Found 143 chains in Knotted chains table. Displaying 1 - 143. Applied filters: Probabilistic

Search results query: transport protein

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#pdbid|chain|deposition date|is S/K-not|(slip)knot types;
      
  6tl2|A|2019-12-25|S|4.1 +3.1 +3.1;
  6ki1|A|2019-11-27|S|+3.1 +3.1 +3.1 +3.1;
  6mpb|A|2019-11-15|S|+3.1 +3.1;
  6mp6|A|2019-11-15|S|+3.1 +3.1;
  6kkt|A|2019-10-24|S|4.1 +3.1 +3.1;
  6kku|A|2019-10-24|S|4.1 +3.1 +3.1;
  6o6j|A|2019-09-21|S|-3.1;
  6o7a|A|2019-09-20|S|-3.1;
  6f2g|A|2019-05-07|S|4.1 +3.1 +3.1;
  6f2w|A|2019-05-07|S|4.1 +3.1 +3.1;
  6r7r|A|2019-04-25|S|+3.1 +3.1 +3.1;
  5xls|A|2018-09-13|S|+3.1 +3.1 +3.1 +3.1 +3.1;
  5xar|A|2018-09-13|S|+3.1 +3.1 +3.1;
  5xat|A|2018-09-13|S|+3.1 +3.1 +3.1 +3.1;
  6bat|A|2018-01-17|S|+3.1;
  6bau|A|2018-01-17|S|+3.1;
  6bav|A|2018-01-17|S|+3.1;
  6bmi|A|2018-01-17|S|+3.1;
  6awq|A|2017-10-25|S|+3.1 4.1 +3.1;
  6awp|A|2017-10-25|S|+3.1 4.1 +3.1;
  6awo|A|2017-10-25|S|+3.1 4.1 +3.1;
  6awn|A|2017-10-25|S|+3.1 4.1 +3.1;
  5xas|A|2017-06-23|S|+3.1;
  5x9r|A|2017-06-23|S|+3.1;
  5m8a|A|2017-01-27|S|4.1 +3.1 +3.1;
  5m8j|A|2017-01-27|S|4.1 +3.1 +3.1;
  5m8k|A|2017-01-27|S|4.1 +3.1 +3.1;
  5m87|A|2017-01-26|S|4.1 +3.1 +3.1;
  5j4i|A|2016-09-01|S|+3.1 4.1;
  5j4n|A|2016-09-01|S|+3.1 4.1 +3.1;
  5jag|A|2016-06-03|S|+3.1 4.1;
  5jaf|A|2016-06-03|S|+3.1 4.1;
  5cfy|A|2016-04-20|S|+3.1;
  5da0|A|2015-10-25|S|+3.1 +3.1 +3.1 +3.1;
  4wgv|A|2015-02-09|S|+3.1 +3.1;
  4wgw|A|2015-02-09|S|+3.1 +3.1;
  4x2s|A|2015-02-05|S|+3.1;
  2xq2|B|2014-10-09|S|+3.1 4.1 +3.1;
  3gi9|C|2014-10-08|S|+3.1 4.1 +3.1;
  4djk|A|2014-09-29|S|+3.1 4.1 +3.1;
  4dji|A|2014-09-29|S|+3.1 4.1 +3.1;
  4us3|A|2014-09-28|S|+3.1 4.1 +3.1;
  4us4|A|2014-09-28|S|+3.1 4.1 +3.1;
  4oye|A|2014-09-21|S|+3.1 +3.1;
  4mme|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mmd|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mmc|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mma|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mm8|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mm6|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mm9|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mm4|A|2014-08-19|S|+3.1 4.1 +3.1;
  4mm5|A|2014-08-19|S|+3.1 4.1 +3.1;
  4fy0|A|2014-08-19|S|+3.1 4.1 +3.1;
  3uso|A|2014-08-19|S|+3.1 4.1 +3.1;
  3usp|A|2014-08-19|S|+3.1 4.1 +3.1;
  3usm|A|2014-08-19|S|+3.1 4.1 +3.1;
  3usk|A|2014-08-19|S|+3.1 4.1 +3.1;
  3usl|A|2014-08-19|S|+3.1 4.1 +3.1;
  3usi|A|2014-08-19|S|+3.1 4.1 +3.1;
  3usj|A|2014-08-19|S|+3.1 4.1 +3.1;
  3usg|A|2014-08-19|S|+3.1 4.1 +3.1;
  3tt3|A|2014-08-19|S|+3.1 4.1 +3.1;
  3tt1|A|2014-08-19|S|+3.1 4.1 +3.1;
  4m8j|A|2014-08-19|S|+3.1 4.1 +3.1;
  3kbc|A|2014-08-19|S|+3.1;
  4doj|A|2014-08-19|S|+3.1 4.1 +3.1;
  3v8f|A|2014-08-19|S|+3.1;
  3v8g|A|2014-08-19|S|+3.1;
