HDR through Homologous Recombination (HRR)
|
|
|
- ATM
- BACH1
- BARD1
- BLM
- BRCA1
- BRCA2
- BRIP1
- C16orf75
- C7orf76
- C9orf76
- CHRAC17
- CTIP
- DINB1
- DNA2
- DNA2L
- DPE2
- DSS1
- EXO1
- EXOI
- FACD
- FANCD1
- FANCJ
- FANCN
- HEX1
- HNGS1
- HTATIP
- KAT5
- KIAA0039
- KIAA0083
- MRE11
- MRE11A
- NBN
- NBS
- NBS1
- P95
- PALB2
- PCNA
- PIR51
- POLD
- POLD1
- POLD2
- POLD3
- POLD4
- POLDS
- POLE
- POLE1
- POLE2
- POLE3
- POLE4
- POLH
- POLK
- RAD30
- RAD30A
- RAD50
- RAD51
- RAD51A
- RAD51AP1
- RAD51B
- RAD51C
- RAD51D
- RAD51L1
- RAD51L2
- RAD51L3
- RBBP8
- REC2
- RECA
- RECQ2
- RECQ3
- RECQL2
- RECQL3
- REPA1
- REPA2
- REPA3
- RFC1
- RFC140
- RFC2
- RFC3
- RFC4
- RFC5
- RMI1
- RMI2
- RNF53
- RPA1
- RPA14
- RPA2
- RPA3
- RPA32
- RPA34
- RPA70
- RPS27A
- SEM1
- SHFDG1
- SHFM1
- TIP60
- TOP3
- TOP3A
- UBA52
- UBA80
- UBB
- UBC
- UBCEP1
- UBCEP2
- WRN
- XPV
- XRCC2
- XRCC3
|
Homo sapiens (human)
|
|
Homologous DNA Pairing and Strand Exchange
|
|
|
- ATM
- BACH1
- BARD1
- BLM
- BRCA1
- BRCA2
- BRIP1
- C16orf75
- C7orf76
- C9orf76
- CTIP
- DNA2
- DNA2L
- DSS1
- EXO1
- EXOI
- FACD
- FANCD1
- FANCJ
- FANCN
- HEX1
- HNGS1
- HTATIP
- KAT5
- KIAA0083
- MRE11
- MRE11A
- NBN
- NBS
- NBS1
- P95
- PALB2
- PIR51
- RAD50
- RAD51
- RAD51A
- RAD51AP1
- RAD51B
- RAD51C
- RAD51D
- RAD51L1
- RAD51L2
- RAD51L3
- RBBP8
- REC2
- RECA
- RECQ2
- RECQ3
- RECQL2
- RECQL3
- RMI1
- RMI2
- RNF53
- SEM1
- SHFDG1
- SHFM1
- TIP60
- TOP3
- TOP3A
- WRN
- XRCC2
- XRCC3
|
Homo sapiens (human)
|
|
Defective HDR through Homologous Recombination Repair (HRR) due to PALB2 loss of BRCA2/RAD51/RAD51C binding function
|
|
|
- ATM
- BACH1
- BARD1
- BLM
- BRCA1
- BRCA2
- BRIP1
- C16orf75
- C7orf76
- C9orf76
- CTIP
- DNA2
- DNA2L
- DSS1
- EXO1
- EXOI
- FACD
- FANCD1
- FANCJ
- FANCN
- HEX1
- HNGS1
- HTATIP
- KAT5
- KIAA0083
- MRE11
- MRE11A
- NBN
- NBS
- NBS1
- P95
- PALB2
- PIR51
- RAD50
- RAD51
- RAD51A
- RAD51AP1
- RAD51B
- RAD51C
- RAD51D
- RAD51L1
- RAD51L2
- RAD51L3
- RBBP8
- REC2
- RECA
- RECQ2
- RECQ3
- RECQL2
- RECQL3
- RMI1
- RMI2
- RNF53
- SEM1
- SHFDG1
