDD
660
ISIVSTPKRS
670
STSHTTSTPA
680
PVPVIESPEA
690
IEAKAALKQL
700
QEIFENYKKE
710
KTDNEKIQNE
720
QLEKLQEQVT
730
DLRSQNTKIS
740
TQLDFASKRY
750
EMLQDNVEGY
760
RREITSLQER
770
NQKLTATTQK
780
QEQIINTMTQ
790
DLRGANEKLA
800
VAEVRAENLK
810
KEKEMLKLSE
820
VRLSQQRESL
830
LAEQRGQNLL
840
LTNLQTIQGI
850
LERSETETKQ
860
RLSTQIEKLE
870
HEISHLKKKL
880
ENEVEQRHTL
890
TRNLDVQLLD
900
TKRQLDTETN
910
LHFNTKELLK
920
NAQKEIATLK
930
QYLSNMETQL
940
ASQSSQRTGK
950
EEVRKNIEVR
960
LKESAEFQMQ
970
LEKKLMEVEK
980
EKQELQDDKR
990
KAIESMEQQL
1000
SELRKTLSSV
1010
QNEVQEALQR
1020
ASTALSNEQQ
1030
ARRDCQEQAK
1040
IAVEAQNKYE
1050
RELMLHAADV
1060
EALQAAKEQV
1070
SKMASVRQHL
1080
EETTQKAESQ
1090
LLECEASWEE
1100
RERMLKDEVA
1110
KCVSRCEDLE
1120
KQNRLLHDQI
1130
ENLSDKVVAS
1140
MKEGVQGTLN
1150
VSLNEEGKSQ
1160
EQILEILRFI
1170
RREKEIAETR
1180
FEVAQVESLR
1190
YRQRVELLER
1200
ELQELQDSLN
1210
AEREKVQVTA
1220
KTMAQHEELM
1230
KKTETMNVVM
1240
ETNKMLREEK
1250
ERLEQDLQQM
1260
QAKVRKLELD
1270
ILPLQEANAE
1280
LSEKSGMLQA
1290
EKKLLEEDVK
1300
RWKARNQHLV
1310
NQQKDPDAEE
1320
YRKLLSEKEV
1330
HTKRIQQLTE
1340
DVARLKAEIA
1350
RSNASLTNNQ
1360
NLIQSLKEDL
1370
NKVKTEKESI
1380
QKDLDAKIID
1390
IQEKVKTITQ
1400
VKKIGRRYKT
1410
QYEELKAQQD
1420
KVLETSTQSS
1430
GDHQEQHVSV
1440
QEMQELKDTL
1450
NQAETKSKSL
1460
ESQVDNLQKT
1470
LSEKETEARN
1480
LQEQTVQLQS
1490
ELTRLRQDLQ
1500
DRTTQEEQLR
1510
QQITEKEEKT
1520
RKAIVAAKSK
1530
IAHLAGVKDQ
1540
LTKENEELKQ
1550
RNGALDQQKD
1560
ELDVRMTALK
1570
SQYEGRISRL
1580
ERELREHQER
1590
HLEQRDEPQE
1600
PTSKVPEQQR
1610
QITLKTTPAS
1620
GERGIASTSD
1630
PPTANIKPTP
1640
VVSTPSKVTA
1650
AAMAGNKSTP
1660
RASIRPMVTP
1670
ATVTNPTTTP
1680
TATVMPTTQV
1690
ESQEAMQSEG
1700
PVEHVPVFGS
1710
TSGSVRSTSP
1720
NVQPSISQPI
1730
LTVQQQTQAT
1740
AFVQPTQQSH
1750
PQIEPANQEL
1760
SPNIVEVVQS
1770
SPVERPSTST
1780
AVFGTVSATP
1790
SSSLPKRTRE
1800
EEEDNTIEAS
1810
DQVSDDTVEM
1820
PLPKRLKTVT
1830
PVGTEEEVMA
1840
EESTDGEVET
1850
QVYNQDSQDS
1860
IGEGVTQGDY
1870
TPIEDSEETS
1880
QSLQIDLGPL
1890
QPDQQTTTSS
1900
QDGQGKGDDV
1910
IVIDSDDEEE
1920
DDDENDGEHE
1930
DYEEDEDDDD
1940
DDEDDTGMGD
1950
EGEDSNEGTG
1960
SADGNDGYEA
1970
DDAEGGDGTD
1980
PGTETEESMG
1990
GGESNQRAAD
2000
SQNSGEGNSS
2010
TAESSFSQEI
2020
SREQQPSSAS
2030
ERQTPRAPQS
2040
PRRPPHPLPP
2050
RLTIHAPPQE
2060
LGPPVQRIQM
2070
TRRQSVGRGL
2080
QLTPGIGGMQ
2090
QHFFDDEDRT
2100
VPSTPTLVVP
2110
HRTDGFAEAI
2120
HSPQVAGVPR
2130
FRFGPPEDMP
2140
QTSSSHSDLG
2150
QLASQGGLGM
2160
YETPLFLAHE
2170
EESGGRSVPT
2180
TPLQVAAPVT
2190
VFTESTTSDT
2200
SEHASQSVPM
2210
VTTSTGTLST
2220
TNETATGDDG
2230
DEVFVEAESE
2240