  4izm|A|2014-08-19|S|+3.1 +3.1;
  4oyf|A|2014-08-18|S|+3.1;
  3qe7|A|2014-08-13|S|+3.1 4.1 +3.1 +3.1 +3.1;
  4p6h|C|2014-08-13|S|+3.1;
  4p6h|B|2014-08-13|S|+3.1;
  4p6h|A|2014-08-13|S|+3.1;
  4p3j|C|2014-08-13|S|+3.1;
  4p3j|B|2014-08-13|S|+3.1;
  4p3j|A|2014-08-13|S|+3.1;
  4p1a|C|2014-08-13|S|+3.1;
  4p1a|B|2014-08-13|S|+3.1;
  4p1a|A|2014-08-13|S|+3.1;
  4p19|C|2014-08-13|S|+3.1;
  4p19|B|2014-08-13|S|+3.1;
  4p19|A|2014-08-13|S|+3.1;
  4oyg|F|2014-08-13|S|+3.1;
  4oyg|A|2014-08-13|S|+3.1;
  4oyg|E|2014-08-13|S|+3.1;
  4oyg|D|2014-08-13|S|+3.1;
  4oyg|C|2014-08-13|S|+3.1;
  4oyg|B|2014-08-13|S|+3.1;
  4d1d|A|2014-08-13|S|+3.1 4.1 +3.1;
  4d1c|A|2014-08-13|S|+3.1 4.1 +3.1;
  4d1b|A|2014-08-13|S|+3.1 4.1 +3.1;
  4d1a|A|2014-08-13|S|+3.1 4.1 +3.1;
  4llh|A|2014-08-13|S|+3.1 4.1 +3.1;
  4llh|B|2014-08-13|S|+3.1 4.1 +3.1;
  4llh|C|2014-08-13|S|+3.1 4.1 +3.1;
  1xfh|A|2014-07-31|S|+3.1 +3.1;
  2a65|A|2014-07-31|S|+3.1 4.1 +3.1;
  2nwl|A|2014-07-31|S|+3.1 +3.1;
  2nww|A|2014-07-31|S|+3.1 +3.1;
  2nwx|A|2014-07-31|S|+3.1 +3.1;
  2q72|A|2014-07-31|S|+3.1 4.1 +3.1;
  2qei|A|2014-07-31|S|+3.1 4.1 +3.1;
  2wsw|A|2014-07-31|S|+3.1 4.1 +3.1;
  2wsx|A|2014-07-31|S|+3.1 4.1 +3.1;
  2x79|A|2014-07-31|S|+3.1 4.1 +3.1;
  2xq2|A|2014-07-31|S|+3.1 4.1 +3.1;
  3dh4|A|2014-07-31|S|+3.1 4.1 +3.1;
  3e7n|A|2014-07-31|S|+3.1;
  3f3a|A|2014-07-31|S|+3.1 4.1 +3.1;
  3f3c|A|2014-07-31|S|+3.1 4.1 +3.1;
  3f3d|A|2014-07-31|S|+3.1 4.1 +3.1;
  3f3e|A|2014-07-31|S|+3.1 4.1 +3.1;
  3f48|A|2014-07-31|S|+3.1 4.1 +3.1;
  3f4i|A|2014-07-31|S|+3.1 4.1 +3.1;
  3f4j|A|2014-07-31|S|+3.1 4.1 +3.1;
  3gi8|C|2014-07-31|S|+3.1 4.1 +3.1;
  3gia|A|2014-07-31|S|+3.1 4.1 +3.1;
  3gjc|A|2014-07-31|S|+3.1 4.1 +3.1;
  3gjd|A|2014-07-31|S|+3.1 4.1 +3.1;
  3gwu|A|2014-07-31|S|+3.1 4.1 +3.1;
  3gwv|A|2014-07-31|S|+3.1 4.1 +3.1;
  3gww|A|2014-07-31|S|+3.1 4.1 +3.1;
  3hfx|A|2014-07-31|S|+3.1 4.1 +3.1;
  3l1l|A|2014-07-31|S|+3.1 4.1 +3.1;
  3lrb|A|2014-07-31|S|+3.1 4.1 +3.1;
  3lrc|A|2014-07-31|S|+3.1 4.1 +3.1;
  3ncy|A|2014-07-31|S|+3.1 4.1 +3.1;
  3p03|A|2014-07-31|S|+3.1 4.1 +3.1;
  3qs4|A|2014-07-31|S|+3.1 4.1 +3.1;
  3qs5|A|2014-07-31|S|+3.1 4.1 +3.1;
  3qs6|A|2014-07-31|S|+3.1 4.1 +3.1;
  3tu0|A|2014-07-31|S|+3.1 4.1 +3.1;
  4fxz|A|2014-07-31|S|+3.1 4.1 +3.1;
  4kjr|A|2014-07-31|K|+3.1;
  4m48|A|2014-07-31|S|+3.1 4.1 +3.1;
  4mm7|A|2014-07-31|S|+3.1 4.1 +3.1;
  4mmb|A|2014-07-31|S|+3.1 4.1 +3.1;
  4mmf|A|2014-07-31|S|+3.1 4.1 +3.1;
  2q6h|A|2014-07-31|S|+3.1 4.1 +3.1;
  2qb4|A|2014-07-31|S|+3.1 4.1 +3.1;
  2qju|A|2014-07-31|S|+3.1 4.1 +3.1;

      
Knot types Knot loop types pdb Title
S 41 +31 +31 6tl2A Crystal structure of eremococcus coleocola manganese transporter in complex with an aromatic bis-isothiourea substituted compound
S +31 +31 +31 +31 S 1x +31 +31 +31
2
6ki1A The transmembrane domain of a cyanobacterium bicarbonate transporter bica