- SHFM1
- TIP60
- TOP3
- TOP3A
- WRN
- XRCC2
|
Homo sapiens (human)
|
|
Defective homologous recombination repair (HRR) due to BRCA1 loss of function
|
|
|
- ATM
- BACH1
- BARD1
- BLM
- BRCA1
- BRCA2
- BRIP1
- C16orf75
- C7orf76
- C9orf76
- CTIP
- DNA2
- DNA2L
- DSS1
- EXO1
- EXOI
- FACD
- FANCD1
- FANCJ
- FANCN
- HEX1
- HNGS1
- HTATIP
- KAT5
- KIAA0083
- MRE11
- MRE11A
- NBN
- NBS
- NBS1
- P95
- PALB2
- PIR51
- RAD50
- RAD51
- RAD51A
- RAD51AP1
- RAD51B
- RAD51C
- RAD51D
- RAD51L1
- RAD51L2
- RAD51L3
- RBBP8
- REC2
- RECA
- RECQ2
- RECQ3
- RECQL2
- RECQL3
- RMI1
- RMI2
- RNF53
- SEM1
- SHFDG1
- SHFM1
- TIP60
- TOP3
- TOP3A
- WRN
- XRCC2
|
Homo sapiens (human)
|
|
Defective HDR through Homologous Recombination Repair (HRR) due to PALB2 loss of BRCA1 binding function
|
|
|
- ATM
- BACH1
- BARD1
- BLM
- BRCA1
- BRCA2
- BRIP1
- C16orf75
- C7orf76
- C9orf76
- CTIP
- DNA2
- DNA2L
- DSS1
- EXO1
- EXOI
- FACD
- FANCD1
- FANCJ
- FANCN
- HEX1
- HNGS1
- HTATIP
- KAT5
- KIAA0083
- MRE11
- MRE11A
- NBN
- NBS
- NBS1
- P95
- PALB2
- PIR51
- RAD50
- RAD51
- RAD51A
- RAD51AP1
- RAD51B
- RAD51C
- RAD51D
- RAD51L1
- RAD51L2
- RAD51L3
- RBBP8
- REC2
- RECA
- RECQ2
- RECQ3
- RECQL2
- RECQL3
- RMI1
- RMI2
- RNF53
- SEM1
- SHFDG1
- SHFM1
- TIP60
- TOP3
- TOP3A
- WRN
- XRCC2
|
Homo sapiens (human)
|
|
Impaired BRCA2 binding to PALB2
|
|
|
- ATM
- BACH1
- BARD1
- BLM
- BRCA1
- BRCA2
- BRIP1
- C16orf75
- C9orf76
- CTIP
- DNA2
- DNA2L
- EXO1
- EXOI
- FACD
- FANCD1
- FANCJ
- FANCN
- HEX1
- HNGS1
- HTATIP
- KAT5
- KIAA0083
- MRE11
- MRE11A
- NBN
- NBS
- NBS1
- P95
- PALB2
- PIR51
- RAD50
- RAD51
- RAD51A
- RAD51AP1
- RAD51B
- RAD51C
- RAD51D
- RAD51L1
- RAD51L2
- RAD51L3
- RBBP8
- REC2
- RECA
- RECQ2
- RECQ3
- RECQL2
- RECQL3
- RMI1
- RMI2
- RNF53
- TIP60
- TOP3
- TOP3A
- WRN
- XRCC2
|
Homo sapiens (human)
|
|
Regulation of TP53 Activity through Methylation
|
|
|
- ATM
- BAT8
- C5orf35
- C6orf30
- CDS1
- CHEK2
- CHK2
- EHMT1
- EHMT2
- EP300
- EUHMTASE1
- G9A
- GLP
- HRMT1L5
- IBP72
- JBP1
- JMY
- KIAA0681
- KIAA1876
- KMT1C
- KMT1D
- KMT3C
- KMT5A
