O14561 (ACPM_HUMAN) Homo sapiens (Human)

Acyl carrier protein, mitochondrial UniProtKBInterProSTRINGInteractive Modelling

156 aa; Sequence (Fasta) ; 5 identical sequences: Pan troglodytes: Q0MQC3, K7BHK5, A0A663DD94; Pan paniscus: A0A2R8Z949; Gorilla gorilla gorilla: Q0MQC2

Available Structures

31 Experimental Structures

DescriptionPDB IDOligo-stateRangeSeq id (%)Ligands
Assembly intermediate of human mitochondrial ribosome large subunit (largely unfolded rRNA with MAL… Heteromer
L0R8F8; O75394; P09001; P49406; P52815; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
70-156
10035×MG;K;ZN;FES;8Q1;
Crystal structure of the human complex ACP-ISD11 Heteromer
Q9HD34;
72-156
1008Q1;CA;
Cryo-EM structure of human respiratory complex I transmembrane arm Heteromer
O15239; O43674; O43676; O43677; O43920; O75306; O75438; O95139; O95167; O95168; O95169; O95178; O95298; O95299; O96000; P03886; P03891; P03897; P03901; P03905; P03915; P03923; P17568; P51970; Q86Y39; Q9NX14; Q9P0J0; Q9Y6M9;
72-156
100PLX;CDL;PEE;8Q1;
Cryo-EM structure of human respiratory complex I matrix arm Heteromer
O00217; O43181; O43678; O75251; O75306; O75380; O75489; O95182; P19404; P28331; P49821; P56181; P56556; Q16718; Q16795; Q9P0J0; Q9UI09;
72-156
100SF4;FMN;8Q1;NDP;FES;
Cryo-EM structure of human respiratory complex I Heteromer
O00217; O15239; O43181; O43674; O43676; O43677; O43678; O43920; O75251; O75306; O75380; O75438; O75489; O95139; O95167; O95168; O95169; O95178; O95182; O95298; O95299; O96000; P03886; P03891; P03897; P03901; P03905; P03915; P03923; P17568; P19404; P28331; P49821; P51970; P56181; P56556; Q16718; Q16795; Q86Y39; Q9NX14; Q9P0J0; Q9UI09; Q9Y6M9;
72-156
100SF4;FMN;PLX;8Q1;NDP;FES;CDL;PEE;
Structure of a human mitochondrial ribosome large subunit assembly intermediate in complex with MTE… Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H4K7; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 70×MG;GTP;
Cryo-EM structure of late human 39S mitoribosome assembly intermediates, state 1 Heteromer
A4D1E9; L0R8F8; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H9J2; Q9HC36; Q9HD33; Q9NP92; Q9NRX2; Q9NUL7; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
10048×MG;ZN;PNS;
Cryo-EM structure of the human mtLSU assembly intermediate upon MRM2 depletion - class 1 Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P1L8; Q7Z2W9; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H9J2; Q9HD33; Q9NP92; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y6G3;
74-152
100ZN;
State B of the human mitoribosomal large subunit assembly intermediate Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9UI43; Q9Y3B7; Q9Y6G3;
74-152
100PM8;SAM;ZN; 88×MG;K;N;FES;
human mitoribosomal large subunit assembly intermediate 1 with GTPBP10-GTPBP7 Heteromer
A4D1E9; L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BT17; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN;PM8;SAM;GNP; 96×MG; 10×K;
Structure of a human mitochondrial ribosome large subunit assembly intermediate in complex with MTE… Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 61×MG;
Cryo-EM structure of the human mtLSU assembly intermediate upon MRM2 depletion - class 4 Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P1L8; Q7Z2W9; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H9J2; Q9HD33; Q9NP92; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y6G3;
74-152
10050×MG;ZN;
Structure of a human mitochondrial ribosome large subunit assembly intermediate in complex with MTE… Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H4K7; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 74×MG;
Cryo-EM structure of late human 39S mitoribosome assembly intermediates, state 2 Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 49×MG;PNS;