S +31 +31 6mpbA Cryo-em structure of the human neutral amino acid transporter asct2
S +31 +31 6mp6A Cryo-em structure of the human neutral amino acid transporter asct2
S 41 +31 +31 6kktA Human kcc1 structure determined in kcl and lipid nanodisc
S 41 +31 +31 6kkuA Human kcc1 structure determined in nacl and gdn
S -31
1
6o6jA Crystal structure of the ljcastor gating ring in the ca2+ and na+ condition
S -31
1
6o7aA Crystal structure of the ljcastor gating ring in the ca2+-free state
S 41 +31 +31 6f2gA Bacterial asc transporter crystal structure in open to in conformation
S 41 +31 +31 6f2wA Bacterial asc transporter crystal structure in open to in conformation
S +31 +31 +31
1
6r7rA Crystal structure of the glutamate transporter homologue glttk in complex with d-aspartate
S +31 +31 +31 +31 +31 5xlsA Crystal structure of uraa in occluded conformation
S +31 +31 +31
1
5xarA Structural insights into the elevator-like mechanism of the sodium/citrate symporter cits
S +31 +31 +31 +31
1
5xatA Structural insights into the elevator-like mechanism of the sodium/citrate symporter cits
S +31 6batA Crystal structure of wild-type gltph in complex with l-aspartate
S +31 6bauA Crystal structure of gltph r397c in complex with l-cysteine
S +31 6bavA Crystal structure of gltph r397c in complex with s-benzyl-l-cysteine
S +31 6bmiA Crystal structure of gltph r397c in complex with l-serine
S +31 41 +31 6awqA Anomalous chloride signal reveals the position of sertraline complexed with the serotonin transporter at the central site
S +31 41 +31 6awpA X-ray structure of the ts3 human serotonin transporter complexed with fluvoxamine at the central site
S +31 41 +31 6awoA X-ray structure of the ts3 human serotonin transporter complexed with sertraline at the central site
S +31 41 +31 6awnA X-ray structure of the s439t human serotonin transporter complexed with paroxetine at the central site
S +31
1
5xasA Structural insights into the elevator-like mechanism of the sodium/citrate symporter cits
S +31
1
5x9rA Structural insights into the elevator-like mechanism of the sodium/citrate symporter cits
S 41 +31 +31 5m8aA Crystal structure of eremococcus coleocola manganese transporter mutant e129a
S 41 +31 +31 5m8jA Crystal structure of eremococcus coleocola manganese transporter mutant h236a
S 41 +31 +31 5m8kA Crystal structure of eremococcus coleocola manganese transporter mutant e129q
S 41 +31 +31 5m87A Crystal structure of eremococcus coleocola manganese transporter
S +31 41 5j4iA Crystal structure of the l-arginine/agmatine antiporter from e. coli at 2.2 angstroem resolution
S +31 41 +31 5j4nA Crystal structure of the l-arginine/agmatine antiporter adic in complex with agmatine at 2.6 angstroem resolution
S +31 41
2
5jagA Leut t354h mutant in the outward-oriented, na+-free return state
S +31 41
2