- L3MBT
- L3MBTL
- L3MBTL1
- MDM2
- MDM4
- MDMX
- NG36
- P300
- P53
- PRMT5
- PRSET7
- RAD53
- RPS27A
- SET07
- SET8
- SETD8
- SETD9
- SKB1
- SMYD2
- TP53
- TTC5
- UBA52
- UBA80
- UBB
- UBC
- UBCEP1
- UBCEP2
|
Homo sapiens (human)
|
|
Stabilization of p53
|
|
|
- ATM
- C20orf104
- CDKN2
- CDKN2A
- CDS1
- CHEK2
- CHK2
- GLEA2
- HCA58
- MDM2
- MDM4
- MDMX
- MLM
- NZF
- P53
- PHF20
- RAD53
- RPS27A
- TP53
- TZP
- UBA52
- UBA80
- UBB
- UBC
- UBCEP1
- UBCEP2
|
Homo sapiens (human)
|
|
Sensing of DNA Double Strand Breaks
|
|
|
- ATM
- HNGS1
- HTATIP
- KAT5
- KPNA2
- MRE11
- MRE11A
- NBN
- NBS
- NBS1
- P95
- RAD50
- RCH1
- SRP1
- TIP60
|
Homo sapiens (human)
|
|
Regulation of gene expression in late stage (branching morphogenesis) pancreatic bud precursor cells
|
|
|
- ATOH5
- BHLHA7
- BHLHB39
- CBP
- CG1
- CREBBP
- CXorf6
- EP300
- GCN5
- GCN5L2
- HES1
- HL
- HNF1B
- HNF6
- HNF6A
- HRY
- IGKJRB
- IGKJRB1
- KAT2A
- KAT2B
- KIAA0200
- KIAA1816
- KIAA1819
- MAML1
- MAML2
- MAML3
- MAMLD1
- NEUROG3
- NGN3
- NOTCH1
- ONECUT1
- ONECUT3
- P300
- PCAF
- RBPJ
- RBPJK
- RBPSUH
- SKIIP
- SKIP
- SNW1
- TAN1
- TCF2
|
Homo sapiens (human)
|
|
Reduction of cytosolic Ca++ levels
|
|
|
- ATP2A1
- ATP2A2
- ATP2A3
- ATP2B
- ATP2B1
- ATP2B2
- ATP2B3
- ATP2B4
- CALM
- CALM1
- CAM
- CAM1
- CNC
- KIAA1087
- MXRA1
- NCX1
- NCX2
- NCX3
- PMCA1
- PMCA2
- SLC8A1
- SLC8A2
- SLC8A3
- SRI
|
Homo sapiens (human)
|
|
Pre-NOTCH Processing in Golgi
|
|
|
- ATP2A1
- ATP2A2
- ATP2A3
- ATP2B
- B4GALT1
- CGS23
- FUR
- FURIN
- GGTB2
- INT3
- LFNG
- MFNG
- NANTA3
- NOTCH1
- NOTCH2
- NOTCH3
- NOTCH4
- PACE
- PCSK3
- RAB6
- RAB6A
- RFNG
- RNP24
- SEL1L
- SIAT10
- SIAT4C
- SIAT6
- ST3GAL3
- ST3GAL4
- ST3GAL6
- STZ
- TAN1
- TMED2
- TSA305
|
Homo sapiens (human)
|
|
Formation of ATP by chemiosmotic coupling
|
- ATP synthase F(0) complex subunit B1, mitochondrial
- ATP synthase F(0) complex subunit C1, mitochondrial
- ATP synthase F(0) complex subunit C2, mitochondrial
- ATP synthase F(0) complex subunit C3, mitochondrial
- ATP synthase membrane subunit K, mitochondrial
