STRINGSTRING
K4A1R8_SETIT K4A1R8_SETIT A0A0Q3RWH2 A0A0Q3RWH2 A0A0Q3UW12 A0A0Q3UW12 A0A368PG59 A0A368PG59 A0A368PX82 A0A368PX82 A0A368Q0B1 A0A368Q0B1 A0A368Q1B1 A0A368Q1B1 A0A368Q5E8 A0A368Q5E8 A0A368Q5J8 A0A368Q5J8 A0A368QES0 A0A368QES0 A0A368QEY0 A0A368QEY0 A0A368QF82 A0A368QF82 A0A368QPZ7 A0A368QPZ7 A0A368QQ60 A0A368QQ60 A0A368QQ77 A0A368QQ77 A0A368QQQ6 A0A368QQQ6 A0A368QTU3 A0A368QTU3 A0A368R432 A0A368R432 A0A368R8Y1 A0A368R8Y1 A0A368R8Y8 A0A368R8Y8 A0A368RBV4 A0A368RBV4 A0A368RCF8 A0A368RCF8 A0A368RDE3 A0A368RDE3 A0A368RJE9 A0A368RJE9 A0A368RTS3 A0A368RTS3 A0A368S6P6 A0A368S6P6 A0A368SCD1 A0A368SCD1 A0A368SD48 A0A368SD48 A0A368SD60 A0A368SD60 A0A368SDC8 A0A368SDC8 A0A368SDD0 A0A368SDD0 A0A368SDU5 A0A368SDU5 A0A368SGG3 A0A368SGG3 A0A368SGT3 A0A368SGT3 A0A368SIL1 A0A368SIL1 A0A368SP24 A0A368SP24 A0A368SV03 A0A368SV03 A0A368SXQ8 A0A368SXQ8 K3XEE7_SETIT K3XEE7_SETIT K3XG33_SETIT K3XG33_SETIT K3XGB7_SETIT K3XGB7_SETIT K3XIQ8_SETIT K3XIQ8_SETIT K3XL73_SETIT K3XL73_SETIT K3XMY9_SETIT K3XMY9_SETIT K3XN57_SETIT K3XN57_SETIT K3XNI0_SETIT K3XNI0_SETIT K3XNI2_SETIT K3XNI2_SETIT K3XNN3_SETIT K3XNN3_SETIT K3XPJ0_SETIT K3XPJ0_SETIT K3XX98_SETIT K3XX98_SETIT K3XYB9_SETIT K3XYB9_SETIT K3Y145_SETIT K3Y145_SETIT K3Y3B5_SETIT K3Y3B5_SETIT K3Y9D3_SETIT K3Y9D3_SETIT K3YA77_SETIT K3YA77_SETIT K3YA87_SETIT K3YA87_SETIT K3YGU0_SETIT K3YGU0_SETIT K3YHV8_SETIT K3YHV8_SETIT K3YJX4_SETIT K3YJX4_SETIT K3YK02_SETIT K3YK02_SETIT K3YK55_SETIT K3YK55_SETIT K3YK57_SETIT K3YK57_SETIT K3YRC2_SETIT K3YRC2_SETIT K3YRL7_SETIT K3YRL7_SETIT K3YUH5_SETIT K3YUH5_SETIT K3YUW9_SETIT K3YUW9_SETIT K3YWQ4_SETIT K3YWQ4_SETIT K3Z8N1_SETIT K3Z8N1_SETIT K3Z8W8_SETIT K3Z8W8_SETIT K3Z984_SETIT K3Z984_SETIT K3ZAA4_SETIT K3ZAA4_SETIT K3ZAG3_SETIT K3ZAG3_SETIT K3ZDI3_SETIT K3ZDI3_SETIT K3ZEJ3_SETIT K3ZEJ3_SETIT K3ZEK6_SETIT K3ZEK6_SETIT K3ZJI6_SETIT K3ZJI6_SETIT K3ZQ07_SETIT K3ZQ07_SETIT K3ZU56_SETIT K3ZU56_SETIT K3ZVT3_SETIT K3ZVT3_SETIT K3ZX44_SETIT K3ZX44_SETIT K3ZXQ9_SETIT K3ZXQ9_SETIT K3ZYE0_SETIT K3ZYE0_SETIT K3ZZY8_SETIT K3ZZY8_SETIT K4A0Q4_SETIT K4A0Q4_SETIT K4A351_SETIT K4A351_SETIT K4A4W0_SETIT K4A4W0_SETIT K4A4W1_SETIT K4A4W1_SETIT K4A699_SETIT K4A699_SETIT K4A6N7_SETIT K4A6N7_SETIT K4A8E1_SETIT K4A8E1_SETIT K4A9B4_SETIT K4A9B4_SETIT K4AFH5_SETIT K4AFH5_SETIT K4AFJ8_SETIT K4AFJ8_SETIT K4AFW7_SETIT K4AFW7_SETIT K4AJQ6_SETIT K4AJQ6_SETIT K4AL28_SETIT K4AL28_SETIT K4AMK8_SETIT K4AMK8_SETIT
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
Node Color
colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding to each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
Your Input:
K4A1R8_SETIT4Fe-4S ferredoxin-type domain-containing protein. (307 aa)
A0A0Q3RWH2Uncharacterized protein. (1059 aa)
A0A0Q3UW12Ald_Xan_dh_C2 domain-containing protein. (316 aa)
A0A368PG59Cytochrome b6-f complex iron-sulfur subunit; Component of the cytochrome b6-f complex, which mediates electron transfer between photosystem II (PSII) and photosystem I (PSI), cyclic electron flow around PSI, and state transitions. (224 aa)
A0A368PX82Ferredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (218 aa)
A0A368Q0B14Fe-4S ferredoxin-type domain-containing protein. (291 aa)
A0A368Q1B12Fe-2S ferredoxin-type domain-containing protein. (180 aa)
A0A368Q5E8Uncharacterized protein. (162 aa)
A0A368Q5J8ZnF_CDGSH domain-containing protein. (103 aa)
A0A368QES0Iron-sulfur cluster assembly protein; Scaffold protein for the de novo synthesis of iron-sulfur (Fe-S) clusters within mitochondria, which is required for maturation of both mitochondrial and cytoplasmic [2Fe-2S] and [4Fe-4S] proteins. (212 aa)
A0A368QEY0Glutaredoxin domain-containing protein. (150 aa)
