A0A286ZUN9 (A0A286ZUN9_PIG) Sus scrofa (Pig)

NADH dehydrogenase [ubiquinone] iron-sulfur protein 8, mitochondrial UniProtKBInterProInteractive Modelling

239 aa; Sequence (Fasta) ; 1 identical sequence: Sus scrofa: A0A4X1SVK9

Available Structures

14 Experimental Structures

DescriptionPDB IDOligo-stateRangeSeq id (%)Ligands
In-situ complex I (Active-Apo) Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
10010×3PE; 13×PC1;SF4;FES;FMN;K;CDL;GTP;MG;NDP;ZN;EHZ;MYR;
In-situ complex I, Active-Q10 (State-alpha) Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
100SF4;PC1;FES;FMN;K;U10;CDL;3PE;GTP;MG;NDP;ZN;EHZ;MYR;
In-situ complex I with Q10 (State-beta) Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
100SF4;PC1;U10;FES;FMN;K;MYR;3PE;CDL;GTP;MG;NDP;ZN;EHZ;
In-situ complex I with Q10 (State-gamma) Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
100SF4;PC1;FES;FMN;K;U10;CDL;3PE;GTP;MG;NDP;ZN;EHZ;MYR;
In-situ complex I, Deactive class01 Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
1003PE;SF4;FES;FMN;K;PC1;CDL;GTP;MG;NDP;ZN;EHZ;PGT;MYR;
In-situ complex I, Deactive class02 Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
1003PE;SF4;FES;FMN;K;PC1;MYR;PGT;CDL;GTP;MG;NDP;ZN;EHZ;
In-situ complex I, Deactive class03 Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
100PC1;SF4;FES;FMN;K;3PE;PGT;CDL;GTP;MG;NDP;ZN;EHZ;MYR;
In-situ complex I, Deactive class04 Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
1003PE;SF4;FES;FMN;K;PC1;MYR;PGT;CDL;GTP;MG;NDP;ZN;EHZ;
In-situ complex I, Deactive class05 Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
1003PE;SF4;FES;FMN;K;PC1;PGT;CDL;GTP;MG;NDP;ZN;EHZ;MYR;
In-situ complex I, Deactive class06 Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
1003PE;SF4;PC1;FES;FMN;K;CDL;GTP;MG;NDP;ZN;EHZ;PGT;MYR;
In-situ complex I, Deactive class07 Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
1003PE;PC1;SF4;FES;FMN;K;PGT;CDL;GTP;MG;NDP;ZN;EHZ;MYR;
In-situ complex I, Active-Q10 (State-delta) Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0QM68; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1IZ33; A0A8D1KH26; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
100SF4;PC1;FES;FMN;K;U10;CDL;MYR;3PE;GTP;MG;NDP;ZN;EHZ;
High resolution in-situ structure of complex I in respiratory supercomplex (composite) Heteromer
A0A0U1RS44; A0A286ZNN4; A0A287ARY3; A0A480JRW3; A0A480VKQ8; A0A4X1SN37; A0A4X1SNY5; A0A4X1SZP7; A0A4X1T6M0; A0A4X1TE42; A0A4X1THU2; A0A4X1UIV8; A0A4X1ULW2; A0A4X1VD84; A0A4X1VQ42; A0A4X1VRV3; A0A4X1VVS8; A0A4X1VX77; A0A8D0K655; A0A8D0K6B5; A0A8D0R7A9; A0A8D0TJQ4; A0A8D0UWW0; A0A8D1EYI7; A0A8D1FN21; A0A8D1G9F4; A0A8D1KH26; A0A8D1TTB3; A0A8W4F7N8; B8Y651; F1SCH1; F1SGC6; F1SIS9; F1SQP4; I3LGM4; K7GSE5; O79875; O79880; O79881; O79882; P56632; Q9TDR1;
64-239
10014×PC1;SF4;FES;FMN;K; 18×3PE;CDL;GTP;MG;NDP;ZN;EHZ;MYR;
In-situ structure of typeA supercomplex in respiratory chain ( local refined map focused on CI iron… Heteromer
A0A0U1RS44; A0A286ZNN4; A0A480VKQ8; A0A4X1SJF2; A0A4X1SN37; A0A4X1THU2; A0A4X1ULW2; A0A4X1VVS8; A0A8D0QM68; A0A8D1AAL8; O79880;
109-239
100.0SF4;ZN;

1 SWISS-MODEL model

TemplateOligo-stateQMEANDisCoRangeLigandsTrg-Tpl Seq id (%)
6zk9.1.Gmonomer0.7164-239
SF4;94.86