5jafA Leut na+-free return state, c2 form at ph 5
S +31 5cfyA Crystal structure of gltph r397a in complex with na+ and l-asp
S +31 +31 +31 +31 5da0A Structure of the the slc26 transporter slc26dg in complex with a nanobody
S +31 +31 4wgvA Crystal structure of staphylococcus capitis divalent metal ion transporter (dmt) in complex with nanobody
S +31 +31 4wgwA Staphylococcus capitis divalent metal ion transporter (dmt) in complex with manganese
S +31 4x2sA Crystal structure of 276s/m395r-gltph in inward-facing conformation
S +31 41 +31
2
2xq2B Structure of the k294a mutant of vsglt
S +31 41 +31
2
3gi9C Crystal structure of apct transporter bound to 7f11 monoclonal fab fragment
S +31 41 +31
2
4djkA Structure of glutamate-gaba antiporter gadc
S +31 41 +31
2
4djiA Structure of glutamate-gaba antiporter gadc
S +31 41 +31 4us3A Crystal structure of the bacterial nss member mhst in an occluded inward-facing state
S +31 41 +31 4us4A Crystal structure of the bacterial nss member mhst in an occluded inward-facing state (lipidic cubic phase form)
S +31 +31
1
4oyeA Crystal structure of gltph r397a in apo
S +31 41 +31
2
4mmeA Crystal structure of leubat (delta6 mutant) in complex with mazindol
S +31 41 +31
2
4mmdA Crystal structure of leubat (delta6 mutant) in complex with (s)-duloxetine
S +31 41 +31
2
4mmcA Crystal structure of leubat (delta6 mutant) in complex with desvenlafaxine
S +31 41 +31
2
4mmaA Crystal structure of leubat (delta13 mutant) in complex with clomipramine
S +31 41 +31
2
4mm8A Crystal structure of leubat (delta13 mutant) in complex with (r)-fluoxetine
S +31 41 +31
2
4mm6A Crystal structure of leubat (delta13 mutant) in complex with (s)-duloxetine
S +31 41 +31
2
4mm9A Crystal structure of leubat (delta13 mutant) in complex with fluvoxamine
S +31 41 +31
2
4mm4A Crystal structure of leubat (delta13 mutant) in complex with paroxetine
S +31 41 +31
2
4mm5A Crystal structure of leubat (delta13 mutant) in complex with sertraline
S +31 41 +31
2
4fy0A Crystal structure of leut-f253a bound to l-selenomethionine from lipid bicelles
S +31 41 +31
2
3usoA Crystal structure of leut bound to l-selenomethionine in space group p21212 from lipid bicelles
S +31 41 +31
2
3uspA Crystal structure of leut in heptyl-beta-d-selenoglucoside
S +31 41 +31
2
3usmA Crystal structure of leut bound to l-selenomethionine in space group c2 from lipid bicelles (collected at 1.2 a)
S +31 41 +31
2
3uskA Crystal structure of leut bound to l-leucine in space group p21 from lipid bicelles
S +31 41 +31
2
3uslA Crystal structure of leut bound to l-selenomethionine in space group c2 from lipid bicelles
S +31 41 +31
2
3usiA Crystal structure of leut bound to l-leucine in space group p2 from lipid bicelles
S +31 41 +31
2
3usjA Crystal structure of leut bound to l-leucine in space group p21 from lipid bicelles
S +31 41 +31
2