- ATP synthase protein 8
- ATP synthase subunit ATP5MJ, mitochondrial
- ATP synthase subunit O, mitochondrial
- ATP synthase subunit a
- ATP synthase subunit alpha, mitochondrial
- ATP synthase subunit beta, mitochondrial
- ATP synthase subunit d, mitochondrial
- ATP synthase subunit delta, mitochondrial
- ATP synthase subunit e, mitochondrial
- ATP synthase subunit epsilon, mitochondrial
- ATP synthase subunit f, mitochondrial
- ATP synthase subunit g, mitochondrial
- ATP synthase subunit gamma, mitochondrial
- ATP synthase subunit s, mitochondrial
- ATP synthase-coupling factor 6, mitochondrial
|
|
- ATP5A
- ATP5A1
- ATP5AL2
- ATP5B
- ATP5C
- ATP5C1
- ATP5CL1
- ATP5D
- ATP5E
- ATP5F1
- ATP5F1A
- ATP5F1B
- ATP5F1C
- ATP5F1D
- ATP5F1E
- ATP5G1
- ATP5G2
- ATP5G3
- ATP5H
- ATP5I
- ATP5J
- ATP5J2
- ATP5JL
- ATP5K
- ATP5L
- ATP5MC1
- ATP5MC2
- ATP5MC3
- ATP5MD
- ATP5ME
- ATP5MF
- ATP5MG
- ATP5MJ
- ATP5MK
- ATP5MPL
- ATP5O
- ATP5PB
- ATP5PD
- ATP5PF
- ATP5PO
- ATP5S
- ATP6
- ATP8
- ATPASE6
- ATPASE8
- ATPM
- ATPMB
- ATPO
- ATPSB
- ATPW
- C14orf2
- DAPIT
- DMAC2L
- HCVFTP2
- MP68
- MT-ATP6
- MT-ATP8
- MTATP6
- MTATP8
- USMG5
|
Homo sapiens (human)
|
|
Insulin receptor recycling
|
|
|
- ATP6A1
- ATP6AP1
- ATP6B1
- ATP6B2
- ATP6C
- ATP6D
- ATP6E
- ATP6E1
- ATP6E2
- ATP6EL2
- ATP6F
- ATP6G
- ATP6G1
- ATP6G2
- ATP6G3
- ATP6H
- ATP6IP1
- ATP6J
- ATP6L
- ATP6M
- ATP6N1
- ATP6N1A
- ATP6N1B
- ATP6N1C
- ATP6N2
- ATP6S1
- ATP6S14
- ATP6V0A1
- ATP6V0A2
- ATP6V0A3
- ATP6V0A4
- ATP6V0B
- ATP6V0C
- ATP6V0D1
- ATP6V0D2
- ATP6V0E
- ATP6V0E1
- ATP6V0E2
- ATP6V0E2L
- ATP6V1A
- ATP6V1A1
- ATP6V1B1
- ATP6V1B2
- ATP6V1C1
- ATP6V1C2
- ATP6V1D
- ATP6V1E1
- ATP6V1E2
- ATP6V1EL2
- ATP6V1F
- ATP6V1G1
- ATP6V1G2
- ATP6V1G3
- ATP6V1H
- ATPL
- C7orf32
- CPSD
- CTSD
- IDE
- INS
- INSR
- LAR
- NG38
- PTP1B
- PTPN1
- PTPRF
- TCIRG1
- VATB
- VATC
- VATD
- VATF
- VATPS1
- VPATPD
- VPP1
- VPP2
- VPP3
- XAP3
|
Homo sapiens (human)
|
|
Transferrin endocytosis and recycling
|
|
|
- ATP6A1
- ATP6AP1
- ATP6B1
- ATP6B2
- ATP6C
- ATP6D
- ATP6E
- ATP6E1
- ATP6E2
- ATP6EL2