A0A368QF822Fe-2S ferredoxin-type domain-containing protein. (185 aa)
A0A368QPZ7DUF1618 domain-containing protein. (422 aa)
A0A368QQ60DUF1618 domain-containing protein. (248 aa)
A0A368QQ77DUF1618 domain-containing protein. (444 aa)
A0A368QQQ62Fe-2S ferredoxin-type domain-containing protein. (189 aa)
A0A368QTU3Fe-S cluster assembly protein DRE2. (98 aa)
A0A368R432Glutaredoxin domain-containing protein. (185 aa)
A0A368R8Y1Glutaredoxin domain-containing protein. (149 aa)
A0A368R8Y8Iron-sulfur cluster assembly protein; Scaffold protein for the de novo synthesis of iron-sulfur (Fe-S) clusters within mitochondria, which is required for maturation of both mitochondrial and cytoplasmic [2Fe-2S] and [4Fe-4S] proteins. (190 aa)
A0A368RBV4Uncharacterized protein. (200 aa)
A0A368RCF8Uncharacterized protein. (383 aa)
A0A368RDE3Plus3 domain-containing protein. (912 aa)
A0A368RJE9Succinate dehydrogenase [ubiquinone] iron-sulfur subunit, mitochondrial; Iron-sulfur protein (IP) subunit of succinate dehydrogenase (SDH) that is involved in complex II of the mitochondrial electron transport chain and is responsible for transferring electrons from succinate to ubiquinone (coenzyme Q). (353 aa)
A0A368RTS3Ferredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (151 aa)
A0A368S6P6Uncharacterized protein. (1370 aa)
A0A368SCD1Ferredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (151 aa)
A0A368SD48PaO domain-containing protein. (119 aa)
A0A368SD60Rieske domain-containing protein. (591 aa)
A0A368SDC8Rieske domain-containing protein. (516 aa)
A0A368SDD0PaO domain-containing protein. (203 aa)
A0A368SDU5Uncharacterized protein. (1355 aa)
A0A368SGG32Fe-2S ferredoxin-type domain-containing protein. (201 aa)
A0A368SGT3Ferredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (144 aa)
A0A368SIL1Uncharacterized protein. (499 aa)
A0A368SP24Uncharacterized protein. (1375 aa)
A0A368SV03DUF1618 domain-containing protein. (325 aa)
A0A368SXQ8DUF1618 domain-containing protein. (375 aa)
K3XEE7_SETITPlus3 domain-containing protein. (874 aa)
K3XG33_SETITUncharacterized protein. (565 aa)
K3XGB7_SETITRieske domain-containing protein. (541 aa)
K3XIQ8_SETITGlutaredoxin domain-containing protein. (392 aa)
K3XL73_SETITUncharacterized protein. (254 aa)
K3XMY9_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (145 aa)
K3XN57_SETITFe-S_biosyn domain-containing protein. (130 aa)
K3XNI0_SETITGlutaredoxin domain-containing protein. (103 aa)
K3XNI2_SETITGlutaredoxin domain-containing protein. (103 aa)
K3XNN3_SETITUncharacterized protein; Belongs to the BolA/IbaG family. (93 aa)
K3XPJ0_SETITGlutaredoxin domain-containing protein. (275 aa)
K3XX98_SETITRieske domain-containing protein. (411 aa)
K3XYB9_SETIT2Fe-2S ferredoxin-type domain-containing protein. (319 aa)
K3Y145_SETITDUF1618 domain-containing protein. (432 aa)
K3Y3B5_SETITDUF1618 domain-containing protein. (429 aa)
K3Y9D3_SETITCytochrome b-c1 complex subunit Rieske, mitochondrial; Component of the ubiquinol-cytochrome c reductase complex (complex III or cytochrome b-c1 complex), which is a respiratory chain that generates an electrochemical potential coupled to ATP synthesis. (272 aa)
K3YA77_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (193 aa)
K3YA87_SETITGlutaredoxin domain-containing protein. (190 aa)
K3YGU0_SETITUncharacterized protein. (594 aa)
K3YHV8_SETITSuccinate dehydrogenase [ubiquinone] iron-sulfur subunit, mitochondrial; Iron-sulfur protein (IP) subunit of succinate dehydrogenase (SDH) that is involved in complex II of the mitochondrial electron transport chain and is responsible for transferring electrons from succinate to ubiquinone (coenzyme Q). (415 aa)