3usgA Crystal structure of leut bound to l-leucine in space group c2 from lipid bicelles
S +31 41 +31 3tt3A Crystal structure of leut in the inward-open conformation in complex with fab
S +31 41 +31
2
3tt1A Crystal structure of leut in the outward-open conformation in complex with fab
S +31 41 +31 4m8jA Crystal structure of cait r262e bound to gamma-butyrobetaine
S +31 3kbcA Crystal structure of gltph k55c-a364c mutant crosslinked with divalent mercury
S +31 41 +31
2
4dojA Crystal structure of betp in outward-facing conformation
S +31 3v8fA Crystal structure of crosslinked gltph v216c-m385c mutant
S +31 3v8gA Crystal structure of an asymmetric trimer of a glutamate transporter homologue (gltph)
S +31 +31 4izmA Crystal structure of gltph l66c-s300c mutant crosslinked with divalent mercury
S +31
1
4oyfA Crystal structure of gltph r397a in sodium-bound state
S +31 41 +31 +31 +31 3qe7A Crystal structure of uracil transporter--uraa
S +31 4p6hC Tl+-bound inward-facing state (bound conformation) of the glutamate transporter homologue gltph
S +31 4p6hB Tl+-bound inward-facing state (bound conformation) of the glutamate transporter homologue gltph
S +31 4p6hA Tl+-bound inward-facing state (bound conformation) of the glutamate transporter homologue gltph
S +31 4p3jC Apo inward-facing state of the glutamate transporter homologue gltph in alkali-free conditions
S +31 4p3jB Apo inward-facing state of the glutamate transporter homologue gltph in alkali-free conditions
S +31 4p3jA Apo inward-facing state of the glutamate transporter homologue gltph in alkali-free conditions
S +31 4p1aC Thallium-bound inward-facing state of the glutamate transporter homologue gltph
S +31 4p1aB Thallium-bound inward-facing state of the glutamate transporter homologue gltph
S +31 4p1aA Thallium-bound inward-facing state of the glutamate transporter homologue gltph
S +31 4p19C Closed, apo inward-facing state of the glutamate transporter homologue gltph
S +31 4p19B Closed, apo inward-facing state of the glutamate transporter homologue gltph
S +31 4p19A Closed, apo inward-facing state of the glutamate transporter homologue gltph
S +31 4oygF Crystal structure of gltph r397a in complex with na+ and l-asp
S +31 4oygA Crystal structure of gltph r397a in complex with na+ and l-asp
S +31 4oygE Crystal structure of gltph r397a in complex with na+ and l-asp
S +31 4oygD Crystal structure of gltph r397a in complex with na+ and l-asp
S +31 4oygC Crystal structure of gltph r397a in complex with na+ and l-asp
S +31 4oygB Crystal structure of gltph r397a in complex with na+ and l-asp
S +31 41 +31 4d1dA Structure of mhp1, a nucleobase-cation-symport-1 family transporter with the inhibitor 5-(2-naphthylmethyl)-l-hydantoin.
S +31 41 +31 4d1cA Structure of mhp1, a nucleobase-cation-symport-1 family transporter, in a closed conformation with bromovinylhydantoin bound.