- ATP6F
- ATP6G
- ATP6G1
- ATP6G2
- ATP6G3
- ATP6H
- ATP6IP1
- ATP6J
- ATP6L
- ATP6M
- ATP6N1
- ATP6N1A
- ATP6N1B
- ATP6N1C
- ATP6N2
- ATP6S1
- ATP6S14
- ATP6V0A1
- ATP6V0A2
- ATP6V0A3
- ATP6V0A4
- ATP6V0B
- ATP6V0C
- ATP6V0D1
- ATP6V0D2
- ATP6V0E
- ATP6V0E1
- ATP6V0E2
- ATP6V0E2L
- ATP6V1A
- ATP6V1A1
- ATP6V1B1
- ATP6V1B2
- ATP6V1C1
- ATP6V1C2
- ATP6V1D
- ATP6V1E1
- ATP6V1E2
- ATP6V1EL2
- ATP6V1F
- ATP6V1G1
- ATP6V1G2
- ATP6V1G3
- ATP6V1H
- ATPL
- C7orf32
- HFE
- HLAH
- MCOLN1
- ML4
- NG38
- STAMP2
- STEAP3
- STEAP4
- TCIRG1
- TF
- TFR2
- TFRC
- TNFAIP9
- TRPML1
- TSAP6
- VATB
- VATC
- VATD
- VATF
- VATPS1
- VPATPD
- VPP1
- VPP2
- VPP3
- XAP3
|
Homo sapiens (human)
|
|
Ion channel transport
|
|
|
- ATP6A1
- ATP6AP1
- ATP6B1
- ATP6B2
- ATP6C
- ATP6D
- ATP6E
- ATP6E1
- ATP6E2
- ATP6EL2
- ATP6F
- ATP6G
- ATP6G1
- ATP6G2
- ATP6G3
- ATP6H
- ATP6IP1
- ATP6J
- ATP6L
- ATP6M
- ATP6N1
- ATP6N1A
- ATP6N1B
- ATP6N1C
- ATP6N2
- ATP6S1
- ATP6S14
- ATP6V0A1
- ATP6V0A2
- ATP6V0A3
- ATP6V0A4
- ATP6V0B
- ATP6V0C
- ATP6V0D1
- ATP6V0D2
- ATP6V0E
- ATP6V0E1
- ATP6V0E2
- ATP6V0E2L
- ATP6V1A
- ATP6V1A1
- ATP6V1B1
- ATP6V1B2
- ATP6V1C1
- ATP6V1C2
- ATP6V1D
- ATP6V1E1
- ATP6V1E2
- ATP6V1EL2
- ATP6V1F
- ATP6V1G1
- ATP6V1G2
- ATP6V1G3
- ATP6V1H
- ATPL
- C7orf32
- NG38
- TCIRG1
- VATB
- VATC
- VATD
- VATF
- VATPS1
- VPATPD
- VPP1
- VPP2
- VPP3
- XAP3
|
Homo sapiens (human)
|
|
ROS and RNS production in phagocytes
|
|
|
- ATP6A1
- ATP6B1
- ATP6B2
- ATP6C
- ATP6D
- ATP6E
- ATP6E1
- ATP6E2
- ATP6EL2
- ATP6F
- ATP6G
- ATP6G1
- ATP6G2
- ATP6G3
- ATP6H
- ATP6J
- ATP6L
- ATP6M
- ATP6N1
- ATP6N1A
- ATP6N1B
- ATP6N1C
- ATP6N2
- ATP6S14
- ATP6V0A1
- ATP6V0A2
- ATP6V0A3
- ATP6V0A4
- ATP6V0B
- ATP6V0C
- ATP6V0D1
- ATP6V0D2
- ATP6V0E
- ATP6V0E1
- ATP6V0E2
- ATP6V0E2L
- ATP6V1A
- ATP6V1A1
- ATP6V1B1
- ATP6V1B2
- ATP6V1C1
- ATP6V1C2
- ATP6V1D
- ATP6V1E1
- ATP6V1E2
- ATP6V1EL2
- ATP6V1F
- ATP6V1G1
- ATP6V1G2
- ATP6V1G3
- ATP6V1H
- ATPL
- C7orf32
- CYBA
- CYBB
- HVCN1
- LSH
- NCF1
- NCF2
- NCF4
- NG38
- NOS1
- NOS2
- NOS2A
- NOS3
- NOX2
- NOXA2
- NOXO2
- NRAMP