Structure of a human mitochondrial ribosome large subunit assembly intermediate in complex with MTE… Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 58×MG;GTP;
Human mitoribosomal large subunit assembly intermediate 2 with GTPBP7 Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BT17; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 38×MG;FES;PM8;SAM;GNP;
Structure of a human mitochondrial ribosome large subunit assembly intermediate in complex with GTP… Heteromer
L0R8F8; O43824; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 85×MG;GTP;
Cryo-EM structure of late human 39S mitoribosome assembly intermediates, state 4 Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
10076×MG;C;A;ZN;PNS;SAM;
Cryo-EM structure of late human 39S mitoribosome assembly intermediates, state 3A Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
10049×MG;ZN;PNS;
Cryo-EM structure of late human 39S mitoribosome assembly intermediates, state 5A Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN;MG;PNS;
State C of the human mitoribosomal large subunit assembly intermediate Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H4K7; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100GDP; 95×MG;PM8;SAM;ZN; 10×K;FES;
Cryo-EM structure of late human 39S mitoribosome assembly intermediates, state 3B Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
10049×MG;ZN;PNS;
Cryo-EM structure of late human 39S mitoribosome assembly intermediates, state 5B Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN;MG;PNS;
State A of the human mitoribosomal large subunit assembly intermediate Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100PM8;SAM;ZN; 97×MG;K;FES;
Structure of the human mitoribosomal large subunit in complex with NSUN4.MTERF4.GTPBP7 and MALSU1.L… Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z6M4; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96CB9; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BT17; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 54×A; 44×U; 47×C;OMG; 31×G;PSU; 91×MG;PNS;SAM;GCP;
Structure of a native assembly intermediate of the human mitochondrial ribosome with unfolded inter… Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
10049×MG;ZN;PNS;
Structure of a native assembly intermediate of the human mitochondrial ribosome with unfolded inter… Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
10092×MG;ZN;PNS;
Structure of the split human mitoribosomal large subunit with rescue factors mtRF-R and MTRES1 Heteromer
A8K7J6; A8K9D2; E7ESL0; L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H2W6; Q9H3J6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9P0P8; Q9Y3B7; Q9Y6G3;
74-152
10092×MG;ZN;PNS;
mt-LSU assembly intermediate in GTPBP8 knock-out cells, state 2 Heteromer
L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q86TS9; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
100ZN; 48×MG;PNS;
Cryo-EM structure of the human 39S mitoribosome with Tigecycline Heteromer
A8K7J6; L0R8F8; O75394; P09001; P49406; Q13084; Q13405; Q14197; Q16540; Q4U2R6; Q5T653; Q6P161; Q6P1L8; Q7Z2W9; Q7Z7F7; Q7Z7H8; Q8IXM3; Q8N5N7; Q8N983; Q8TAE8; Q8TCC3; Q96A35; Q96DV4; Q96EH3; Q96EL3; Q96GC5; Q9BQ48; Q9BQC6; Q9BRJ2; Q9BYC8; Q9BYC9; Q9BYD1; Q9BYD2; Q9BYD3; Q9BZE1; Q9H0U6; Q9H2W6; Q9H9J2; Q9HD33; Q9NP92; Q9NQ50; Q9NRX2; Q9NVS2; Q9NWU5; Q9NX20; Q9NYK5; Q9NZE8; Q9P015; Q9P0J6; Q9P0M9; Q9Y3B7; Q9Y6G3;
74-152
10095×MG;T1C;ZN;PNS;
Solution structure of RSGI RUH-059, an ACP domain of acyl carrier protein, mitochondrial [Precursor…monomer71-156
100

1 SWISS-MODEL model

TemplateOligo-stateQMEANDisCoRangeLigandsTrg-Tpl Seq id (%)
7qso.1.Umonomer0.7869-156
87.18