1SJG,1VM9


Conserved Protein Domain Family
Rieske_T4moC

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cd03474: Rieske_T4moC 
Click on image for an interactive view with Cn3D
Toluene-4-monooxygenase effector protein complex (T4mo), Rieske ferredoxin subunit; The Rieske domain is a [2Fe-2S] cluster binding domain involved in electron transfer. T4mo is a four-protein complex that catalyzes the NADH- and O2-dependent hydroxylation of toluene to form p-cresol. T4mo consists of an NADH oxidoreductase (T4moF), a diiron hydroxylase (T4moH), a catalytic effector protein (T4moD), and a Rieske ferredoxin (T4moC). T4moC contains a Rieske domain and functions as an obligate electron carrier between T4moF and T4moH. Rieske ferredoxins are found as subunits of membrane oxidase complexes, cis-dihydrodiol-forming aromatic dioxygenases, bacterial assimilatory nitrite reductases, and arsenite oxidase. Rieske ferredoxins are also found as soluble electron carriers in bacterial dioxygenase and monooxygenase complexes.
Statistics
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PSSM-Id: 239556
Aligned: 15 rows
Threshold Bit Score: 135.543
Created: 22-Feb-2006
Updated: 2-Oct-2020
Structure
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Program:
Drawing:
Aligned Rows:
 
[2Fe-2S]
Conserved site includes 6 residues -Click on image for an interactive view with Cn3D
Feature 1:[2Fe-2S] cluster binding site [ion binding site]
Evidence:
  • Structure:1VM9; Pseudomonas mendocina Toluene-4-Monooxygenase Ferredoxin Subunit binds [2Fe-2S] cluster; contacts at 3.5A
  • Structure:1SJG; Pseudomonas mendocina Toluene-4-Monooxygenase Ferredoxin Subunit binds [2Fe-2S] cluster; contacts at 3.5A
  • Comment:The Rieske [2Fe-2S] cluster is liganded to two histidine and two cysteine residues present in conserved sequences called Rieske motifs.

Sequence Alignment
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Format: Row Display: Color Bits: Type Selection:
Feature 1                                                 # ##                 #  # #           
1SJG_A        3 FEKICSLDDIWVGEMETFEtsdGTEVLIVNSEEHGVKAYQAMCPHQEILLSEGs--yEGgVITCRAHLWTFNDGTGHGIN 80  Pseudomonas mend...
1VM9_A        2 FEKICSLDDIWVGEMETFEtsdGTEVLIVNSEEHGVKAYQAMCPHQEILLSEGs--yEGgVITCRAHLWTFNDGTGHGIN 79  Pseudomonas mend...
BAA11763      3 FKKVCSLDDLWEGEMESFEv-dGQEVLLIWPEGGELKSFQGICPHQDIPLVEGk--fDGkVLICRAHLWQFDACSGKGIN 79  Pseudomonas aeru...
CAA09913     15 YVDVCAVDDLWDGEMDVFDv--GEHEVLLVKHEGRFHAYDGICPHQSVSLVEGhlteDG-VLICKAHEWQFSVEGGQGIN 91  Xanthobacter aut...
CAB55827      9 FVDLISEDELWNDEMESFDv--GDDEVLLMKVNGEVRAYDGICPHQSISLIEGe--fDNgVLTCRAHEWQFDALTGAGIN 84  Rhodococcus sp. ...
ZP_00243433   3 FNKVCSLDDVWEGEMECYEv-dGQEVLLVALEGGAMKAYQAVCPHQDIPLVEGr--fDGkNLICRAHQWVFDACTGVGIN 79  Rubrivivax gelat...
ZP_00857667   9 WVQVATLDDLWEGDFIGVEv-dGEEVIVMHLPGGELRCFQGMCPHQEILLADGkvdfEAgTITCSAHEWEFSMDDGRGLN 87  Bradyrhizobium s...
YP_479331     3 WTDVASLDEVWEGDVLEVTa-gAEQVLLAHLPGGALRAYQAVCPHSRFPLVNGav-eDG-VLTCAAHHWEFDLATGESLN 79  Frankia sp. CcI3
AAC35388      3 WTYLCDAADVAPNSLKLVDa--NDIRVVVANYGSGFRAIPPICPHMEEPLDESgviaNC-VLTCTKHLWAWNLISLELLG 79  Methylosulfonomo...
AAK84303      3 WKVLCNVDDVPINTLKLFPl--EGTNILVANYGQGFRAVPPLCPHMEEPLDESgwvmDC-ALTCMKHLWSWNLETLEKLG 79  Marinosulfonomon...
Feature 1                                      
1SJG_A       81 PDDCCLAEYPVEVKGDDIYVStkGILPNKAH 111 Pseudomonas mendocina
1VM9_A       80 PDDAALAEYPVEVKGDDIYVStkGILPNKAH 110 Pseudomonas mendocina
BAA11763     80 PGDCALAQYPVKIEGDDVFVDteGIQPLFSH 110 Pseudomonas aeruginosa
CAA09913     92 PANVCLQSFPLKVEGGRVLIGtePLPKEGEA 122 Xanthobacter autotrophicus Py2
CAB55827     85 PRDTCLIRHDVRIVDGVIQVRl-KSPAQAQH 114 Rhodococcus sp. AD45
ZP_00243433  80 PGDCRLASYPIRIDGNDVFIDtaDVKPLFAH 110 Rubrivivax gelatinosus PM1
ZP_00857667  88 PRDCRLFRYAVKKDGEAILVGvpNDRRLRRL 118 Bradyrhizobium sp. BTAi1
YP_479331    80 PSDCRLYSFPVRADGERIIVGipPDGRRHYH 110 Frankia sp. CcI3
AAC35388     80 ETEKPLKTYELKEEDGKLLAFiaEELTYDFE 110 Methylosulfonomonas methylovora
AAK84303     80 ETEKPLLTYDVKKEGDSLLVWfeGELVYDFD 110 Marinosulfonomonas methylotropha

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