- NRAMP1
- P67PHOX
- RAC2
- SH3PXD1A
- SH3PXD4
- SLC11A1
- TCIRG1
- VATB
- VATC
- VATD
- VATF
- VPATPD
- VPP1
- VPP2
- VPP3
- VSOP
|
Homo sapiens (human)
|
|
Amino acids regulate mTORC1
|
|
|
- ATP6A1
- ATP6B1
- ATP6B2
- ATP6C
- ATP6D
- ATP6E
- ATP6E1
- ATP6E2
- ATP6EL2
- ATP6F
- ATP6G
- ATP6G1
- ATP6G2
- ATP6G3
- ATP6H
- ATP6J
- ATP6L
- ATP6M
- ATP6N1C
- ATP6S14
- ATP6V0A3
- ATP6V0B
- ATP6V0C
- ATP6V0D1
- ATP6V0D2
- ATP6V0E
- ATP6V0E1
- ATP6V0E2
- ATP6V0E2L
- ATP6V1A
- ATP6V1A1
- ATP6V1B1
- ATP6V1B2
- ATP6V1C1
- ATP6V1C2
- ATP6V1D
- ATP6V1E1
- ATP6V1E2
- ATP6V1EL2
- ATP6V1F
- ATP6V1G1
- ATP6V1G2
- ATP6V1G3
- ATP6V1H
- ATPL
- BHD
- BMT2
- BOG25
- C11orf59
- C12orf66
- C16orf21
- C16orf35
- C1orf84
- C7orf32
- C7orf59
- C7orf60
- CASTOR1
- CASTOR2
- CGTHBA
- D3S1231E
- DEPDC5
- EHB10
- FLCN
- FNIP1
- FNIP2
- FNIPL
- FRAP
- FRAP1
- FRAP2
- GATSL1
- GATSL2
- GATSL3
- GBL
- HBXIP
- Hi95
- ITFG2
- KIAA0467
- KIAA0645
- KIAA1303
- KIAA1450
- KIAA1923
- KIAA1961
- KICS2
- KPTN
- LAMTOR1
- LAMTOR2
- LAMTOR3
- LAMTOR4
- LAMTOR5
- LST8
- MAP2K1IP1
- MAPBPIP
- MAPKSP1
- MAPO1
- MARE
- MIOS
- MLST8
- MTOR
- NG38
- NPRL2
- NPRL3
- PA26
- PDRO
- RAFT1
- RAPT1
- RAPTOR
- RHEB
- RHEB2
- ROBLD3
- RPTOR
- RRAGA
- RRAGB
- RRAGC
- RRAGD
- SAMTOR
- SEC13
- SEC13A
- SEC13L
- SEC13L1
- SEC13R
- SEH1
- SEH1L
- SESN1
- SESN2
- SEST1
- SEST2
- SH3BP4
- SLC38A9
- SZT2
- TCIRG1
- TTP
- TUSC4
- URLC11
- VATB
- VATC
- VATD
- VATF
- VPATPD
- VPP2
- VPP3
- WDR24
- WDR59
- XIP
|
Homo sapiens (human)
|
|
Synthesis of diphthamide-EEF2
|
|
|
- ATPBD4
- C9orf112
- DESR1
- DNAJC24
- DPH1
- DPH2
- DPH2L
- DPH2L1
- DPH2L2
- DPH3
- DPH4
- DPH5
- DPH6
- DPH7
- EEF2
- EF2
- OVCA1
- WDR85
- ZCSL2
- ZCSL3
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Homo sapiens (human)
|
|
Transport and synthesis of PAPS
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|
|
- ATPSK1
- ATPSK2
- C6orf196
- DTD
- DTDST
- PAPSS
- PAPSS1
- PAPSS2
- PAPST1
- PAPST2
- SAT1
- SLC26A1
- SLC26A2
- SLC35B2
- SLC35B3
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Homo sapiens (human)