S +31 41 +31 4d1bA Structure of mhp1, a nucleobase-cation-symport-1 family transporter, in a closed conformation with benzyl-hydantoin
S +31 41 +31 4d1aA Structure of mhp1, a nucleobase-cation-symport-1 family transporter, in a closed conformation with indolylmethyl-hydantoin
S +31 41 +31
2
4llhA Substrate bound outward-open state of the symporter betp
S +31 41 +31 4llhB Substrate bound outward-open state of the symporter betp
S +31 41 +31
2
4llhC Substrate bound outward-open state of the symporter betp
S +31 +31 1xfhA Structure of glutamate transporter homolog from pyrococcus horikoshii
S +31 41 +31
2
2a65A Crystal structure of leutaa, a bacterial homolog of na+/cl--dependent neurotransmitter transporters
S +31 +31
1
2nwlA Crystal structure of gltph in complex with l-asp
S +31 +31 2nwwA Crystal structure of gltph in complex with tboa
S +31 +31
1
2nwxA Crystal structure of gltph in complex with l-aspartate and sodium ions
S +31 41 +31
2
2q72A Crystal structure analysis of leut complexed with l-leucine, sodium, and imipramine
S +31 41 +31
2
2qeiA Crystal structure analysis of leut complexed with l-alanine, sodium, and clomipramine
S +31 41 +31 2wswA Crystal structure of carnitine transporter from proteus mirabilis
S +31 41 +31 2wsxA Crystal structure of carnitine transporter from escherichia coli
S +31 41 +31 2x79A Inward facing conformation of mhp1
S +31 41 +31
2
2xq2A Structure of the k294a mutant of vsglt
S +31 41 +31
2
3dh4A Crystal structure of sodium/sugar symporter with bound galactose from vibrio parahaemolyticus
S +31 3e7nA Crystal structure of d-ribose high-affinity transport system from salmonella typhimurium lt2
S +31 41 +31
2
3f3aA Crystal structure of leut bound to l-tryptophan and sodium
S +31 41 +31
2
3f3cA Crystal structure of leut bound to 4-fluoro-l-phenylalanine and sodium
S +31 41 +31
2
3f3dA Crystal structure of leut bound to l-methionine and sodium
S +31 41 +31
2
3f3eA Crystal structure of leut bound to l-leucine (30 mm) and sodium
S +31 41 +31
2
3f48A Crystal structure of leut bound to l-alanine and sodium
S +31 41 +31
2
3f4iA Crystal structure of leut bound to l-selenomethionine and sodium
S +31 41 +31
2
3f4jA Crystal structure of leut bound to glycine and sodium
S +31 41 +31 3gi8C Crystal structure of apct k158a transporter bound to 7f11 monoclonal fab fragment
S +31 41 +31 3giaA Crystal structure of apct transporter
S +31 41 +31 3gjcA Crystal structure of the e290s mutant of leut with bound og
S +31 41 +31
2
3gjdA Crystal structure of leut with bound og
S +31 41 +31
2
3gwuA Leucine transporter leut in complex with sertraline
S +31 41 +31
2
3gwvA Leucine transporter leut in complex with r-fluoxetine
S +31 41 +31
2
3gwwA Leucine transporter leut in complex with s-fluoxetine
S +31 41 +31 3hfxA Crystal structure of carnitine transporter
S +31 41 +31
2
3l1lA Structure of arg-bound escherichia coli adic
S +31 41 +31 3lrbA Structure of e. coli adic
S +31 41 +31 3lrcA Structure of e. coli adic (p1)
S +31 41 +31
2
3ncyA X-ray crystal structure of an arginine agmatine antiporter (adic) in complex with a fab fragment
S +31 41 +31
2
3p03A Crystal structure of betp-g153d with choline bound
S +31 41 +31
2
3qs4A Crystal structure of leut mutant f259v bound to sodium and l-tryptophan
S +31 41 +31
2
3qs5A Crystal structure of leut mutant i359q bound to sodium and l-tryptophan
S +31 41 +31
2
3qs6A Crystal structure of leut mutant f259v,i359q bound to sodium and l-tryptophan
S +31 41 +31
2
3tu0A Crystal structure of t355v, s354a, k288a leut mutant in complex with alanine and sodium
S +31 41 +31
2
4fxzA Crystal structure of leut-f253a bound to l-leucine from lipid bicelles
K +31
1
4kjrA Crystal structure of selenium substituted ca2+/h+ antiporter proteinyfke
S +31 41 +31 4m48A X-ray structure of dopamine transporter elucidates antidepressant mechanism
S +31 41 +31
2
4mm7A Crystal structure of leubat (delta13 mutant) in complex with desvenlafaxine
S +31 41 +31
2
4mmbA Crystal structure of leubat (delta6 mutant) in complex with sertraline
S +31 41 +31
2
4mmfA Crystal structure of leubat (delta5 mutant) in complex with mazindol
S +31 41 +31
2
2q6hA Crystal structure analysis of leut complexed with l-leucine, sodium, and clomipramine
S +31 41 +31
2
2qb4A Crystal structure analysis of leut complexed with l-leucine, sodium and desipramine
S +31 41 +31
2
2qjuA Crystal structure of an nss homolog with bound antidepressant

KnotProt | Interdisciplinary Laboratory of Biological Systems Modelling