K3YJX4_SETITGlutaredoxin domain-containing protein. (170 aa)
K3YK02_SETITFe-S_biosyn domain-containing protein. (158 aa)
K3YK55_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (139 aa)
K3YK57_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (137 aa)
K3YRC2_SETITRieske domain-containing protein. (551 aa)
K3YRL7_SETITUncharacterized protein. (521 aa)
K3YUH5_SETITRieske domain-containing protein. (300 aa)
K3YUW9_SETITCytochrome b-c1 complex subunit Rieske, mitochondrial; Component of the ubiquinol-cytochrome c reductase complex (complex III or cytochrome b-c1 complex), which is a respiratory chain that generates an electrochemical potential coupled to ATP synthesis. (273 aa)
K3YWQ4_SETITGlutaredoxin domain-containing protein. (126 aa)
K3Z8N1_SETITUncharacterized protein. (280 aa)
K3Z8W8_SETITAnamorsin homolog; Component of the cytosolic iron-sulfur (Fe-S) protein assembly (CIA) machinery. Required for the maturation of extramitochondrial Fe-S proteins. Part of an electron transfer chain functioning in an early step of cytosolic Fe-S biogenesis, facilitating the de novo assembly of a [4Fe-4S] cluster on the cytosolic Fe-S scaffold complex. Electrons are transferred from NADPH via a FAD- and FMN-containing diflavin oxidoreductase. Together with the diflavin oxidoreductase, also required for the assembly of the diferric tyrosyl radical cofactor of ribonucleotide reductase (RN [...] (263 aa)
K3Z984_SETIT2Fe-2S ferredoxin-type domain-containing protein. (239 aa)
K3ZAA4_SETITIron-sulfur cluster assembly protein; Scaffold protein for the de novo synthesis of iron-sulfur (Fe-S) clusters within mitochondria, which is required for maturation of both mitochondrial and cytoplasmic [2Fe-2S] and [4Fe-4S] proteins. (167 aa)
K3ZAG3_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (151 aa)
K3ZDI3_SETITFe-S cluster assembly protein DRE2. (109 aa)
K3ZEJ3_SETITDUF1618 domain-containing protein. (238 aa)
K3ZEK6_SETITGlutaredoxin domain-containing protein. (367 aa)
K3ZJI6_SETITRieske domain-containing protein. (277 aa)
K3ZQ07_SETITUncharacterized protein. (1402 aa)
K3ZU56_SETITUncharacterized protein. (385 aa)
K3ZVT3_SETITGlutaredoxin domain-containing protein. (286 aa)
K3ZX44_SETIT2Fe-2S ferredoxin-type domain-containing protein. (195 aa)
K3ZXQ9_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (151 aa)
K3ZYE0_SETIT2Fe-2S ferredoxin-type domain-containing protein. (97 aa)
K3ZZY8_SETITUncharacterized protein. (51 aa)
K4A0Q4_SETITFe-S_biosyn domain-containing protein. (156 aa)
K4A351_SETITUncharacterized protein. (47 aa)
K4A4W0_SETITUncharacterized protein. (1357 aa)
K4A4W1_SETITUncharacterized protein. (1355 aa)
K4A699_SETITUncharacterized protein; Belongs to the complex I 75 kDa subunit family. (744 aa)
K4A6N7_SETITUncharacterized protein. (677 aa)
K4A8E1_SETITRieske domain-containing protein. (527 aa)
K4A9B4_SETITRieske domain-containing protein. (478 aa)
K4AFH5_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (192 aa)
K4AFJ8_SETIT2Fe-2S ferredoxin-type domain-containing protein. (189 aa)
K4AFW7_SETITGlutaredoxin domain-containing protein. (171 aa)
K4AJQ6_SETITFerredoxin; Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. (226 aa)
K4AL28_SETITDUF1618 domain-containing protein. (345 aa)
K4AMK8_SETITUncharacterized protein. (1353 aa)
Your Current Organism:
Setaria italica
NCBI taxonomy Id: 4555
Other names: Chaetochloa italica, Chaetochloa italica (L.) Scribn., Panicum italicum, Panicum italicum L., S. italica, Setaria italica (L.) P.Beauv., Setaria viridis subsp. italica, Setaria viridis subsp. italica (L.) Briq., foxtail millet
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