GISSEAGLEI
2250
DSQQEEEPVQ
2260
ASDESDLPST
2270
SQDPPSSSSV
2280
DTSSSQPKPF
2290
RRVRLQTALR
2300
QGVRSRQFNR
2310
QRGISHAVGG
2320
RGGINRGNIN
Gene Ontology
| Classification | GO ID | Description |
|---|---|---|
| Cellular Component | GO:0031965 | nuclear membrane |
| Cellular Component | GO:0005737 | cytoplasm |
| Cellular Component | GO:0005868 | cytoplasmic dynein complex |
| Cellular Component | GO:0000776 | kinetochore |
| Cellular Component | GO:0072686 | mitotic spindle |
| Cellular Component | GO:0042405 | nuclear inclusion body |
| Cellular Component | GO:0034399 | nuclear periphery |
| Cellular Component | GO:0044615 | nuclear pore nuclear basket |
| Molecular Function | GO:0003682 | chromatin binding |
| Molecular Function | GO:0070840 | dynein complex binding |
| Molecular Function | GO:0031072 | heat shock protein binding |
| Molecular Function | GO:0051019 | mitogen-activated protein kinase binding |
| Molecular Function | GO:0003729 | mRNA binding |
| Molecular Function | GO:0042803 | protein homodimerization activity |
| Molecular Function | GO:0017056 | structural constituent of nuclear pore |
| Molecular Function | GO:0015631 | tubulin binding |
| Biological Process | GO:0051301 | cell division |
| Biological Process | GO:0007094 | mitotic spindle assembly checkpoint signaling |
| Biological Process | GO:0031990 | mRNA export from nucleus in response to heat stress |
| Biological Process | GO:0046832 | negative regulation of RNA export from nucleus |
| Biological Process | GO:0000122 | negative regulation of transcription by RNA polymerase II |
| Biological Process | GO:0045947 | negative regulation of translational initiation |
| Biological Process | GO:0006999 | nuclear pore organization |
| Biological Process | GO:0031453 | positive regulation of heterochromatin formation |
| Biological Process | GO:0090267 | positive regulation of mitotic cell cycle spindle assembly checkpoint |
| Biological Process | GO:0042307 | positive regulation of protein import into nucleus |
| Biological Process | GO:0006606 | protein import into nucleus |
| Biological Process | GO:1901673 | regulation of mitotic spindle assembly |
| Biological Process | GO:0070849 | response to epidermal growth factor |
| Biological Process | GO:0006404 | RNA import into nucleus |
Reference
[1] Feng J, Chen X, Li R, Xie Y, Zhang X et al.. Lactylome analysis reveals potential target modified proteins in the retina of form-deprivation myopia.. iScience 27(9):110606. 2024 Sep 20. PMID: 39246443.