|
|
Defective Inhibition of DNA Recombination at Telomere Due to DAXX Mutations
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|
|
- ATRX
- BING2
- DAP6
- DAXX
- RAD54L
- XH2
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Homo sapiens (human)
|
|
Defective Inhibition of DNA Recombination at Telomere Due to ATRX Mutations
|
|
|
- ATRX
- BING2
- DAP6
- DAXX
- RAD54L
- XH2
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Homo sapiens (human)
|
|
Kinesins
|
|
|
- ATSV
- C20orf23
- C2orf20
- C6orf102
- CENPE
- EG5
- GAKIN
- HSET
- KIAA0359
- KIAA0449
- KIAA0591
- KIAA0639
- KIAA0706
- KIAA1236
- KIAA1448
- KIAA1478
- KIAA1590
- KIAA1708
- KID
- KIF11
- KIF12
- KIF13B
- KIF15
- KIF16B
- KIF18A
- KIF18B
- KIF19
- KIF1A
- KIF1B
- KIF1C
- KIF2
- KIF20A
- KIF20B
- KIF21A
- KIF21B
- KIF22
- KIF23
- KIF25
- KIF26A
- KIF26B
- KIF27
- KIF28P
- KIF2A
- KIF2B
- KIF2C
- KIF3
- KIF3A
- KIF3AP
- KIF3B
- KIF3C
- KIF4
- KIF4A
- KIF4B
- KIF5A
- KIF5B
- KIF5C
- KIF6
- KIF9
- KIFAP3
- KIFC1
- KIFC2
- KLC
- KLC1
- KLC2
- KLC2L
- KLC3
- KLC4
- KLP2
- KLP6
- KNS
- KNS1
- KNS2
- KNSL1
- KNSL2
- KNSL3
- KNSL4
- KNSL5
- KNSL6
- KNSL7
- KNSL8
- KRMP1
- MGCRACGAP
- MKLP1
- MKLP2
- MPHOSPH1
- NKHC1
- RAB6KIFL
- RACGAP1
- SMAP
- SNX23
- TRIP5
|
Homo sapiens (human)
|
|
Josephin domain DUBs
|
|
|
- ATX3
- ATX3L
- ATXN3
- ATXN3L
- HEL-220
- HEL-S-70
- JOSD1
- JOSD2
- JSPH1
- KIAA0063
- MJD
- MJD1
- MJDL
- PARK2
- PRKN
- RAD23A
- RAD23B
- RPS27A
- SCA3
- UBA52
- UBA80
- UBB
- UBC
- UBCEP1
- UBCEP2
- VCP
|
Homo sapiens (human)
|
|
Tight junction interactions
|
|
|
- AWAL
- C7orf1
- CEPTRL2
- CIPP
- CLD1
- CLDN1
- CLDN10
- CLDN11
- CLDN12
- CLDN14
- CLDN15
- CLDN16
- CLDN17
- CLDN18
- CLDN19
- CLDN2
- CLDN20
- CLDN22
- CLDN23
- CLDN3
- CLDN4
- CLDN5
- CLDN6
- CLDN7
- CLDN8
- CLDN9
- CPER
- CPETR1
- CPETR2
- CPETRL2
- CRB3
- DXS1179E
- E
- F11R
- INADL
- JAM1
- JCAM
- MPP5
- OSP
- OTM
- PALS1
- PAR3
- PAR3A
- PAR6A
- PAR6B
- PAR6G
- PARD3
- PARD6A
- PARD6B
- PARD6G
- PATJ
- PCLN1
- PRKCI
- SEMP1
- TMVCF
- WBSCR8
|
Homo sapiens (human)
|
|